Sample records for mathematics stem workforce

  1. STEM: Science Technology Engineering Mathematics

    ERIC Educational Resources Information Center

    Carnevale, Anthony P.; Smith, Nicole; Melton, Michelle

    2011-01-01

    The generative economic power and social influence of Science, Technology, Engineering, and Mathematics (STEM) has made the production of a capable science and engineering workforce a priority among business and policy leaders. They are rightly concerned that without a robust STEM workforce, the nation will become less competitive in the global…

  2. Assuring the U.S. Department of Defense a Strong Science, Technology, Engineering, and Mathematics (STEM) Workforce

    ERIC Educational Resources Information Center

    National Academies Press, 2012

    2012-01-01

    The ability of the nation's military to prevail during future conflicts, and to fulfill its humanitarian and other missions, depends on continued advances in the nation's technology base. A workforce with robust Science, Technology, Engineering and Mathematics (STEM) capabilities is critical to sustaining U.S. preeminence. Today, however, the STEM…

  3. Preparing the Future STEM Workforce for Diverse Environments

    ERIC Educational Resources Information Center

    Daily, Shaundra Bryant; Eugene, Wanda

    2013-01-01

    Following the belief that diversity breeds innovation in scientific endeavors, there is a national push for more diversity in the science, technology, engineering, and mathematics (STEM) workforce in order to maintain national economic competitiveness. Currently, STEM-related employment is only 28% non-White; however, greater efforts to recruit…

  4. Developing a National STEM Workforce Strategy: A Workshop Summary

    ERIC Educational Resources Information Center

    Alper, Joe

    2016-01-01

    The future competitiveness of the United States in an increasingly interconnected global economy depends on the nation fostering a workforce with strong capabilities and skills in science, technology, engineering, and mathematics (STEM). STEM knowledge and skills enable both individual opportunity and national competitiveness, and the nation needs…

  5. The Bayer Facts of Science Education XVI: "US STEM Workforce Shortage--Myth or Reality? Fortune 1000 Talent Recruiters on the Debate"

    ERIC Educational Resources Information Center

    Journal of Science Education and Technology, 2014

    2014-01-01

    A major debate is currently underway in the USA about whether there is, in fact, a science, technology, engineering and mathematics (STEM) workforce shortage in the country or not. This is the subject of the "Bayer Facts of Science Education XVI: US STEM Workforce Shortage--Myth or Reality? Fortune 1000 Talent Recruiters on the Debate."…

  6. Meeting the STEM Workforce Demand: Accelerating Math Learning among Students Interested in STEM. BHEF Research Brief

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2011

    2011-01-01

    Efforts by federal and state governments to increase the STEM (science, technology, engineering and mathematics) workforce in support of innovation and competitiveness are frustrated by a shortage of adequately prepared and interested students. Less than half of 12th graders meet the math proficiency benchmark that indicates college readiness.…

  7. Meeting the STEM Workforce Challenge: Leveraging Higher Education's Untapped Potential to Prepare Tomorrow's STEM Workforce. BHEF Policy Brief

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2011

    2011-01-01

    Innovations in science and engineering have driven economic growth in the United States over the last five decades. More recently, technology has risen to become a defining driver of productivity in business and industry. In that context, college graduates in science, technology, engineering, and mathematics (STEM) disciplines provide critical…

  8. Measuring STEM in Vocational Education and Training

    ERIC Educational Resources Information Center

    Korbel, Patrick

    2016-01-01

    The concept of "STEM" (science, technology, engineering and mathematics) has influenced many education and workforce strategies and policies with the intention of improving innovation, productivity and international competitiveness. Generally, the focus has been on how the school and university sectors can help equip the workforce with…

  9. Using Food Science Demonstrations to Engage Students of All Ages in Science, Technology, Engineering, and Mathematics (STEM)

    ERIC Educational Resources Information Center

    Schmidt, Shelly J.; Bohn, Dawn M.; Rasmussen, Aaron J.; Sutherland, Elizabeth A.

    2012-01-01

    The overarching goal of the Science, Technology, Engineering, and Mathematics (STEM) Education Initiative is to foster effective STEM teaching and learning throughout the educational system at the local, state, and national levels, thereby producing science literate citizens and a capable STEM workforce. To contribute to achieving this goal, we…

  10. Adaptation of the Science, Technology, Engineering, and Mathematics Career Interest Survey (STEM-CIS) into Turkish

    ERIC Educational Resources Information Center

    Koyunlu Unlu, Zeynep; Dokme, Ilbilge; Unlu, Veli

    2016-01-01

    Problem Statement: Science, technology, engineering, and mathematics (STEM) education has recently become a remarkable research topic, especially in developed countries as a result of the skilled workforce required in the fields of the STEM. Considering that professional tendencies are revealed at early ages, determining students' interest in STEM…

  11. Kinks in the STEM Pipeline: Tracking STEM Graduation Rates Using Science and Mathematics Performance

    ERIC Educational Resources Information Center

    Redmond-Sanogo, Adrienne; Angle, Julie; Davis, Evan

    2016-01-01

    In an effort to maintain the global competitiveness of the United States, ensuring a strong Science, Technology, Engineering and Mathematics (STEM) workforce is essential. The purpose of this study was to identify high school courses that serve as predictors of success in college level gatekeeper courses, which in turn led to the successful…

  12. Successful K-12 STEM Education: Identifying Effective Approaches in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    National Academies Press, 2011

    2011-01-01

    Science, technology, engineering, and mathematics (STEM) are cultural achievements that reflect our humanity, power our economy, and constitute fundamental aspects of our lives as citizens, consumers, parents, and members of the workforce. Providing all students with access to quality education in the STEM disciplines is important to our nation's…

  13. Gendered Microaggressions in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Yang, Yang; Carroll, Doris Wright

    2018-01-01

    Women remain underrepresented in both science, technology, engineering, and mathematics (STEM) workforce and academia. In this quantitative study, we focused on female faculty across STEM disciplines and their experiences in higher educational institutions through the lens of microaggressions theory. Two questions were addressed: (a) whether and…

  14. The Impact of Attitudes toward Science and Core Self-Evaluation on Science Achievement and Career Outcomes: A Trajectory-Based Approach

    ERIC Educational Resources Information Center

    Chao, Jessica Lena

    2017-01-01

    A talented, innovative workforce in science, technology, engineering, and mathematics (STEM) is a critical component of sustained economic growth and global competitiveness. The development of this workforce is a primary concern among policymakers, industry leaders, and academics. Although many students express an interest in STEM in secondary…

  15. The Role of Program Climate and Socialization in the Retention of Engineering Undergraduates

    ERIC Educational Resources Information Center

    Ureksoy, Heather

    2011-01-01

    Increasing women's participation in the fields of science, technology, engineering and mathematics (STEM) can promote a healthy economy by ensuring a diverse and well-qualified STEM workforce, not only in the quantity of females in the workforce, but diversity in thinking and creativity. It will also send a positive message to young women about…

  16. Leaving STEM: STEM Ph.D. Holders in Non-STEM Careers. Issue Brief

    ERIC Educational Resources Information Center

    Turk-Bicakci, Lori; Berger, Andrea

    2014-01-01

    During the last few decades, national, state, and institutional-level initiatives have been implemented to build and expand the science, technology, engineering, and mathematics (STEM) workforce by recruiting and retaining groups of individuals that have been traditionally underrepresented in STEM in higher education. The underlying theory of…

  17. Women 1.5 Times More Likely to Leave STEM Pipeline after Calculus Compared to Men: Lack of Mathematical Confidence a Potential Culprit.

    PubMed

    Ellis, Jessica; Fosdick, Bailey K; Rasmussen, Chris

    2016-01-01

    The substantial gender gap in the science, technology, engineering, and mathematics (STEM) workforce can be traced back to the underrepresentation of women at various milestones in the career pathway. Calculus is a necessary step in this pathway and has been shown to often dissuade people from pursuing STEM fields. We examine the characteristics of students who begin college interested in STEM and either persist or switch out of the calculus sequence after taking Calculus I, and hence either continue to pursue a STEM major or are dissuaded from STEM disciplines. The data come from a unique, national survey focused on mainstream college calculus. Our analyses show that, while controlling for academic preparedness, career intentions, and instruction, the odds of a woman being dissuaded from continuing in calculus is 1.5 times greater than that for a man. Furthermore, women report they do not understand the course material well enough to continue significantly more often than men. When comparing women and men with above-average mathematical abilities and preparedness, we find women start and end the term with significantly lower mathematical confidence than men. This suggests a lack of mathematical confidence, rather than a lack of mathematically ability, may be responsible for the high departure rate of women. While it would be ideal to increase interest and participation of women in STEM at all stages of their careers, our findings indicate that if women persisted in STEM at the same rate as men starting in Calculus I, the number of women entering the STEM workforce would increase by 75%.

  18. Women 1.5 Times More Likely to Leave STEM Pipeline after Calculus Compared to Men: Lack of Mathematical Confidence a Potential Culprit

    PubMed Central

    Ellis, Jessica; Fosdick, Bailey K.; Rasmussen, Chris

    2016-01-01

    The substantial gender gap in the science, technology, engineering, and mathematics (STEM) workforce can be traced back to the underrepresentation of women at various milestones in the career pathway. Calculus is a necessary step in this pathway and has been shown to often dissuade people from pursuing STEM fields. We examine the characteristics of students who begin college interested in STEM and either persist or switch out of the calculus sequence after taking Calculus I, and hence either continue to pursue a STEM major or are dissuaded from STEM disciplines. The data come from a unique, national survey focused on mainstream college calculus. Our analyses show that, while controlling for academic preparedness, career intentions, and instruction, the odds of a woman being dissuaded from continuing in calculus is 1.5 times greater than that for a man. Furthermore, women report they do not understand the course material well enough to continue significantly more often than men. When comparing women and men with above-average mathematical abilities and preparedness, we find women start and end the term with significantly lower mathematical confidence than men. This suggests a lack of mathematical confidence, rather than a lack of mathematically ability, may be responsible for the high departure rate of women. While it would be ideal to increase interest and participation of women in STEM at all stages of their careers, our findings indicate that if women persisted in STEM at the same rate as men starting in Calculus I, the number of women entering the STEM workforce would increase by 75%. PMID:27410262

  19. Partnerships, Policy, and Educational Change: The Role of Mathematics and Science in K-16 Reform

    ERIC Educational Resources Information Center

    Maloney, Patricia A.

    2007-01-01

    Concerns about American competitiveness and innovation have led to increasing scrutiny of science, technical, engineering, and mathematics (STEM) education. Leaders in the higher education, business, and legislative communities have all issued calls for expanded opportunities and training in STEM fields to improve the skills of the U.S. workforce.…

  20. Perceptions, Engagement, and Practices of Teachers Seeking Professional Development in Place-Based Integrated STEM

    ERIC Educational Resources Information Center

    Nadelson, Louis S.; Seifert, Anne

    2013-01-01

    As science, technology, engineering, and mathematics (STEM) continue to grow in economic and social importance, it is critical that citizenry are prepared to be STEM literate. Furthermore, the workforce demands on STEM necessitate students seeking STEM degrees and pursuing STEM careers. Primary and secondary (K-12) teachers play an important role…

  1. Students with Disabilities' Perspectives of STEM Content and Careers

    ERIC Educational Resources Information Center

    Davis, Kimberly E. Bryant

    2014-01-01

    The current global economy has led to an increase in the need for workers in the fields of science, technology, engineering, and mathematics (STEM). Underrepresented populations, such as students with disabilities, are being considered as one way meet the STEM workforce shortages. In order to increase students' participation in STEM careers, it…

  2. STEM Attrition among High-Performing College Students in the United States: Scope and Potential Causes

    ERIC Educational Resources Information Center

    Chen, Xianglei

    2015-01-01

    Postsecondary education plays a critical role in building a strong workforce in Science, Technology, Engineering, and Mathematics (STEM) fields. The U.S. postsecondary education system, however, frequently loses many potential STEM graduates through attrition. An increasing portion of STEM leavers are top performers who might have made valuable…

  3. Using Community Colleges to Build a STEM-Skilled Workforce. Issue Brief

    ERIC Educational Resources Information Center

    NGA Center for Best Practices, 2011

    2011-01-01

    Education and skills in science, technology, engineering, and mathematics (STEM) are important in a global economy increasingly focused on high-growth, technology-driven occupations. Yet, many states face a shortage of STEM-skilled students and workers. A number of states have built powerful and productive STEM education and skills strategies to…

  4. Evaluating Psychosocial Mechanisms Underlying STEM Persistence in Undergraduates: Evidence of Impact from a Six-Day Pre-College Engagement STEM Academy Program

    ERIC Educational Resources Information Center

    Findley-Van Nostrand, Danielle; Pollenz, Richard S.

    2017-01-01

    The persistence of undergraduate students in science, technology, engineering, and mathematics (STEM) disciplines is a national issue based on STEM workforce projections. We implemented a weeklong pre-college engagement STEM Academy (SA) program aimed at addressing several areas related to STEM retention. We validated an instrument that was…

  5. Problematizing the STEM Pipeline Metaphor: Is the STEM Pipeline Metaphor Serving Our Students and the STEM Workforce?

    ERIC Educational Resources Information Center

    Cannady, Matthew A.; Greenwald, Eric; Harris, Kimberly N.

    2014-01-01

    Researchers and policy makers often use the metaphor of an ever-narrowing pipeline to describe the trajectory to a science, technology, engineering or mathematics (STEM) degree or career. This study interrogates the appropriateness of the STEM pipeline as the dominant frame for understanding and making policies related to STEM career trajectories.…

  6. Identifying STEM Concepts Associated with Junior Livestock Projects

    ERIC Educational Resources Information Center

    Wooten, Kate; Rayfield, John; Moore, Lori L.

    2013-01-01

    Science, technology, engineering, and mathematics (STEM) education is intended to provide students with a cross-subject, contextual learning experience. To more fully prepare our nation's students to enter the globally competitive workforce, STEM integration allows students to make connections between the abstract concepts learned in core subject…

  7. The Bayer Facts of Science Education XVI: US STEM Workforce Shortage— Myth or Reality? Fortune 1000 Talent Recruiters on the Debate

    NASA Astrophysics Data System (ADS)

    Bayer Corporation

    2014-10-01

    A major debate is currently underway in the USA about whether there is, in fact, a science, technology, engineering and mathematics (STEM) workforce shortage in the country or not. This is the subject of the Bayer Facts of Science Education XVI: US STEM Workforce Shortage—Myth or Reality? Fortune 1000 Talent Recruiters on the Debate. An ongoing public opinion research project commissioned by Bayer Corporation, the Bayer Facts surveys examine US STEM education, diversity and workforce issues. The 16th in the series, the newest survey asks talent recruiters at some of the country's largest employers—those included in the Fortune 1000—to weigh in on current and future demand for new hires with 2- and 4-year STEM degrees. As professionals responsible for scouting, recruiting and hiring talent at Fortune 1000 companies, both STEM and non-STEM alike, these individuals are on the frontlines, tasked with assessing and filling their companies' workforce needs. The survey asks the recruiters whether new hires with 2- and 4-year STEM degrees are as, more or less in demand than their peers without STEM degrees? Are more new STEM jobs being created at their companies than non-STEM jobs? Can they find adequate numbers of qualified candidates in a timely manner and how fierce is the competition for STEM degree holders? To answer these and other questions, the survey polled 150 talent recruiters at Fortune 1000 companies, both STEM and non-STEM alike. The survey also asks the recruiters about diversion in STEM, workforce diversity in the pipeline, the role of community colleges in developing the STEM pipeline and the desired skills and competencies of new hires.

  8. Tested Strategies for Recruiting and Retention of STEM Majors

    ERIC Educational Resources Information Center

    Davari, Sadegh; Perkins-Hall, Sharon; Abeysekera, Krishani

    2017-01-01

    There is a shortage of STEM (Science, Technology, Engineering and Mathematics) educated workforce in the US, especially among minority and underrepresented groups. Recruiting and retaining STEM majors has been a major problem for universities and community colleges for many years. The Computer Science department of University of Houston-Clear Lake…

  9. The Relationships among High School STEM Learning Experiences and Students' Intent to Declare and Declaration of a STEM Major in College

    ERIC Educational Resources Information Center

    Bottia, Martha Cecilia; Stearns, Elizabeth; Mickelson, Roslyn Arlin; Moller, Stephanie; Parker, Ashley Dawn

    2015-01-01

    Background/Context: Schools are integral to augmenting and diversifying the science, technology, engineering, and mathematics (STEM) workforce. This is because K-12 schools can inspire and reinforce students' interest in STEM, in addition to academically preparing them to pursue a STEM career. Previous literature emphasizes the importance of…

  10. Out-of-School Time Science Activities and Their Association with Career Interest in STEM

    ERIC Educational Resources Information Center

    Dabney, Katherine P.; Tai, Robert H.; Almarode, John T.; Miller-Friedmann, Jaimie L. L.; Sonnert, Gerhard; Sadler, Philip M.; Hazari, Zahra

    2012-01-01

    Spurred by concerns about an inadequately sized science, technology, engineering, and mathematics (STEM) workforce, there has been a growing interest in out-of-school time (OST) science activities as a means to foster STEM career interest. This study examines the association between OST science activities and STEM career interest in university…

  11. The Influence of Affirming Kindness and Community on Broadening Participation in STEM Career Pathways

    PubMed Central

    Estrada, Mica; Eroy-Reveles, Alegra; Matsui, John

    2018-01-01

    The United States’ inability to achieve equitable workforce development in science, technology, engineering, and mathematics (STEM) career pathways is well-recognized and has been attributed to the poor retention of a diverse stream of students in academia. Social science theory and research provide evidence that social contextual variables—specifically kindness cues affirming social inclusion—influence chronic underrepresentation of some groups within STEM career pathways. Review of the literature suggests that the current STEM academic context does not consistently provide cues that affirm social inclusion to all members of the academic population, and that policies that address this disparity are essential to broadening STEM workforce development in the United States. PMID:29657577

  12. Math and Science Education for the California Workforce: It Starts with K-12

    ERIC Educational Resources Information Center

    EdSource, 2008

    2008-01-01

    Workforce projections worldwide show a growing need for people with strong backgrounds in math and science. As the eighth largest economy in the world, California benefits particularly from enterprises in the "STEM" fields (science, technology, engineering, and mathematics). How well California's current public school students are…

  13. Toward a Framework for Multicultural STEM-Focused Career Interventions.

    PubMed

    Byars-Winston, Angela

    2014-12-14

    Numerous federal and national commissions have called for policies, funds, and initiatives aimed at expanding the nation's science, technology, engineering, and mathematics (STEM) workforce and education investments to create a significantly larger, more diverse talent pool of individuals who pursue technical careers. Career development professionals are poised to contribute to the equity discourse about broadening STEM participation. However, few are aware of STEM-related career development matters, career opportunities and pathways, or strategies for promoting STEM pursuits. The author summarizes STEM education and workforce trends and articulates an equity imperative for broadening and diversifying STEM participation. The author then offers a multicultural STEM-focused career development framework to encourage career development professionals' knowledge and awareness of STEM education and careers and delineates considerations for practice aimed at increasing the attainment and achievement of diverse groups in STEM fields.

  14. Toward a Framework for Multicultural STEM-Focused Career Interventions

    PubMed Central

    Byars-Winston, Angela

    2015-01-01

    Numerous federal and national commissions have called for policies, funds, and initiatives aimed at expanding the nation's science, technology, engineering, and mathematics (STEM) workforce and education investments to create a significantly larger, more diverse talent pool of individuals who pursue technical careers. Career development professionals are poised to contribute to the equity discourse about broadening STEM participation. However, few are aware of STEM-related career development matters, career opportunities and pathways, or strategies for promoting STEM pursuits. The author summarizes STEM education and workforce trends and articulates an equity imperative for broadening and diversifying STEM participation. The author then offers a multicultural STEM-focused career development framework to encourage career development professionals' knowledge and awareness of STEM education and careers and delineates considerations for practice aimed at increasing the attainment and achievement of diverse groups in STEM fields. PMID:25750480

  15. Insights into Implementing Research Collaborations between Research-Intensive Universities and Minority-Serving Institutions

    ERIC Educational Resources Information Center

    Thao, Mao; Lawrenz, Frances; Brakke, Mary; Sherman, Jamie; Matute, Martin

    2016-01-01

    With the high demand to build the science, technology, engineering, and mathematics (STEM) workforce and the disparity of underrepresented minorities in STEM fields, there have been increased educational efforts to diversify STEM fields. This article describes what works in research collaborations between research-intensive universities (RIUs) and…

  16. Preparing the Future Workforce: Science, Technology, Engineering and Math (STEM) Policy in K-12 Education

    ERIC Educational Resources Information Center

    Dickman, Anneliese; Schwabe, Amy; Schmidt, Jeff; Henken, Rob

    2009-01-01

    Last December, the Science, Technology, Engineering, and Mathematics (STEM) Education Coalition--a national organization of more than 600 groups representing knowledge workers, educators, scientists, engineers, and technicians--wrote to President-elect Obama urging him to "not lose sight of the critical role that STEM education plays in…

  17. Evaluation, Integration and Institutionalization of Initiatives to Enhance STEM Student Success

    ERIC Educational Resources Information Center

    Dickson, Lisa; Mandell, Marv; Maton, Kenneth; Marcotte, Dave; Rous, Philip; McDermott, Patrice; Rutledge, Janet; LaCourse, William R.; Sutphin, Kathy Lee

    2013-01-01

    Many researchers, policymakers, and university administrators have called for more students to major in Science, Technology, Engineering and Mathematics (STEM) fields to address the critical need for a diverse and technically skilled workforce that is prepared to address national problems and educate its future STEM leaders. One of the questions…

  18. Engaging All Students in the Pursuit of STEM Careers

    ERIC Educational Resources Information Center

    Dou, Remy; Gibbs, Kenneth D., Jr.

    2013-01-01

    The rapid population growth of under-represented minority groups and the continued under-utilisation of women mean that future growth in the domestic science, technology, engineering and mathematics (STEM) workforce is linked to greater diversity. Subject-matter mastery is important but insufficient for a student to pursue a STEM profession --…

  19. Role Models and Informal STEM-Related Activities Positively Impact Female Interest in STEM

    ERIC Educational Resources Information Center

    Weber, Katherine

    2011-01-01

    The United States' economy depends greatly on a citizenry that possesses scientific and technical skills within the fields of science, technology, engineering, and mathematics (STEM) for economic growth. In the past few decades, technological advancement has created a demand for a highly skilled workforce possessing scientific and mathematical…

  20. Gender Matters: An Examination of Differential Effects of the College Experience on Degree Attainment in STEM

    ERIC Educational Resources Information Center

    Gayles, Joy Gaston; Ampaw, Frim D.

    2011-01-01

    Although more women than men are enrolled in college within the United States, women remain underrepresented in critical areas of study such as science, technology, engineering, and mathematics (STEM). This is particularly concerning given that STEM fields of study are vital to the economic growth and workforce development within the United…

  1. Implementing Out-of-School Time STEM Resources: Best Practices from Public Television

    ERIC Educational Resources Information Center

    Paulsen, Christine Andrews

    2013-01-01

    Business leaders, educators, and government leaders agree that, in order for the United States to retain its standing as a world leader, public and private institutions need to work together to develop a well-qualified workforce in science, technology, engineering, and mathematics (STEM). However, the number of graduates with STEM degrees has not…

  2. Strategies for Broadening Participation in Advanced Technological Education Programs: Practice and Perceptions

    ERIC Educational Resources Information Center

    Smith, Corey; Wingate, Lori

    2016-01-01

    Expanding and diversifying the STEM (science, technology, engineering, and mathematics) workforce is a national priority. The National Science Foundation is investing efforts at post secondary education institutions to engage individuals who have been historically underrepresented in STEM. This paper investigated the use of strategies to broaden…

  3. Promising Practices for Strengthening the Regional STEM Workforce Development Ecosystem

    ERIC Educational Resources Information Center

    National Academies Press, 2016

    2016-01-01

    U.S. strength in science, technology, engineering, and mathematics (STEM) disciplines has formed the basis of innovations, technologies, and industries that have spurred the nation's economic growth throughout the last 150 years. Universities are essential to the creation and transfer of new knowledge that drives innovation. This knowledge moves…

  4. "Project NEO": A Video Game to Promote STEM Competency for Preservice Elementary Teachers

    ERIC Educational Resources Information Center

    Van Eck, Richard N.; Guy, Mark; Young, Timothy; Winger, Austin T.; Brewster, Scott

    2015-01-01

    The need for science, technology, engineering, and mathematics majors for our future workforce is growing, yet fewer students are choosing to major in science, technology, engineering, and mathematics areas, and many are underprepared, in part because elementary school preservice teachers are also underprepared. This National Science…

  5. Operating in the Middle: The Experiences of African American Female Transfer Students in STEM Degree Programs at HBCUs

    ERIC Educational Resources Information Center

    Smith, Dimitra Jackson

    2016-01-01

    Increasing the representation of African American females is essential to ensure the United States (U.S.) remains a viable competitor in the STEM (science, technology, engineering, and mathematics) workforce. With minorities anticipated to represent half of the resident U.S population by 2050, fostering STEM talent among this population is vital.…

  6. A Qualitative Investigation of African Americans' Decision to Pursue Computing Science Degrees: Implications for Cultivating Career Choice and Aspiration

    ERIC Educational Resources Information Center

    Charleston, LaVar J.

    2012-01-01

    According to Pearson (2002), minority groups are not well represented in science, technology, engineering, and mathematics (STEM) occupations. Among these underrepresented groups are African Americans. To ensure the economic vitality of the STEM workforce in the United States, it is imperative to broaden participation in STEM-related fields and…

  7. The Influence of Female Social Models in Corporate STEM Initiatives on Girls' Math and Science Attitudes

    ERIC Educational Resources Information Center

    Medeiros, Donald J.

    2011-01-01

    The United States' Science, Technology, Engineering, and Mathematics (STEM) workforce is growing slower than in the past, in comparison to demand, and in comparison to other countries. Competitive talent conditions require the United States to develop a strong pipeline of STEM talent within its own citizens. Given the number of female college…

  8. Future Workforce: NSF's Advanced Technological Education Program Celebrates 20 Years of Connecting Students with STEM Careers

    ERIC Educational Resources Information Center

    Patton, Madeline

    2014-01-01

    With the leadership of community college educators and their industry partners, the National Science Foundation's Advanced Technological Education (ATE) program has achieved an impressive record of incubating innovative science, technology, engineering, and mathematics (STEM) programs. ATE's mission to increase the quality of technicians working…

  9. Fostering Creativity and Innovation through Technology

    ERIC Educational Resources Information Center

    Vaidyanathan, Sheena

    2012-01-01

    To compete in the global workforce, educators know that their students must be well educated in science, engineering, technology, and mathematics (STEM) subjects. But, as outlined in the NETS, they must also develop the key skills of creativity and innovation. How can educators teach the typically left-brained STEM subjects along with the more…

  10. Pathways to the Geosciences Summer High School Program: A Ten-Year Evaluation

    ERIC Educational Resources Information Center

    Carrick, Tina L.; Miller, Kate C.; Hagedorn, Eric A.; Smith-Konter, Bridget R.; Velasco, Aaron A.

    2016-01-01

    The high demand for scientists and engineers in the workforce means that there is a continuing need for more strategies to increase student completion in science, technology, engineering, and mathematics (STEM) majors. The challenge lies in finding and enacting effective strategies to increase students' completion of STEM degrees and in recruiting…

  11. Who Is Teaching Science in Our High Schools? Exploring Factors Influencing Pre-Service Secondary Science Teachers' Decisions to Pursue Teaching as a Career

    ERIC Educational Resources Information Center

    McDonald, Christine V.

    2017-01-01

    A central objective of recent government reports focused on the important role of education in preparing a skilled and dynamic science, technology, engineering and mathematics (STEM) workforce, with effective teaching in secondary STEM classrooms reliant on the engagement and retention of high-quality STEM teachers (Office of the Chief Scientist,…

  12. NASA's Elementary and Secondary Education Program: Review and Critique

    NASA Technical Reports Server (NTRS)

    Quinn, Helen R. (Editor); Schweingruber, Heidi A. (Editor); Feder, Michael A. (Editor)

    2008-01-01

    The federal role in precollege science, technology, engineering, and mathematics (STEM) education is receiving increasing attention in light of the need to support public understanding of science and to develop a strong scientific and technical workforce in a competitive global economy. Federal science agencies, such as the National Aeronautics and Space Administration (NASA), are being looked to as a resource for enhancing precollege STEM education and bringing more young people to scientific and technical careers. For NASA and other federal science agencies, concerns about workforce and public understanding of science also have an immediate local dimension. The agency faces an aerospace workforce skewed toward those close to retirement and job recruitment competition for those with science and engineering degrees. In addition, public support for the agency s missions stems in part from public understanding of the importance of the agency s contributions in science, engineering, and space exploration.

  13. Formation and Representation: Critical Analyses of Identity, Supply, and Demand in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Metcalf, Heather E.

    2011-01-01

    Considerable research, policy, and programmatic efforts have been dedicated to addressing the participation of particular populations in STEM for decades. Each of these efforts claims equity-related goals; yet, they heavily frame the problem, through pervasive STEM pipeline model discourse, in terms of national needs, workforce supply, and…

  14. The National Science Foundation Strategic Framework for Investments in Graduate Education. FY 2016-FY 2020. Revised

    ERIC Educational Resources Information Center

    National Science Foundation, 2016

    2016-01-01

    Graduate education plays a central role in advancing the Nation's science and engineering research enterprise. It is also increasingly the means by which the Nation develops a diverse and highly technical Science Technology Engineering and Mathematics (STEM) professional workforce. The view that graduate education in STEM disciplines is an…

  15. A Problem-Solving Framework to Assist Students and Teachers in STEM Courses

    ERIC Educational Resources Information Center

    Phillips, Jeffrey A.; Clemmer, Katharine W.; McCallum, Jeremy E. B.; Zachariah, Thomas M.

    2017-01-01

    Well-developed, problem-solving skills are essential for any student enrolled in a science, technology, engineering, and mathematics (STEM) course as well as for graduates in the workforce. One of the most essential skills is the ability to monitor one's own progress and understanding while solving a problem. Successful monitoring during the…

  16. Standards for Technological Literacy and STEM Education Delivery through Career and Technical Education Programs

    ERIC Educational Resources Information Center

    Asunda, Paul A.

    2012-01-01

    At a minimum, employers rely on career and technical education (CTE) and workforce training systems to supply workers able to perform in their jobs. In CTE classes that seek to integrate science, technology, engineering, and mathematics (STEM) concepts, it falls to the instructors to design and sequence the learning experiences that will promote…

  17. Business Partnerships to Advance STEM Education: A Model of Success for the Nation

    ERIC Educational Resources Information Center

    Diaz-Rubio, Ivette

    2013-01-01

    In order to best prepare the U.S. workforce, schools need to focus on science, technology, engineering, and mathematics (STEM) education. However, given the current educational climate of reduced school funding, high teacher turnover, and increasing student diversity, the public school system simply cannot do this alone. This is where businesses…

  18. Building a Network to Support Girls and Women in Science, Technology, Engineering, and Mathematics

    NASA Astrophysics Data System (ADS)

    Spears, Jacqueline D.; Dyer, Ruth A.; Franks, Suzanne E.; Montelone, Beth A.

    Women today constitute over half of the U.S. population and almost half of its overall workforce, yet they make up less than a quarter of the science and engineering workforce. Many historical and social factors contribute to this discrepancy, and numerous individual, institutional, and governmental attempts have been made to redress it. However, many of the efforts to promote, include, and engage girls and women in science, technology, engineering, and mathematics (STEM) education and professions have been made in isolation. At Kansas State University, the authors have begun a systemic effort to increase the participation of girls and women in STEM. This article describes the creation and initial activities of a network of partners that includes universities, school districts, corporations, governmental agencies, and nonprofit organizations, assembled under the aegis of a project supported by funding from the National Science Foundation.

  19. The Underrepresentation of Women in the Engineering Element of STEM Occupations and Influencers Contributing to the Persistent Gap

    ERIC Educational Resources Information Center

    Holl, David

    2017-01-01

    Within Science, Technology, Engineering, and Mathematics (STEM) careers fields, the representation of women remains at an inequitable level when compared to men and to women's representation in other professions. Given the current state of women representing 52% of the professional and management-related workforce (U.S. Bureau of Labor and…

  20. Can UTeach? Assessing the Relative Effectiveness of STEM Teachers. Working Paper 173

    ERIC Educational Resources Information Center

    Backes, Ben; Goldhaber, Dan; Cade, Whitney; Sullivan, Kate; Dodson, Melissa

    2016-01-01

    UTeach is a well-known, university-based program designed to increase the number of high-quality science, technology, engineering, and mathematics (STEM) teachers in the workforce. The UTeach program was originally developed by faculty at the University of Texas at Austin but has rapidly spread and is now available at 44 universities in 21 states;…

  1. The Economic Vitality Formula of Success

    ERIC Educational Resources Information Center

    Konopnicki, Patrick M.

    2012-01-01

    An economic vitality formula of success can be accomplished by creating partnerships between local career and technical education (CTE), and workforce development and economic development entities. Student industry certifications; dynamic partnerships; programs and projects focused on science, technology, engineering, and mathematics (STEM); and…

  2. STEM: How a Poorly Defined Acronym Is Shaping Education and Workforce Development Policy in the United States. WCER Working Paper No. 2014-2

    ERIC Educational Resources Information Center

    Oleson, Amanda K.; Hora, Matthew T.; Benbow, Ross J.

    2014-01-01

    The fields of science, technology, engineering, and mathematics, more ubiquitously known by the acronym "STEM," have received a substantial amount of attention in recent years. As part of a research study investigating the alignment (or lack thereof) between the goals and priorities of educators and employers, we found it difficult to…

  3. Examining Key Factors that Contribute to African Americans' Pursuit of Computing Science Degrees: Implications for Cultivating Career Choice and Aspiration

    ERIC Educational Resources Information Center

    Charleston, LaVar Jovan

    2010-01-01

    As a result of decreasing degree attainment in science, technology, engineering, and mathematics (STEM) fields, the United States is undergoing a shortage in the STEM workforce that it has not encountered since the mid-1950s (ACT, 2006; Gilbert & Jackson, 2007). Moreover, as computer usage cuts across diverse aspects of modern culture, the…

  4. Innovations and Challenges in Project-Based STEM Education: Lessons from ITEST

    NASA Astrophysics Data System (ADS)

    Connors-Kellgren, Alice; Parker, Caroline E.; Blustein, David L.; Barnett, Mike

    2016-12-01

    For over a decade, the National Science Foundation's Innovative Technology Experiences for Students and Teachers (ITEST) program has funded researchers and educators to build an understanding of best practices, contexts, and processes contributing to K-12 students' motivation and participation in Science, Technology, Engineering, and Mathematics (STEM) activities that lead to STEM career pathways. The outcomes from these projects have contributed significantly to the national body of knowledge about strategies, successes, models, and interventions that support and encourage youth to pursue STEM careers. While the individual projects discussed in this special issue vary by geographic location, institution, populations served, primary focus, and topic, they are unified by ITEST's programmatic intent and goals. This issue offers research-based insights into the knowledge generated by a decade of ITEST-funded work in STEM career development. The articles describe a multitude of approaches to project design, evaluation, and empirical research. Collectively, they contribute to the development of frameworks for STEM education and workforce development that are increasingly relevant for educators, project designers, researchers, and policy makers. The ITEST program has enabled creativity, experimentation, and cultural responsiveness in STEM education and workforce development and broadened participation in STEM initiatives to Native American communities, underresourced urban communities, girls, and populations underrepresented in STEM fields. By approaching research and evaluation with flexibility and resourcefulness, the authors provide empirical evidence for the value of innovative approaches to STEM education that promote STEM interest and career-related outcomes and that build the foundational skills of the scientific and engineering workforce of the future.

  5. The influence of female social models in corporate STEM initiatives on girls' math and science attitudes

    NASA Astrophysics Data System (ADS)

    Medeiros, Donald J.

    The United States' Science, Technology, Engineering, and Mathematics (STEM) workforce is growing slower than in the past, in comparison to demand, and in comparison to other countries. Competitive talent conditions require the United States to develop a strong pipeline of STEM talent within its own citizens. Given the number of female college graduates and their underrepresentation in the STEM workforce, women provide the greatest opportunity for fulfilling this need. The term social model represents the individuals and media that shape children's self-perceptions. Social models have been shown to positively influence girl's perceptions of the value of math and science as well as their expectations of success. This study examined differences in attitudes towards math and science among student participants in corporate STEM programs. Differences were measured based on participant gender and ethnicity, their mentor's gender and ethnicity, and program design differences. The research purpose was to inform the design of corporate STEM programs to improve female participants' attitudes towards math and science and eventually increase the number of women in the STEM workforce. Over three hundred students in differing corporate STEM programs completed math and science attitudinal scales at the start and end of their programs. Study results revealed, prior to program start, female participants had a better attitude towards math and science than male participants. Analysis of the Trends in International Mathematics and Science Study data showed similar results. Overall program results demonstrated higher post program math and science attitudes with no differences based on gender, age, or ethnicity of the participant or mentor. Participants with high program or mentor satisfaction were found to have higher attitudes towards math and science. These results may suggest improving female academic choice requires more focus on their expectations of success than perceived task value. Male attitudes towards women's role in STEM fields may also require attention. Increasing attitudes seems best achieved through ensuring a highly satisfying experience with the program and their mentor. Study results suggest this requires more considerations than simply matching mentor and mentee race or gender. Reliability results of attitudinal scales provided guidance on assessment strategies.

  6. Higher Education: Science, Technology, Engineering, and Mathematics Trends and the Role of Federal Programs. Testimony before the Committee on Education and the Workforce, House of Representatives. GAO-06-702T

    ERIC Educational Resources Information Center

    Ashby, Cornelia M.

    2006-01-01

    The United States is a world leader in scientific and technological innovation. To help maintain this advantage, the federal government has spent billions of dollars on education programs in the science, technology, engineering, and mathematics (STEM) fields for many years. However, concerns have been raised about the nation's ability to maintain…

  7. Navigating Community College Transfer in Science, Technical, Engineering, and Mathematics Fields

    ERIC Educational Resources Information Center

    Packard, Becky Wai-Ling; Gagnon, Janelle L.; Senas, Arleen J.

    2012-01-01

    Given financial barriers facing community college students today, and workforce projections in science, technical, engineering, and math (STEM) fields, the costs of unnecessary delays while navigating transfer pathways are high. In this phenomenological study, we analyzed the delay experiences of 172 students (65% female) navigating community…

  8. Why Are We Still Worried about Women in Science?

    ERIC Educational Resources Information Center

    Rosser, Sue V.; Taylor, Mark Zachary

    2009-01-01

    Over the past three decades, the overall percentage of women receiving degrees in science, technology, engineering, and mathematics--known collectively as the STEM disciplines--has increased dramatically. This growth tends to mask at least three other aspects of the demographics of the science and technology workforce. Unfortunately, aggregated…

  9. Undergraduate and Teaching Assistants' Perceptions of Classroom Community in Freshman Biological Sciences Laboratories and Implications for Persistence and Professional Development

    NASA Astrophysics Data System (ADS)

    Kardohely, Andrew

    The American economy hinges on the health and production of science, technology engineering and mathematics workforce (STEM). Although this sector of the American workforce represents a substantially fewer jobs the STEM workforce fuels job growth and sustainability in the other sectors of the American workforce. Unfortunately, over the next decade the U.S. will face an additional deficit of over a million STEM professionals, thus the need is here now to fill this deficit. STEM education should, therefore, dedicated to producing graduates. One strategy to produce more STEM graduates is through retention of student in STEM majors. Retention or persistence is highly related to student sense of belonging in academic environments. This study investigates graduate teaching assistants (GTAs) perceptions of their classrooms and the implications of those perceptions on professional development. Furthermore, correlations between classroom community and student desire to persist, as measured by Rovai's Classroom Community Index (CCI) were established (P=0.0311). The interactions are described and results are discussed. Using a framework of teaching for community, and a qualitative analytic case study with memo writing about codes and themes methodology supported several themes including passion to teach and dedication to student learning, innovation in teaching practices based on evidence, an intrinsic desire to seek a diverse set of feedback, and instructors can foster community in the classroom. Using the same methodology one emergent theme, a tacit rather than explicit understanding of reading the classroom, was also present in the current study. Based on the results and using a lens for professional development, strategies and suggestions are made regarding strategies to enhance instructors' use of feedback and professional development.

  10. NASA's Elementary and Secondary Education Program: Review and Critique

    ERIC Educational Resources Information Center

    Feder, Michael A., Ed.; Schweingruber, Heidi A., Ed.; Quinn, Helen R., Ed.

    2008-01-01

    The federal role in precollege science, technology, engineering, and mathematics (STEM) education is receiving increasing attention in light of the need to support public understanding of science and to develop a strong scientific and technical workforce in a competitive global economy. Federal science agencies, such as the National Aeronautics…

  11. The Influence of Toy Design Activities on Middle School Students' Understanding of the Engineering Design Processes

    ERIC Educational Resources Information Center

    Zhou, Ninger; Pereira, Nielsen L.; Tarun, Thomas George; Alperovich, Jeffrey; Booth, Joran; Chandrasegaran, Senthil; Tew, Jeffrey David; Kulkarni, Devadatta M.; Ramani, Karthik

    2017-01-01

    The societal demand for inspiring and engaging science, technology, engineering, and mathematics (STEM) students and preparing our workforce for the emerging creative economy has necessitated developing students' self-efficacy and understanding of engineering design processes from as early as elementary school levels. Hands-on engineering design…

  12. STEM Pathways: Examining Persistence in Rigorous Math and Science Course Taking

    NASA Astrophysics Data System (ADS)

    Ashford, Shetay N.; Lanehart, Rheta E.; Kersaint, Gladis K.; Lee, Reginald S.; Kromrey, Jeffrey D.

    2016-12-01

    From 2006 to 2012, Florida Statute §1003.4156 required middle school students to complete electronic personal education planners (ePEPs) before promotion to ninth grade. The ePEP helped them identify programs of study and required high school coursework to accomplish their postsecondary education and career goals. During the same period Florida required completion of the ePEP, Florida's Career and Professional Education Act stimulated a rapid increase in the number of statewide high school career academies. Students with interests in STEM careers created STEM-focused ePEPs and may have enrolled in STEM career academies, which offered a unique opportunity to improve their preparedness for the STEM workforce through the integration of rigorous academic and career and technical education courses. This study examined persistence of STEM-interested (i.e., those with expressed interest in STEM careers) and STEM-capable (i.e., those who completed at least Algebra 1 in eighth grade) students ( n = 11,248), including those enrolled in STEM career academies, in rigorous mathematics and science course taking in Florida public high schools in comparison with the national cohort of STEM-interested students to measure the influence of K-12 STEM education efforts in Florida. With the exception of multi-race students, we found that Florida's STEM-capable students had lower persistence in rigorous mathematics and science course taking than students in the national cohort from ninth to eleventh grade. We also found that participation in STEM career academies did not support persistence in rigorous mathematics and science courses, a prerequisite for success in postsecondary STEM education and careers.

  13. Rethinking construction: inclusion of slow learners as taker-off in quantity surveying practice

    NASA Astrophysics Data System (ADS)

    Majid, Masidah Abdul; Ashaari, Norul Izzati M.; @ Suhana Kamarudin Nurul Aini Osman, Suhaida; Suhaimi, Mohamad Saifulnizam Mohd

    2017-11-01

    The objective of this paper is to present the preliminary findings regarding the participation of OKU with learning disability in Science Technology, Engineering and Mathematics (STEM) sectors. Review of the works of past researchers suggested that OKU is a potential workforce in STEM sectors but still under-represented due to lack of efforts from stakeholders and learning institutions in providing information on the opportunities that are available. A research has been initiated to explore the potential of slow learners to become workforce in the construction industry as a taker off - part of work of a Quantity Surveyor. Against the findings from the literature review, the modest attempt to attract slow learners to become taker off in the construction industry require the formulation of appropriate learning environment and strong support from the respective key players and stakeholders.

  14. Physics Bachelors: Initial Employment. Data from the Degree Recipient Follow-Up Survey for the Classes of 2013 and 2014. Focus On

    ERIC Educational Resources Information Center

    Mulvey, Patrick; Pold, Jack

    2017-01-01

    New physics bachelors entering the workforce receive some of the highest starting salaries of any undergraduate majors. Bachelors accepting STEM (science, technology, engineering, mathematics) positions in the private sector had a median starting salary of $55,000. Physics bachelors from 2013 and 2014 were contacted in the winter following the…

  15. Exploring the Experiences of African American Women in an Undergraduate Summer Research Program Designed to Address the Underrepresentation of Women and Minorities in Neuroscience: A Qualitative Analysis

    ERIC Educational Resources Information Center

    Reid, Ericka L.

    2010-01-01

    African American women compose a critical proportion of the potential science, technology, engineering, and mathematics (STEM) workforce of the future, yet are disproportionately represented and largely underutilized. While various programs and initiatives have been designed and implemented to target women and underrepresented minorities, the…

  16. Access and Success for African American Engineers and Computer Scientists: A Case Study of Two Predominantly White Public Research Universities

    ERIC Educational Resources Information Center

    Newman, Christopher Bufford

    2011-01-01

    Over the past decade, three rationales have emerged for emphasizing the reinforcement of the United States' science, technology, engineering, and mathematics (STEM) pipeline. The first rationale pertains to U.S. global competitiveness, the second revolves around the benefits of a diverse workforce, and the third argument points to social justice…

  17. Strengthening the STEM Education & Workforce Pipeline: Insights from the BHEF U.S. STEM Education Model Led to the STEM Higher Education and Workforce Project

    DTIC Science & Technology

    2011-06-15

    ORGANIZATION NAME(S) AND ADDRESS(ES) Business-Higher Education Forum ,Washington,DC,20036 8. PERFORMING ORGANIZATION REPORT NUMBER 9. SPONSORING...Strengthening the STEM Education & Workforce Pipeline: Insights from the BHEF U.S. STEM Education Model Led to the STEM Higher Education and...Workforce Project Naval STEM Forum June 15, 2011 Report Documentation Page Form ApprovedOMB No. 0704-0188 Public reporting burden for the collection of

  18. STEAM: Using the Arts to Train Well-Rounded and Creative Scientists

    PubMed Central

    Segarra, Verónica A.; Natalizio, Barbara; Falkenberg, Cibele V.; Pulford, Stephanie; Holmes, Raquell M.

    2018-01-01

    While the demand for a strong STEM workforce continues to grow, there are challenges that threaten our ability to recruit, train, and retain such a workforce in a way that is effective and sustainable and fosters innovation. One way in which we are meeting this challenge is through the use of the arts in the training of scientists. In this Perspectives article, we review the use of the arts in science education and its benefits in both K–12 and postsecondary education. We also review the use of STEAM (science, technology, engineering, arts, and mathematics) programs in science outreach and the development of professional scientists. PMID:29904562

  19. Navigating the Science, Technology, Engineering, and Mathematics Pipeline: How Social Capital Impacts the Educational Attainment of College-Bound Female Students

    ERIC Educational Resources Information Center

    Lee, Rebecca Elizabeth

    2011-01-01

    Despite the proliferation of women in higher education and the workforce, they have yet to achieve parity with men in many of the science, technology, engineering, and math (STEM) majors and careers. The gap is even greater in the representation of women from lower socioeconomic backgrounds. This study examined pre-college intervention strategies…

  20. Broadening the Study of Participation in the Life Sciences: How Critical Theoretical and Mixed-Methodological Approaches Can Enhance Efforts to Broaden Participation

    PubMed Central

    Metcalf, Heather

    2016-01-01

    This research methods Essay details the usefulness of critical theoretical frameworks and critical mixed-methodological approaches for life sciences education research on broadening participation in the life sciences. First, I draw on multidisciplinary research to discuss critical theory and methodologies. Then, I demonstrate the benefits of these approaches for researchers who study diversity and inclusion issues in the life sciences through examples from two critical mixed-methods studies of prominent issues in science, technology, engineering, and mathematics (STEM) participation and recognition. The first study pairs critical discourse analysis of the STEM workforce literature, data, and underlying surveys with quantitative analyses of STEM pathways into the workforce. This example illustrates the necessity of questioning popular models of retention. It also demonstrates the importance of intersecting demographic categories to reveal patterns of experience both within and between groups whose access to and participation in STEM we aim to improve. The second study’s critical approach applies research on inequities in prizes awarded by STEM professional societies toward organizational change. This example uses data from the life sciences professional societies to show the importance of placing data within context to broaden participation and understand challenges in creating sustainable change. PMID:27521238

  1. Diversity: The Business Case?

    NASA Astrophysics Data System (ADS)

    Jones, B.

    2013-12-01

    Understanding perceptions and managing expectations are learnable skills that do not necessarily come with project funding. Finding life balance as one moves through a STEM career path poses unique challenges that require a certain skill set that is not always intuitive. Some of those challenges include: selecting grad or post doc positions; balancing work and family commitments; and dealing with employer/advisor perceptions and expectations. As in nature, the STEM enterprise requires multiple perspectives to flourish (necessity of peer review), and in a changing environment (e.g., budget, generations, technology, etc.), embracing diversity in thought and application may help drive the evolution of STEM in the U.S. Many Agencies and organizations have ';workforce development' programs that focus on preparing the next generation of scientists and engineers at the graduate and undergraduate level that focus on preparing students in the diverse disciplines that are unique to those Agency and organizational missions. While financial support certainly is critical to assist students in Science Technology Engineering and Mathematics (STEM) and other fields, professional development is just as important to equip students with a balanced arsenal of tactics to be successful professionals in the STEM workforce of today. Success in these efforts requires an honest look at the issue of inequality in the STEM ecosystem... meaning, what initiatives have been successful in addressing the imbalance in sources of thought and application, therefore promoting the importance of diversity.

  2. Assessing the Workforce Outcomes of Maryland Science, Technology, Engineering, and Math (STEM) Postsecondary Graduates

    ERIC Educational Resources Information Center

    Zheng, Xiaying; Stapleton, Laura M.; Henneberger, Angela K.; Woolley, Michael E.

    2016-01-01

    The science, technology, engineering, and math (STEM) workforce, and therefore STEM education, has become increasingly central to the U.S. economic growth and competitiveness over the past five decades. Nationally, the number of STEM workforce positions and the number of STEM postsecondary graduates have increased over time, but there is…

  3. Examination of the U.S. Air Force's Science, Technology, Engineering, and Mathematics (STEM) Workforce Needs in the Future and Its Strategy to Meet Those Needs

    ERIC Educational Resources Information Center

    National Academies Press, 2010

    2010-01-01

    The Air Force requires technical skills and expertise across the entire range of activities and processes associated with the development, fielding, and employment of air, space, and cyber operational capabilities. The growing complexity of both traditional and emerging missions is placing new demands on education, training, career development,…

  4. The persistence of women in STEM: A constructivist grounded theory study

    NASA Astrophysics Data System (ADS)

    Gamm, Ryan

    Men and women have reached relative parity in most sectors of the United States workforce. Yet women remain underrepresented in science, technology, engineering, and mathematics (STEM) fields (AAUW, 2010). Underrepresentation persists despite several decades of research, legislation, and intervention focused on gender equality in STEM fields (Clewell, 2002). The underrepresentation or shortage of women in STEM fields is identifiable primarily in degree attainment, in workforce demographics, and in a gender wage gap. Situated in constructivist grounded theory, this study asks how do women in science, technology, engineering, and mathematics (STEM) fields, particularly those in established career positions, persist when encountering personal and institutional barriers, resistance, and hostility? I use an interpretive-constructivist lens to conduct a grounded theory study exploring the experiences of women who persist in STEM fields, their relation to extant literature on this topic, and the connections to K-12 education practices, specifically curriculum. To understand the connections to curriculum I employ Pinar's (2012) method of currere. Pinar (2012) contends currere "provides a strategy for students of curriculum to study the relations between academic knowledge and life history in the interests of self-understanding and social reconstruction" (p.44). This qualitative study explored nine female STEM workers stories of persistence as each respondent works in STEM fields were gender parity has yet to be established. This study presents a substantive theory: As women persist in STEM fields they reframe themselves to be situated in the overlapping intersection of the social processes that correspond to "engagement" and "persistence." This reframing is possible by interpreting one's present day circumstances by independently removing oneself from current circumstances to understand the cumulative effect of both past and present. The findings highlight the importance of early educative experiences and their reinforcement throughout formal education including the STEM pipeline. The findings suggest that how one understands and interprets STEM work, and the compatibility ones' own identity with this work are crucial, reinforcing the some of the diverse body of literature that seeks to understand women's underrepresentation in STEM. Although literature focused on STEM related education, including work examining gender, offers suggestions compatible with the findings of this study, experiences that are match the stories of the respondents appear to be outside of the norm.

  5. Sense and Sensibility: The Case for the Nationwide Inclusion of Engineering in the K-12 Curriculum

    NASA Technical Reports Server (NTRS)

    Lindberg, Robert E.; Pinelli, Thomas E.; Batterson, James G.

    2008-01-01

    The competitive status of the United States is inextricably linked to innovation just as innovation is inseparable from science, technology, engineering, and mathematics. To stay competitive in innovation requires that the United States produce a 21st century workforce complete with requisite education, training, skills, and motivation. If we accept a priori that science, technology, engineering, and mathematics education are crucial to competitiveness and innovation and that, in terms of innovation, mathematics, science, and engineering are interdependent, why are mathematics and science uniformly ubiquitous in the K-12 curriculum while engineering is conspicuously absent? We are passionate in our belief that the uniform addition of engineering to the K-12 curriculum will help ensure that the nation has "the right" 21st Century workforce. Furthermore, we believe that a nationwide effort, led by a coalition of engineering academics, practitioners, and societies is required to turn this goal into reality. However, accomplishing this goal necessitates, as we are reminded by the title of Jane Austen's timeless novel, "Sense and Sensibility", a workable solution that seeks the "middle ground" between passion and reason. We begin our paper by making two essential points: Engineers are not scientists. Engineering exists separate from science, has its own specialized knowledge community apart from science, and it is largely responsible for many of the most significant advancements and improvements in the quality of our life. Our workable solution requires that K-12 education, nationwide, accommodate the inclusion of engineering as a stand alone curriculum and we offer three reasons to support our position: (1) workforce development, (2) stimulating interest in STEM (science, technology, engineering, and mathematics) courses and careers, and (3) creating a technologically literate society. We conclude with some thoughts on how this important goal can be accomplished.

  6. Learning from our global competitors: A comparative analysis of science, technology, engineering and mathematics (STEM) education pipelines in the United States, Mainland China and Taiwan

    NASA Astrophysics Data System (ADS)

    Chow, Christina M.

    Maintaining a competitive edge within the 21st century is dependent on the cultivation of human capital, producing qualified and innovative employees capable of competing within the new global marketplace. Technological advancements in communications technology as well as large scale, infrastructure development has led to a leveled playing field where students in the U.S. will ultimately be competing for jobs with not only local, but also international, peers. Thus, the ability to understand and learn from our global competitors, starting with the examination of innovative education systems and best practice strategies, is tantamount to the economic development, and ultimate survival, of the U.S. as a whole. The purpose of this study was to investigate the current state of science, technology, engineering and mathematics (STEM) education and workforce pipelines in the U.S., China, and Taiwan. Two broad research questions examined STEM workforce production in terms of a) structural differences in primary and secondary school systems, including analysis of minimum high school graduation requirements and assessments as well as b) organizational differences in tertiary education and trends in STEM undergraduate and graduate degrees awarded in each region of interest. While each of the systems studied had their relative strengths and weaknesses, each of the Asian economies studied had valuable insights that can be categorized broadly in terms of STEM capacity, STEM interest and a greater understanding of global prospects that led to heightened STEM awareness. In China and Taiwan, STEM capacity was built via both traditional and vocational school systems. Focused and structured curriculum during the primary and early secondary school years built solid mathematics and science skills that translated into higher performance on international assessments and competitions. Differentiated secondary school options, including vocational high school and technical colleges and programs beginning shortly after junior high produced a greater number of alternatives for producing STEM capable students. A heightened interest in the STEM fields was built upon standardized academic core curriculum that ultimately yielded a greater percentage of qualified and interested Asian students pursuing bachelor's and advanced STEM degrees both in their native country and abroad. Rewards and incentives built into school systems, expansion of tertiary degree-granting programs, as well as the development of multiple university entrance pathways has served to heighten interest and perception of STEM careers as well as recruit top students into STEM fields. Further, foreign language classes, starting from either the first or third year of primary school, coupled with information technology and other experimental science and research themed classes, resulted in students who were more aware of global market demands. Analysis of longitudinal data shows that over a nine-year period, this combination of increased STEM capacity, interest and awareness resulted in a far greater percentage of 9th graders who eventually became STEM certificate, bachelor's, and advanced degree holders capable of competing in the global marketplace.

  7. Women in STEM: A Gender Gap to Innovation. ESA Issue Brief #04-11

    ERIC Educational Resources Information Center

    Beede, David; Julian, Tiffany; Langdon, David; McKittrick, George; Khan, Beethika; Doms, Mark

    2011-01-01

    The science, technology, engineering and math (STEM) workforce is crucial to America's innovative capacity and global competitiveness. Yet women are vastly underrepresented in STEM jobs and among STEM degree holders despite making up nearly half of the U.S. workforce and half of the college-educated workforce. That leaves an untapped opportunity…

  8. The influence of stem initiative programs for middle and high school students on female STEM college majors

    NASA Astrophysics Data System (ADS)

    McCaslin, Stephanie D.

    The areas of Science, Technology, Engineering, and Mathematics have long been overrepresented by men. In the workforce, more men work in these fields than women, and in school, more male students select majors in Science, Technology, Engineering, and Mathematics (STEM) than female students. Research has indicated that female students represent less than a third of college students selecting STEM majors. Several recommendations have been made by prominent educational organizations, such as the American Association of University Women (AAUW), including promoting these subjects to female students through STEM initiatives that are innovative and expose female students to careers in these areas. This qualitative research study sought to analyze the effectiveness of these initiatives by determining what factors are considered when a female student selects a STEM field of study at the college level and to examine how these students perceived the effectiveness of the STEM initiatives in which they participated. A series of interviews were conducted with female college students with declared majors in STEM fields who had participated in STEM initiatives in the state of Maryland. After analysis of the data collected, it was determined that STEM initiatives are not necessarily effective in increasing the number of women who enroll in STEM programs at the college level, however, they are effective in encouraging female students who are already interested in STEM. Female students who participated in these STEM initiatives more frequently were more likely to have a better understanding of STEM options, and were also more likely to complete STEM college degrees in less time than those who did not participate frequently in STEM initiatives.

  9. Enhancing the Math and Science Experiences of Latinas and Latinos: A Study of the Joaquin Bustoz Math-Science Honors Program

    NASA Astrophysics Data System (ADS)

    Escontrias, Gabriel, Jr.

    Latinas and Latinos are currently underrepresented in terms of our 21 st century student academic attainment and workforce, compared to the total U.S. Hispanic population. In a field such as mathematical sciences, Hispanic or Latino U.S. citizenship doctoral recipients only accounted for 3.04% in 2009--2010. While there are various initiatives to engage underrepresented STEM populations through education, there is a need to give a voice to the experiences of Latinas and Latinos engaged in such programs. This study explored the experiences of seven Arizona State University undergraduate Latina and Latino Joaquin Bustoz Math-Science Honors Program (JBMSHP) participants as well as examined how the program enhanced their math and science learning experiences. Participants attended either a five-week or eight-week program and ranged in attendance from 2006 to 2011. Students were provided an opportunity to begin university mathematics and science studies before graduating high school. Through a demographic survey and one-on-one guided interview, participants shared their personal journey, their experience in the JBMSHP, and their goals. Using grounded theory, a qualitative research approach, this study focuses on the unique experiences of Latina and Latino participants. Four major themes emerged from the analysis of the data. Each participant applied to the program with a foundation in which they sought to challenge themselves academically through mathematics and/or science. Through their involvement it the JBMSHP, participants recognized benefits during and after the program. All participants recognized the value of these benefits and their participation and praised the program. Overall, the JBMSHP provided the students the resources to grow their academic capital and if they chose seek a STEM related bachelor degree. The results of this study emphasize the need to expand the JBMSHP both within Arizona and nationally. In addition, there is a need to explore the other components of their parent center, the Mathematical, Computational and Modeling Sciences Center (MCMSC), to determine if the suggested pipeline, MCMSC Model for Enhancing the Math and Science Experiences of Latinas and Latinos, can positively impact our 21st century workforce and the dire representational need of Latinas and Latinos in STEM fields.

  10. Needed: Sy(STEM)ic Response. How California's Public Colleges and Universities Are Key to Strengthening the Science, Technology, Engineering, and Math (STEM) and Health Workforce

    ERIC Educational Resources Information Center

    Byrd, Daniel; Shorette, Rob

    2016-01-01

    California is at a crossroads in terms of STEM and health workforce development. On the one hand, California has more available entry-level STEM jobs than any other state in the country and a steadily growing health workforce, giving large segments of its population access to stable careers. On the other hand, California's public colleges and…

  11. Persistence of deaf students in science, technology, engineering, and mathematics undergraduate programs

    NASA Astrophysics Data System (ADS)

    Marchut, Amber E.

    Diversifying the student population and workforce under science, technology, engineering, and mathematics (STEM) is a necessity if innovations and creativity are to expand. There has not been a lot of literature regarding Deaf students in STEM especially regarding understanding how they persist in STEM undergraduate programs to successfully become STEM Bachelor of Science degree recipients. This study addresses the literature gap by investigating six students' experiences as they navigate their STEM undergraduate programs. The investigation uses narrative inquiry methodology and grounded theory method through the lens of Critical Race Theory and Critical Deaf Theory. Using videotaped interviews and observations, their experiences are highlighted using narratives portraying them as individuals surviving in a society that tends to perceive being deaf as a deficit that needs to be treated or cured. The data analysis also resulted in a conceptual model providing a description of how they persist. The crucial aspect of the conceptual model is the participants learned how to manage being deaf in a hearing-dominated society so they can reach their aspirations. The essential blocks for the persistence and managing their identities as deaf undergraduate STEMs include working harder, relying on familial support, and affirming themselves. Through the narratives and conceptual model of the six Deaf STEM undergraduates, the goal is to contribute to literature to promote a better understanding of the persistence of Deaf students, members of a marginalized group, as they pursue their dreams.

  12. Aerospace Workforce Development: The Nebraska Proposal; and Native View Connections: A Multi-Consortium Workforce Development Proposal. UNO Aviation Monograph Series

    NASA Technical Reports Server (NTRS)

    Bowen, Brent D.; Russell, Valerie; Vlasek, Karisa; Avery, Shelly; Calamaio, Larry; Carstenson, Larry; Farritor, Shane; deSilva, Shan; Dugan, James; Farr, Lynne

    2003-01-01

    The NASA Nebraska Space Grant Consortium (NSGC) continues to recognize the necessity of increasing the quantity and quality of highly skilled graduates and faculty involved with NASA. Through NASA Workforce Development funds awarded in 2002, NSGC spearheaded customer- focused workforce training and higher education, industry and community partnerships that are significantly impacting the state s workforce in the science, technology, engineering, and mathematics (STEM) competencies. NSGC proposes to build upon these accomplishments to meet the steadily increasing demand for STEM skills and to safeguard minority representation in these disciplines. A wide range of workforce development activities target NASA s need to establish stronger connections among higher education, industry, and community organizations. Participation in the National Student Satellite Program (NSSP), Community Internship Program, and Nebraska Science and Technology Recruitment Fair will extend the pipeline of employees benefiting NASA as well as Nebraska. The diversity component of this proposal catapults from the exceptional reputation NSGC has built by delivering geospatial science experiences to Nebraska s Native Americans. For 6 years, NSGC has fostered and sustained partnerships with the 2 tribal colleges and 4 reservation school districts in Nebraska to foster aeronautics education and outreach. This program, the Nebraska Native American Outreach Program (NNAOP), has grown to incorporate more than educational institutions and is now a partnership among tribal community leaders, academia, tribal schools, and industry. The content focus has broadened from aeronautics in the school systems to aerospace technology and earth science applications in tribal community decision-making and workforce training on the reservations. To date, participants include faculty and staff at 4 Nebraska tribal schools, 2 tribal colleges, approximately 1,000 Native American youth, and over 1,200 community members. This Native American Initiative of the NSGC addresses Nebraska workforce development and serves as a model to others. Following a structured evaluation process, NSGC proposes to sustain delivery of the training funded by NASA in 2002 to tribal entities through partnerships linking academic programs and industry leaders.

  13. Engaging Girls in STEM: A Discussion of Foundational and Current Research on What Works

    NASA Astrophysics Data System (ADS)

    Peterson, K.; Jesse, J.; Migus, L. H.

    2012-08-01

    Diversity in science, technology, engineering, and mathematics (STEM) education and careers occupies center stage in national discussions on U.S. competitiveness in the 21st century. Women constitute roughly half the total workforce in the U.S., but they hold just 25% of mathematical and science jobs and 11% of engineering jobs. Women earn nearly 60% of all bachelors and masters degrees, except in physics, computer science, and engineering, where the percentages are 20-25%. This disparity is even more pronounced at the doctoral level, where women earn fewer than 20% of awarded Ph.D.'s in physics or engineering. However, at the high school level, there is far less gender disparity: both female and male students take comparable advanced physical science and math courses. What, then, accounts for the lack of gender diversity in STEM advanced education and career paths? In fact, there is no consensus even among experts. So, what information and strategies do the EPO community need to know and include as part of designing and implementing programs to encourage more girls and women to engage in STEM for the long term? The panelists will discuss foundational and current research on pressing questions on why these trends exist and what can be done to change them. They will highlight research and evaluation results from programs that are successfully engaging girls in STEM.

  14. Evaluating Psychosocial Mechanisms Underlying STEM Persistence in Undergraduates: Evidence of Impact from a Six-Day Pre–College Engagement STEM Academy Program

    PubMed Central

    Findley-Van Nostrand, Danielle; Pollenz, Richard S.

    2017-01-01

    The persistence of undergraduate students in science, technology, engineering, and mathematics (STEM) disciplines is a national issue based on STEM workforce projections. We implemented a weeklong pre–college engagement STEM Academy (SA) program aimed at addressing several areas related to STEM retention. We validated an instrument that was developed based on existing, validated measures and examined several psychosocial constructs related to STEM (science identity, self-efficacy, sense of belonging to the university and to STEM, career expectancies, and intention to leave STEM majors) before and after the program. We also compared students in the SA program with a matched comparison group of first-year students. Results show that SA students significantly increased in science identity and sense of belonging to STEM and to the university, all predictive of increased STEM retention and a primary aim of the program. Relative to the matched comparison group, SA students began their first semester with higher STEM self-efficacy, sense of belonging, and science identity, positive career expectancies, and lower intention to leave STEM. The SA cohort showed 98% first-year retention and 92% STEM major retention. The SA program serves as a model of a scalable, first-level, cocurricular engagement experience to enhance psychosocial factors that impact undergraduate persistence in STEM. PMID:28572178

  15. An analysis of the effect of STEM initiatives on socially responsible diversity management in the US aerospace and defense industry

    NASA Astrophysics Data System (ADS)

    Johnson-Oliver, Patrick

    Workforce diversity is a growing concern at a global level and enlightened economic self-interest and corporate image compels industries to leverage it as a competitive advantage. The US aerospace and defense industry (US ADI) addresses workforce diversity through socially responsible diversity management. Prior research into the topic of approaching workforce diversity as a business rationale and a moral imperative has been limited. Scharmer and Kaufer's (2013) Theory U guided this longitudinal explanatory quantitative study, leading from the future as it emerged relative to socially responsible diversity management to compel industry to remove blind spots and co-create an economy that benefits all by promoting workforce diversity as a dual agenda. This study filled a research gap investigating the business case for diversity as a dual agenda in aerospace industry science, technology, engineering, and mathematics (STEM) disciplines. The study also investigated the America COMPETES Act as a moderator of the relationship between historically black colleges and universities (HBCUs) and industry. Data was retrieved for secondary data analysis from the National Science Foundation (NSF) and other public government services and agency websites. Two hypotheses were tested using quantitative analysis including descriptive statistics, linear regression, ANOVA, and two factor analysis. The statistical results were analyzed and deductive logic employed to develop conclusions for the study. There was a significant relationship found between both predictors and socially responsible diversity management. The results reinforce the necessity for the aerospace defense industry to promote the dual agenda of the business case for diversity as complementary; not as competing mandates.

  16. 1.2 million kids and counting-Mobile science laboratories drive student interest in STEM.

    PubMed

    Jones, Amanda L; Stapleton, Mary K

    2017-05-01

    In today's increasingly technological society, a workforce proficient in science, technology, engineering, and mathematics (STEM) skills is essential. Research has shown that active engagement by K-12 students in hands-on science activities that use authentic science tools promotes student learning and retention. Mobile laboratory programs provide this type of learning in schools and communities across the United States and internationally. Many programs are members of the Mobile Lab Coalition (MLC), a nonprofit organization of mobile and other laboratory-based education programs built on scientist and educator collaborations. A recent survey of the member programs revealed that they provide an impressive variety of programming and have collectively served over 1.2 million students across the US.

  17. Broadening the Study of Participation in the Life Sciences: How Critical Theoretical and Mixed-Methodological Approaches Can Enhance Efforts to Broaden Participation.

    PubMed

    Metcalf, Heather

    This research methods Essay details the usefulness of critical theoretical frameworks and critical mixed-methodological approaches for life sciences education research on broadening participation in the life sciences. First, I draw on multidisciplinary research to discuss critical theory and methodologies. Then, I demonstrate the benefits of these approaches for researchers who study diversity and inclusion issues in the life sciences through examples from two critical mixed-methods studies of prominent issues in science, technology, engineering, and mathematics (STEM) participation and recognition. The first study pairs critical discourse analysis of the STEM workforce literature, data, and underlying surveys with quantitative analyses of STEM pathways into the workforce. This example illustrates the necessity of questioning popular models of retention. It also demonstrates the importance of intersecting demographic categories to reveal patterns of experience both within and between groups whose access to and participation in STEM we aim to improve. The second study's critical approach applies research on inequities in prizes awarded by STEM professional societies toward organizational change. This example uses data from the life sciences professional societies to show the importance of placing data within context to broaden participation and understand challenges in creating sustainable change. © 2016 H. Metcalf. CBE—Life Sciences Education © 2016 The American Society for Cell Biology. This article is distributed by The American Society for Cell Biology under license from the author(s). It is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0).

  18. Motivating Young Native American Students to Pursue STEM Learning Through a Culturally Relevant Science Program

    NASA Astrophysics Data System (ADS)

    Stevens, Sally; Andrade, Rosi; Page, Melissa

    2016-12-01

    Data indicate that females and ethnic/race minority groups are underrepresented in the science and engineering workforce calling for innovative strategies to engage and retain them in science education and careers. This study reports on the development, delivery, and outcomes of a culturally driven science, technology, engineering, mathematics (STEM) program, iSTEM, aimed at increasing engagement in STEM learning among Native American 3rd-8th grade students. A culturally relevant theoretical framework, Funds of Knowledge, informs the iSTEM program, a program based on the contention that the synergistic effect of a hybrid program combining two strategic approaches (1) in-school mentoring and (2) out-of-school informal science education experiences would foster engagement and interest in STEM learning. Students are paired with one of three types of mentors: Native American community members, university students, and STEM professionals. The iSTEM program is theme based with all program activities specifically relevant to Native people living in southern Arizona. Student mentees and mentors complete interactive flash STEM activities at lunch hour and attend approximately six field trips per year. Data from the iSTEM program indicate that the program has been successful in engaging Native American students in iSTEM as well as increasing their interest in STEM and their science beliefs.

  19. Formation and representation: Critical analyses of identity, supply, and demand in science, technology, engineering, and mathematics

    NASA Astrophysics Data System (ADS)

    Mandayam Doddamane, Prabha

    2011-12-01

    Considerable research, policy, and programmatic efforts have been dedicated to addressing the participation of particular populations in STEM for decades. Each of these efforts claims equity-related goals; yet, they heavily frame the problem, through pervasive STEM pipeline model discourse, in terms of national needs, workforce supply, and competitiveness. This particular framing of the problem may, indeed, be counter to equity goals, especially when paired with policy that largely relies on statistical significance and broad aggregation of data over exploring the identities and experiences of the populations targeted for equitable outcomes in that policy. In this study, I used the mixed-methods approach of critical discourse and critical quantitative analyses to understand how the pipeline model ideology has become embedded within academic discourse, research, and data surrounding STEM education and work and to provide alternatives for quantitative analysis. Using critical theory as a lens, I first conducted a critical discourse analysis of contemporary STEM workforce studies with a particular eye to pipeline ideology. Next, I used that analysis to inform logistic regression analyses of the 2006 SESTAT data. This quantitative analysis compared and contrasted different ways of thinking about identity and retention. Overall, the findings of this study show that many subjective choices are made in the construction of the large-scale datasets used to inform much national science and engineering policy and that these choices greatly influence likelihood of retention outcomes.

  20. Recruiting and Supporting Diverse Geoscience and Environmental Science Students

    NASA Astrophysics Data System (ADS)

    Doser, Diane I.; Manduca, Cathy; Rhodes, Dallas

    2014-08-01

    Producing a workforce that will be successful in meeting global environmental and resource challenges requires that we attract diverse students into the geosciences, support them fully in our programs, and assist them as they move into the profession. However, geoscience has the lowest ethnic and racial diversity of any of the science, technology, engineering, and mathematics (STEM) disciplines (National Science Foundation (NSF), "Women, Minorities, and Persons with Disabilities in Science and Engineering," http://www.nsf.gov/statistics/wmpd/2013/start.cfm) and is often viewed as a difficult choice for students with physical disabilities.

  1. Expressing the sense of the House of Representatives that adding art and design into Federal programs that target the Science, Technology, Engineering, and Mathematics (STEM) fields encourages innovation and economic growth in the United States.

    THOMAS, 113th Congress

    Rep. Langevin, James R. [D-RI-2

    2013-02-04

    House - 02/04/2013 Referred to the Committee on Education and the Workforce, and in addition to the Committee on Science, Space, and Technology, for a period to be subsequently determined by the Speaker, in each case for consideration of such provisions as fall within the... (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  2. Creating the Workforce of the Future: The STEM Interest and Proficiency Challenge. BHEF Research Brief

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2011

    2011-01-01

    A strong economy requires a highly educated workforce, especially in science, technology, engineering, and math (STEM) fields. In the United States, STEM degree production has stagnated, despite employment projections forecasting a 17% growth in the field over the next decade. Two key criteria influence progression through the STEM education…

  3. Now hiring! Empirically testing a three-step intervention to increase faculty gender diversity in STEM

    USGS Publications Warehouse

    Smith, Jessi L.; Handley, Ian M.; Zale, Alexander V.; Rushing, Sara; Potvin, Martha A.

    2015-01-01

    Workforce homogeneity limits creativity, discovery, and job satisfaction; nonetheless, the vast majority of university faculty in science, technology, engineering, and mathematics (STEM) fields are men. We conducted a randomized and controlled three-step faculty search intervention based in self-determination theory aimed at increasing the number of women faculty in STEM at one US university where increasing diversity had historically proved elusive. Results show that the numbers of women candidates considered for and offered tenure-track positions were significantly higher in the intervention groups compared with those in controls. Searches in the intervention were 6.3 times more likely to make an offer to a woman candidate, and women who were made an offer were 5.8 times more likely to accept the offer from an intervention search. Although the focus was on increasing women faculty within STEM, the intervention can be adapted to other scientific and academic communities to advance diversity along any dimension.

  4. Now Hiring! Empirically Testing a Three-Step Intervention to Increase Faculty Gender Diversity in STEM

    PubMed Central

    Smith, Jessi L.; Handley, Ian M.; Zale, Alexander V.; Rushing, Sara; Potvin, Martha A.

    2015-01-01

    Workforce homogeneity limits creativity, discovery, and job satisfaction; nonetheless, the vast majority of university faculty in science, technology, engineering, and mathematics (STEM) fields are men. We conducted a randomized and controlled three-step faculty search intervention based in self-determination theory aimed at increasing the number of women faculty in STEM at one US university where increasing diversity had historically proved elusive. Results show that the numbers of women candidates considered for and offered tenure-track positions were significantly higher in the intervention groups compared with those in controls. Searches in the intervention were 6.3 times more likely to make an offer to a woman candidate, and women who were made an offer were 5.8 times more likely to accept the offer from an intervention search. Although the focus was on increasing women faculty within STEM, the intervention can be adapted to other scientific and academic communities to advance diversity along any dimension. PMID:26955075

  5. Industry-Education Partnerships: Bridging the Gap Between the Workplace and the Classroom

    NASA Astrophysics Data System (ADS)

    Harpole, S. H.

    2004-12-01

    Across the nation, business and industry are increasingly concerned about the quality of today's workforce and are issuing policy statements on both teacher preparation and teacher enhancement. Educational partnerships with industry are critical to the economic growth of the nation, particularly in rural areas where 31 percent of the nation's public schools are located. Through quality learning experiences that result from research/industry internships, teachers can better prepare for the 21st century workforce, become more aware of career opportunities, and emphasize the importance of preparation in science, technology, engineering and mathematics. To provide a model for successful industry-education partnerships, Mississippi State University is building on projects funded by the National Science Foundation, other funding agencies, and private foundations involving research/industry experiences for teachers. Industry-Education Partnerships: A Model for the Teacher Professional Continuum (NSF ESI-0353441) is developing a learning community model that spans the education continuum, connecting education and industry while focusing on preparing students to enter a workplace based on a global economy and researching the factors that contribute to successful partnerships. Research/work experiences will be provided to science, technology, engineering and mathematics (STEM) participants covering the teacher continuum.

  6. Exciting middle and high school students about immunology: an easy, inquiry-based lesson.

    PubMed

    Lukin, Kara

    2013-03-01

    High school students in the United States are apathetic about science, technology, engineering and mathematics (STEM), and the workforce pipeline in these areas is collapsing. The lack of understanding of basic principles of biology means that students are unable to make educated decisions concerning their personal health. To address these issues, we have developed a simple, inquiry-based outreach lesson centered on a mouse dissection. Students learn key concepts in immunology and enhance their understanding of human organ systems. The experiment highlights aspects of the scientific method and authentic data collection and analysis. This hands-on activity stimulates interest in biology, personal health and careers in STEM fields. Here, we present all the information necessary to execute the lesson effectively with middle and high school students.

  7. The U.S. STEM Undergraduate Model: Applying System Dynamics to Help Meet President Obama's Goals for One Million STEM Graduates and the U.S. Navy's Civilian STEM Workforce Needs

    ERIC Educational Resources Information Center

    Business-Higher Education Forum, 2013

    2013-01-01

    This report shows how insights gained from system dynamics modeling and the U.S. STEM Undergraduate Model® can help inform the Navy's strategy to grow a robust civilian workforce that is strongly invested with Navy-relevant STEM skills and ready to contribute to the next generation of Naval innovation. This work positions the Navy to serve a…

  8. Characteristics of the Navy Laboratory Warfare Center Technical Workforce

    DTIC Science & Technology

    2013-09-29

    Mathematics and Information Science (M&IS) Actuarial Science 1510 Computer Science 1550 Gen. Math & Statistics 1501 Mathematics 1520 Operations...Admin. Network Systems & Data Communication Analysts Actuaries Mathematicians Operations Research Analyst Statisticians Social Science (SS...workforce was sub-divided into six broad occupational groups: Life Science , Physical Science , Engineering, Mathematics, Computer Science and Information

  9. Preparation of Underrepresented Males for Scientific Careers: A Study of the Dr. John H. Hopps Jr. Defense Research Scholars Program at Morehouse College

    PubMed Central

    Thompson, Rahmelle C.; Monroe-White, Thema; Xavier, Jeffrey; Howell, Courtney; Moore, Myisha Roberson; Haynes, J. K.

    2016-01-01

    Equal representation within higher education science, technology, engineering, and mathematics (STEM) fields and the STEM workforce in the United States across demographically diverse populations is a long-standing challenge. This study uses two-to-one nearest-neighbor matched-comparison group design to examine academic achievement, pursuit of graduate science degree, and classification of graduate institution attended by students participating in the Hopps Scholars Program (Hopps) at Morehouse College. Hopps is a highly structured enrichment program aimed at increasing participation of black males in STEM fields. Morehouse institutional records, Hopps Program records, and National Student Clearinghouse data were used to examine differences between Hopps and non-Hopps STEM graduates of Morehouse. Two-way sample t tests and chi-square tests revealed significant differences in academic achievement, likelihood of STEM degree pursuit, and the classification of graduate institutions attended by Hopps versus non-Hopps students. Hopps Scholars were significantly more likely than non-Hopps STEM graduates both to pursue STEM doctoral degrees and to attend doctoral-granting institutions with higher research activity. The Hopps Program’s approach to training black male students for scientific careers is a model of success for other programs committed to increasing the number of black males pursuing advanced degrees in STEM. PMID:27562959

  10. Teaching Climate Change Through Data Analytics: Updates on the TRELLIS Project at the City University of New York

    NASA Astrophysics Data System (ADS)

    Rosenzweig, B.; Cak, A. D.

    2017-12-01

    Community colleges have been identified as a particularly important gateway for the United States' scientific workforce. However, students that begin their higher education at community colleges often face barriers in developing the skills needed for higher-level STEM careers, including basic training in mathematics, programming and communications, deep analytical and problem-solving skills, and experience with working across disciplines. As part of the Undergraduate STEM Interventions in Industry (USI2) Consortium, we have developed a summer bridge program for students in diverse STEM fields transferring from City University of New York (CUNY) community colleges to the City College of New York. Students participating in the program receive training and work on team data analysis projects on various themes related to climate change resilience and New York City. We will discuss our experiences during the first 2 years of implementation of the summer bridge program along with plans for a capstone program for students in their senior year.

  11. Preparing physics students for careers outside of academia

    NASA Astrophysics Data System (ADS)

    Redmond, Kendra; Czujko, Roman; Sauncy, Toni

    2014-03-01

    Most undergraduate physics programs focus on preparing students for physics graduate school, but in reality around 40% of physics bachelor's degree recipients go directly into the workforce. In response to calls for more STEM workers and a desire to see more students of all ambitions benefit from a physics education, the American Institute of Physics has been exploring how physics departments can better prepare their students to enter the STEM workforce after the bachelor's degree, and how students can better prepare themselves to enter the STEM workforce. This poster will include results from this NSF-funded Career Pathways Project, including an overview of common features of departments that successfully prepare students to enter the workforce and a career toolbox we have created for physics students. Work supported by NSF award 1011829.

  12. Community College Pathways to the STEM Workforce: What Are They, Who Follows Them, and How?

    ERIC Educational Resources Information Center

    Van Noy, Michelle; Zeidenberg, Matthew

    2017-01-01

    This chapter describes community college STEM programs, including transfer-oriented science and engineering (S&E) programs and workforce-oriented technician programs, and the characteristics and educational pathways of the students who enroll in these programs.

  13. Conference to focus on solutions to the jobs crisis in STEM fields

    NASA Astrophysics Data System (ADS)

    Asher, Pranoti

    2012-06-01

    The inaugural “U.S. News STEM Solutions 2012: A Leadership Summit,” which will take place 27-29 June in Dallas, Tex., will bring together hundreds of leaders in business, education, and government to develop solutions to the jobs crisis in the science, technology, engineering, and math (STEM) fields. With unemployment rates high at the same time that many STEM jobs are going unfilled, the conference will focus on what is working now and what is needed to develop successful local, state, and national action plans to accelerate the development of the STEM workforce in the United States. A broad array of STEM workforce issues will be examined, including how to engage young students and how technology can better align educators with job creators and the skill sets that are required. Summit organizers hope that a key result of the conference will be a national consensus on best practices and the steps needed—in both the short and long term—to ensure a competitive workforce. Another summit objective is to find effective ways to increase public awareness of STEM and its connection to jobs.

  14. Workshop initial report: Expanding the geoscience pipeline by connecting educators with early career IODP scientists

    NASA Astrophysics Data System (ADS)

    Lewis, J. C.; Cooper, S. K.; Hovan, S. A.; Leckie, R. M.; White, L. D.

    2017-12-01

    The U.S. is facing challenges in attracting, retaining and diversifying the workforce in the geosciences. A likely contributing factor is the homogeneity of the pool of mentors/role models available both within the workforce and in the U.S. professoriate. Another probable factor is "exposure gaps" among U.S. student populations; i.e., differing access to engaging facets of science, technology, engineering and mathematics (STEM). In response, we organized an 18-day School of Rock workshop onboard the International Ocean Discovery Program (IODP) drilling vessel JOIDES Resolution during a July 2017 transit in the western Pacific. Our objectives were diversity driven, focusing on measures to broaden participation at all levels (i.e., K-12, undergraduate and beyond) in innovative ways (e.g., from place-base curriculum to longitudinal peer mentoring through extracurricular STEM communities). To accomplish this, we designed a recruiting scheme to attract pairs of participants, specifically a teacher from a diverse community and a nearby early-career scientist with an interest in IODP science. By partnering in this way we sought to foster connections that might not naturally emerge, and therein to establish new mechanisms for increased engagement, broader recruitment, enhanced support, and improved retention of students from underrepresented communities in STEM education. We report on initial workshop outcomes that include new curriculum proposals, nascent funding proposals, and innovative connections among secondary educators and early-career scientists. Survey results of our participants gauge the expected impacts of the workshop on perceptions and on plans for future actions aimed at broadening participation.

  15. Design and Assessment of an Associate Degree-Level Plant Operations Technical Education Program

    NASA Astrophysics Data System (ADS)

    Selwitz, Jason Lawrence

    Research was undertaken to develop and evaluate an associate degree-level technical education program in Plant Operations oriented towards training students in applied science, technology, engineering, and mathematics (STEM) skills and knowledge relevant to a spectrum of processing industries. This work focuses on four aspects of the curriculum and course development and evaluation research. First, the context of, and impetus for, what was formerly called vocational education, now referred to as technical or workforce education, is provided. Second, the research that was undertaken to design and evaluate an associate degree-level STEM workforce education program is described. Third, the adaptation of a student self-assessment of learning gains instrument is reviewed, and an analysis of the resulting data using an adapted logic model is provided, to evaluate the extent to which instructional approaches, in two process control/improvement-focused courses, were effective in meeting course-level intended learning outcomes. Finally, eight integrative multiscale exercises were designed from two example process systems, wastewater treatment and fast pyrolysis. The integrative exercises are intended for use as tools to accelerate the formation of an operator-technician's multiscale vision of systems, unit operations, underlying processes, and fundamental reactions relevant to multiple industries. Community and technical colleges serve a vital function in STEM education by training workers for medium- and high-skilled technical careers and providing employers the labor necessary to operate and maintain thriving business ventures. Through development of the curricular, course, and assessment-related instruments and tools, this research helps ensure associate degree-level technical education programs can engage in a continual process of program evaluation and improvement.

  16. 77 FR 25523 - Semi-Annual Workforce Management Conference

    Federal Register 2010, 2011, 2012, 2013, 2014

    2012-04-30

    ... DEPARTMENT OF TRANSPORTATION Office of the Secretary Semi-Annual Workforce Management Conference...-Annual Workforce Management Conference. The Conference will be hosted by the Secretary of Transportation... STEM disciplines, best practices for addressing labor/management issues, and safety. Registration Space...

  17. Addressing the STEM Workforce Challenge: Missouri. BHEF Research Brief

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2012

    2012-01-01

    While states and the federal government have put efforts in place to increase the size of the workforce trained in science, technology, engineering, and math (STEM) to meet innovation demands, there continues to be a nationwide shortage of students who are interested in and prepared for such careers. Missouri is no exception to this problem, one…

  18. Workforce Education Models for K-12 STEM Education Programs: Reflections On, and Implications For, the NSF ITEST Program

    ERIC Educational Resources Information Center

    Reider, David; Knestis, Kirk; Malyn-Smith, Joyce

    2016-01-01

    This article proposes a STEM workforce education logic model, tailored to the particular context of the National Science Foundation's Innovative Technology Experiences for Students and Teachers (ITEST) program. This model aims to help program designers and researchers address challenges particular to designing, implementing, and studying education…

  19. Enhancing Diversity in Undergraduate Science: Self-Efficacy Drives Performance Gains with Active Learning

    PubMed Central

    Ballen, Cissy J.; Wieman, Carl; Salehi, Shima; Searle, Jeremy B.; Zamudio, Kelly R.

    2017-01-01

    Efforts to retain underrepresented minority (URM) students in science, technology, engineering, and mathematics (STEM) have shown only limited success in higher education, due in part to a persistent achievement gap between students from historically underrepresented and well-represented backgrounds. To test the hypothesis that active learning disproportionately benefits URM students, we quantified the effects of traditional versus active learning on student academic performance, science self-efficacy, and sense of social belonging in a large (more than 250 students) introductory STEM course. A transition to active learning closed the gap in learning gains between non-URM and URM students and led to an increase in science self-efficacy for all students. Sense of social belonging also increased significantly with active learning, but only for non-URM students. Through structural equation modeling, we demonstrate that, for URM students, the increase in self-efficacy mediated the positive effect of active-learning pedagogy on two metrics of student performance. Our results add to a growing body of research that supports varied and inclusive teaching as one pathway to a diversified STEM workforce. PMID:29054921

  20. STEAM: A National Study of the Integration of the Arts Into STEM Instruction and its Impact on Student Achievement

    NASA Astrophysics Data System (ADS)

    Rabalais, Mark E.

    The purpose of this study is to examine the relationship between exposure to the arts and performance in Science, Technology, Engineering, and Math (STEM) subjects. STEAM, an integration of arts-based instruction into science and math related fields, is viewed as an alternative to traditional STEM academies. The literature briefly examines the current state of STEM programs and the deficiencies in graduate quality and quantity and the call from employers for a more innovative workforce. Advocates for STEAM argue for arts as a means to improve creativity, collaboration, risk-taking and exploration. Arguments against arts in STEM are grounded in political opinions concerning arts funding and logistical complications of implementing STEAM. However, some schools and STEM programs have embraced the STEAM premise and have begun to integrate arts into the traditional curriculum. The 2009 National Assessment of Educational Progress (NAEP) dataset was utilized to determine a correlation between the number of arts credits earned and mathematics/science achievement. Results from the NAEP dataset indicated a correlation between the amount of arts credits and increased achievement scores in science and math. The same correlation was found when controlling for demographic factors such as gender, race, and socio-economic status (SES). Overall, the arts' greatest impact was on students identified as "at-risk" or underrepresented in STEM fields. Controlling for these variable groups, one can note the quantifiable differences in scores. Overall, findings of the study provide empirical support for the addition of arts in STEM.

  1. Connecting Physics Bachelors to Their Dream Jobs

    NASA Astrophysics Data System (ADS)

    Bhattacharya, Shouvik

    2013-01-01

    People who earn bachelor’s degrees in physics are highly employable. Employers value the skills that physics bachelor’s recipients acquire and develop over their four years of a college education, such as complex problem solving, advanced mathematics, teamwork and programming. The Career Pathways Project of the American Institute of Physics (AIP) aims to better prepare physics undergraduates for the science, technology, engineering, and math (STEM) workforce. This presentation will include a discussion of common features among departments visited by the AIP’s Career Pathways team, ideas for a career workshop for physics undergraduates, and advice on how to make the most out of a job fair and how to start effective online professional networking.

  2. Closing the Gaps and Filling the STEM Pipeline: A Multidisciplinary Approach

    NASA Astrophysics Data System (ADS)

    Doerschuk, Peggy; Bahrim, Cristian; Daniel, Jennifer; Kruger, Joseph; Mann, Judith; Martin, Cristopher

    2016-08-01

    There is a growing demand for degreed science, technology, engineering and mathematics (STEM) professionals, but the production of degreed STEM students is not keeping pace. Problems exist at every juncture along the pipeline. Too few students choose to major in STEM disciplines. Many of those who do major in STEM drop out or change majors. Females and minorities remain underrepresented in STEM. The success rate of college students who are from low-income background or first-generation students is much lower than that of students who do not face such challenges. Some of those who successfully complete their degree need help in making the transition to the workforce after graduation. A program at Lamar University takes a multidisciplinary approach to addressing these problems. It is designed to recruit, retain and transition undergraduates to careers in STEM, focusing its efforts on five science disciplines and on these "at-risk" students. The program was supported by a 5-year grant from the National Science Foundation and is supported through August 31, 2016 by Lamar University and a grant from ExxonMobil. A formal assessment plan documents the program's success. The program received an award from the Texas Higher Education Board for its contributions towards Closing the Gaps in Higher Education in Texas. This paper describes the program's theoretical framework, research questions, methods, evaluation plan, and instruments. It presents an analysis of the results achieved using these methods and implications for improvements to the program resulting from lessons learned.

  3. Global Collaborative STEM Education

    NASA Astrophysics Data System (ADS)

    Meabh Kelly, Susan; Smith, Walter

    2016-04-01

    Global Collaborative STEM Education, as the name suggests, simultaneously supports two sets of knowledge and skills. The first set is STEM -- science, technology, engineering and math. The other set of content knowledge and skills is that of global collaboration. Successful global partnerships require awareness of one's own culture, the biases embedded within that culture, as well as developing awareness of the collaborators' culture. Workforce skills fostered include open-mindedness, perseverance when faced with obstacles, and resourceful use of technological "bridges" to facilitate and sustain communication. In respect for the 2016 GIFT Workshop focus, Global Collaborative STEM Education projects dedicated to astronomy research will be presented. The projects represent different benchmarks within the Global Collaborative STEM Education continuum, culminating in an astronomy research experience that fully reflects how the global STEM workforce collaborates. To facilitate wider engagement in Global Collaborative STEM Education, project summaries, classroom resources and contact information for established international collaborative astronomy research projects will be disseminated.

  4. Point of View: Diversity in STEM: Doctor, Heal Thyself

    ERIC Educational Resources Information Center

    Nilsson, Melanie R.

    2017-01-01

    This column shares reflections or thoughtful opinions on issues of broad interest to the community. This month's issue calls on STEM professionals to take three simple steps toward diversifying the STEM workforce.

  5. Beliefs and Attitudes about Science and Mathematics in Pre-Service Elementary Teachers, STEM, and Non-STEM Majors in Undergraduate Physics Courses

    NASA Astrophysics Data System (ADS)

    Michaluk, Lynnette; Stoiko, Rachel; Stewart, Gay; Stewart, John

    2018-04-01

    Elementary teachers often hold inaccurate beliefs about the Nature of Science (NoS) and have negative attitudes toward science and mathematics. Using a pre-post design, the current study examined beliefs about the NoS, attitudes toward science and mathematics, and beliefs about the teaching of mathematics and science in a large sample study ( N = 343) of pre-service teachers receiving a curriculum-wide intervention to improve these factors in comparison with Science, Technology, Engineering, and Mathematics (STEM) and non-STEM majors in other physics courses ( N = 6697) who did not receive the intervention, over a 10-year period. Pre-service teachers evidenced initially more negative attitudes about mathematics and science than STEM majors and slightly more positive attitudes than non-STEM majors. Their attitudes toward mathematics and science and beliefs about the NoS were more similar to non-STEM than STEM majors. Pre-service teachers initially evidenced more positive beliefs about the teaching of mathematics and science, and their beliefs even increased slightly over the course of the semester, while these beliefs in other groups remained the same. Beliefs about the NoS and the teaching of mathematics and science were significantly negatively correlated for STEM and non-STEM majors, but were not significantly correlated for pre-service teachers. Beliefs about the NoS and attitudes toward mathematics and science were significantly positively correlated for both pre-service teachers and STEM students pursing the most mathematically demanding STEM majors. Attitudes toward science and mathematics were significantly positively correlated with accurate beliefs about the teaching of mathematics and science for all student groups.

  6. Hispanic students' mathematics achievement in the context of their high school types as STEM and non-STEM schools

    NASA Astrophysics Data System (ADS)

    Bicer, Ali; Capraro, Robert M.; Capraro, Mary M.

    2018-07-01

    The purpose of this paper is to demonstrate Hispanic students' mathematics achievement growth rate in Inclusive science, technology, engineering, and mathematics (STEM) high schools compared to Hispanic students' mathematics achievement growth rate in traditional public schools. Twenty-eight schools, 14 of which were Texas STEM (T-STEM) academies and 14 of which were matched non-STEM schools, were included in this study. A hierarchical linear modelling method was conducted. The result of the present study revealed that there was no difference in Hispanic students' mathematics achievement growth rate in T-STEM academies compared to Hispanic students' mathematics achievement growth rate in comparison schools. However, in terms of gender, the results indicated that female Hispanic students in T-STEM academies outperformed female Hispanic students in comparison schools in their mathematics growth rate.

  7. Contributions of the Akamai Workforce Initiative

    ERIC Educational Resources Information Center

    St. John, Mark; Castori, Pam

    2014-01-01

    This brief presents a third party, external perspective on the Akamai Workforce Initiative (AWI), highlighting some of the contributions of the initiative over the last ten years. AWI is a program that seeks to develop a skilled local STEM workforce to meet the needs of Hawai'i's growing high-tech industry. It began as an internship program…

  8. Hispanic Students' Mathematics Achievement in the Context of Their High School Types as STEM and Non-STEM Schools

    ERIC Educational Resources Information Center

    Bicer, Ali; Capraro, Robert M.; Capraro, Mary M.

    2018-01-01

    The purpose of this paper is to demonstrate Hispanic students' mathematics achievement growth rate in Inclusive science, technology, engineering, and mathematics (STEM) high schools compared to Hispanic students' mathematics achievement growth rate in traditional public schools. Twenty-eight schools, 14 of which were Texas STEM (T-STEM) academies…

  9. INCREASING ACHIEVEMENT AND HIGHER-EDUCATION REPRESENTATION OF UNDER-REPRESENTED GROUPS IN SCIENCE, TECHNOLOGY, ENGINEERING, AND MATHEMATICS FIELDS: A REVIEW OF CURRENT K-12 INTERVENTION PROGRAMS.

    PubMed

    Valla, Jeffrey M; Williams, Wendy M

    2012-01-01

    The under-representation of women and ethnic minorities in Science, Technology, Engineering, and Mathematics (STEM) education and professions has resulted in a loss of human capital for the US scientific workforce and spurred the development of myriad STEM educational intervention programs. Increased allocation of resources to such programs begs for a critical, prescriptive, evidence-based review that will enable researchers to develop optimal interventions and administrators to maximize investments. We begin by providing a theoretical backdrop for K-12 STEM programs by reviewing current data on under-representation and developmental research describing individual-level social factors undergirding these data. Next, we review prototypical designs of these programs, highlighting specific programs in the literature as examples of program structures and components currently in use. We then evaluate these interventions in terms of overall effectiveness, as a function of how well they address age-, ethnicity-, or gender-specific factors, suggesting improvements in program design based on these critiques. Finally, program evaluation methods are briefly reviewed and discussed in terms of how their empirical soundness can either enable or limit our ability to delineate effective program components. "Now more than ever, the nation's changing demographics demand that we include all of our citizens in science and engineering education and careers. For the U.S. to benefit from the diverse talents of all its citizens, we must grow the pipeline of qualified, underrepresented minority engineers and scientists to fill positions in industry and academia."-Irving P. McPhail..

  10. Navigating the science, technology, engineering, and mathematics pipeline: How social capital impacts the educational attainment of college-bound female students

    NASA Astrophysics Data System (ADS)

    Lee, Rebecca Elizabeth

    Despite the proliferation of women in higher education and the workforce, they have yet to achieve parity with men in many of the science, technology, engineering, and math (STEM) majors and careers. The gap is even greater in the representation of women from lower socioeconomic backgrounds. This study examined pre-college intervention strategies provided by the University of Southern California's Math, Engineering, Science Achievement (MESA) program, as well as the relationships and experiences that contributed to the success of underrepresented female high school students in the STEM pipeline. A social capital framework provided the backdrop to the study. This qualitative study takes an ethnographic approach, incorporating 11 interviews, 42 hours of observation, and document analysis to address the research questions: How does involvement in the MESA program impact female students' decisions to pursue a mathematics or science major in college? What is the role of significant others in supporting and encouraging student success? The findings revealed a continuous cycle of support for these students. The cycle started in the home environment, where parents were integral in the early influence on the students' decisions to pursue higher education. Relationships with teachers, counselors, and peers provided critical networks of support in helping these students to achieve their academic goals. Participation in the MESA program empowered the students and provided additional connections to knowledge-based resources. This study highlights the interplay among family, school, and the MESA program in the overall support of underrepresented female students in the STEM pipeline.

  11. INCREASING ACHIEVEMENT AND HIGHER-EDUCATION REPRESENTATION OF UNDER-REPRESENTED GROUPS IN SCIENCE, TECHNOLOGY, ENGINEERING, AND MATHEMATICS FIELDS: A REVIEW OF CURRENT K-12 INTERVENTION PROGRAMS

    PubMed Central

    Valla, Jeffrey M.; Williams, Wendy M.

    2012-01-01

    The under-representation of women and ethnic minorities in Science, Technology, Engineering, and Mathematics (STEM) education and professions has resulted in a loss of human capital for the US scientific workforce and spurred the development of myriad STEM educational intervention programs. Increased allocation of resources to such programs begs for a critical, prescriptive, evidence-based review that will enable researchers to develop optimal interventions and administrators to maximize investments. We begin by providing a theoretical backdrop for K-12 STEM programs by reviewing current data on under-representation and developmental research describing individual-level social factors undergirding these data. Next, we review prototypical designs of these programs, highlighting specific programs in the literature as examples of program structures and components currently in use. We then evaluate these interventions in terms of overall effectiveness, as a function of how well they address age-, ethnicity-, or gender-specific factors, suggesting improvements in program design based on these critiques. Finally, program evaluation methods are briefly reviewed and discussed in terms of how their empirical soundness can either enable or limit our ability to delineate effective program components. “Now more than ever, the nation’s changing demographics demand that we include all of our citizens in science and engineering education and careers. For the U.S. to benefit from the diverse talents of all its citizens, we must grow the pipeline of qualified, underrepresented minority engineers and scientists to fill positions in industry and academia.”—Irving P. McPhail.. PMID:22942637

  12. Forging the Solution to the Energy Challenge: The Role of Materials Science and Materials Scientists

    NASA Astrophysics Data System (ADS)

    Wadsworth, Jeffrey

    2010-04-01

    The energy challenge is central to the most important strategic problems facing the United States and the world. It is increasingly clear that even large-scale deployments of the best technologies available today cannot meet the rising energy demands of a growing world population. Achieving a secure and sustainable energy future will require full utilization of, and substantial improvements in, a comprehensive portfolio of energy systems and technologies. This goal is complicated by several factors. First, energy strategies are inextricably linked to national security and health issues. Second, in developing and deploying energy technologies, it is vital to consider not only environmental issues, such as global climate change, but also economic considerations, which strongly influence both public and political views on energy policy. Third, a significant and sustained effort in basic and applied research and development (R&D) will be required to deliver the innovations needed to ensure a desirable energy future. Innovations in materials science and engineering are especially needed to overcome the limits of essentially all energy technologies. A wealth of historical evidence demonstrates that such innovations are also the key to economic prosperity. From the development of the earliest cities around flint-trading centers, to the Industrial Revolution, to today’s silicon-based global economy, the advantage goes to those who lead in exploiting materials. I view our challenge by considering the rate of innovation and the transition of discovery to the marketplace as the relationship among R&D investment, a skilled and talented workforce, business innovations, and the activities of competitors. Most disturbing in analyzing this relationship is the need for trained workers in science, technology, engineering, and mathematics (STEM). To develop the STEM workforce needed for innovation, we need sustainable, positive change in STEM education at all levels from preschool through postgraduate. Materials sciences can be a significant magnet in attracting students to STEM areas, and a focused effort is needed to ensure that it is included in STEM programs. From this effort will come the next generation of materials scientists and the innovations that will enable us to overcome the energy challenge.

  13. Forging the Solution to the Energy Challenge: The Role of Materials Science and Materials Scientists

    NASA Astrophysics Data System (ADS)

    Wadsworth, Jeffrey

    2010-05-01

    The energy challenge is central to the most important strategic problems facing the United States and the world. It is increasingly clear that even large-scale deployments of the best technologies available today cannot meet the rising energy demands of a growing world population. Achieving a secure and sustainable energy future will require full utilization of, and substantial improvements in, a comprehensive portfolio of energy systems and technologies. This goal is complicated by several factors. First, energy strategies are inextricably linked to national security and health issues. Second, in developing and deploying energy technologies, it is vital to consider not only environmental issues, such as global climate change, but also economic considerations, which strongly influence both public and political views on energy policy. Third, a significant and sustained effort in basic and applied research and development (R&D) will be required to deliver the innovations needed to ensure a desirable energy future. Innovations in materials science and engineering are especially needed to overcome the limits of essentially all energy technologies. A wealth of historical evidence demonstrates that such innovations are also the key to economic prosperity. From the development of the earliest cities around flint-trading centers, to the Industrial Revolution, to today’s silicon-based global economy, the advantage goes to those who lead in exploiting materials. I view our challenge by considering the rate of innovation and the transition of discovery to the marketplace as the relationship among R&D investment, a skilled and talented workforce, business innovations, and the activities of competitors. Most disturbing in analyzing this relationship is the need for trained workers in science, technology, engineering, and mathematics (STEM). To develop the STEM workforce needed for innovation, we need sustainable, positive change in STEM education at all levels from preschool through postgraduate. Materials sciences can be a significant magnet in attracting students to STEM areas, and a focused effort is needed to ensure that it is included in STEM programs. From this effort will come the next generation of materials scientists and the innovations that will enable us to overcome the energy challenge.

  14. STEM and our future transportation leaders.

    DOT National Transportation Integrated Search

    2016-02-10

    Between 2012 to 2022, 40 to 50 percent of the transportation workforce is expected to : retire taking valuable knowledge with them. State Departments of Transportation (DOT) : are expected to play a significant role in replenishing the workforce pipe...

  15. Finding Your Workforce: The Top 25 Institutions Graduating Latinos in Science, Technology, Engineering, and Math (STEM) by Academic Level--2009-10. Third in a Series Linking College Completion with U.S. Workforce Needs

    ERIC Educational Resources Information Center

    Santiago, Deborah; Soliz, Megan

    2012-01-01

    Drawing attention to the institutions graduating Latinos in postsecondary education links the college completion goals of the U.S. with the workforce needs of the country. This third brief in the Finding Your Workforce series provides a summary of the top 25 institutions at each academic level graduating Latinos from certificates to doctoral…

  16. Mathematical Modeling: A Bridge to STEM Education

    ERIC Educational Resources Information Center

    Kertil, Mahmut; Gurel, Cem

    2016-01-01

    The purpose of this study is making a theoretical discussion on the relationship between mathematical modeling and integrated STEM education. First of all, STEM education perspective and the construct of mathematical modeling in mathematics education is introduced. A review of literature is provided on how mathematical modeling literature may…

  17. The Design and Evolution of the Akamai Workforce Initiative: An External Review

    ERIC Educational Resources Information Center

    St. John, Mark; Castori, Pam

    2014-01-01

    The Akamai Workforce Initiative (AWI) is a program that seeks to develop a skilled local STEM workforce to meet the needs of Hawai'i's growing high-tech industry. Launched as an internship program in 2002, AWI is the result of a long-term collaboration among the University of California Santa Cruz's Institute for Scientist and Engineer Educators…

  18. A Geoscience Workforce Model for Non-Geoscience and Non-Traditional STEM Students

    NASA Astrophysics Data System (ADS)

    Liou-Mark, J.; Blake, R.; Norouzi, H.; Vladutescu, D. V.; Yuen-Lau, L.

    2016-12-01

    The Summit on the Future of Geoscience Undergraduate Education has recently identified key professional skills, competencies, and conceptual understanding necessary in the development of undergraduate geoscience students (American Geosciences Institute, 2015). Through a comprehensive study involving a diverse range of the geoscience academic and employer community, the following professional scientist skills were rated highly important: 1) critical thinking/problem solving skills; 2) effective communication; 3) ability to access and integrate information; 4) strong quantitative skills; and 5) ability to work in interdisciplinary/cross cultural teams. Based on the findings of the study above, the New York City College of Technology (City Tech) has created a one-year intensive training program that focusses on the development of technical and non-technical geoscience skills for non-geoscience, non-traditional STEM students. Although City Tech does not offer geoscience degrees, the primary goal of the program is to create an unconventional pathway for under-represented minority STEM students to enter, participate, and compete in the geoscience workforce. The selected cohort of STEM students engage in year-round activities that include a geoscience course, enrichment training workshops, networking sessions, leadership development, research experiences, and summer internships at federal, local, and private geoscience facilities. These carefully designed programmatic elements provide both the geoscience knowledge and the non-technical professional skills that are essential for the geoscience workforce. Moreover, by executing this alternate, robust geoscience workforce model that attracts and prepares underrepresented minorities for geoscience careers, this unique pathway opens another corridor that helps to ameliorate the dire plight of the geoscience workforce shortage. This project is supported by NSF IUSE GEOPATH Grant # 1540721.

  19. Trend Analysis on Mathematics Achievements: A Comparative Study Using TIMSS Data

    ERIC Educational Resources Information Center

    Ker, H. W.

    2013-01-01

    Research addressed the importance of mathematics education for the students' preparation to enter scientific and technological workforce. This paper utilized Trends in International Mathematics and Science Study (TIMSS) 2011 data to conduct a global comparative analysis on mathematics performance at varied International Benchmark levels. The…

  20. Exploring Specialized STEM High Schools: Three Dissertation Studies Examining Commonalities and Differences Across Six Case Studies

    NASA Astrophysics Data System (ADS)

    Tofel-Grehl, Colby

    This dissertation is comprised of three independently conducted analyses of a larger investigation into the practices and features of specialized STEM high schools. While educators and policy makers advocate the development of many new specialized STEM high schools, little is known about the unique features and practices of these schools. The results of these manuscripts add to the literature exploring the promise of specialized STEM schools. Manuscript 1¹ is a qualitative investigation of the common features of STEM schools across multiple school model types. Schools were found to possess common cultural and academic features regardless of model type. Manuscript 2² builds on the findings of manuscript 1. With no meaningful differences found attributable to model type, the researchers used grounded theory to explore the relationships between observed differences among programs as related to the intensity of the STEM experience offered at schools. Schools were found to fall into two categories, high STEM intensity (HSI) and low STEM intensity (LSI), based on five major traits. Manuscript 3³ examines the commonalities and differences in classroom discourse and teachers' questioning techniques in STEM schools. It explicates these discursive practices in order to explore instructional practices across schools. It also examines factors that may influence classroom discourse such as discipline, level of teacher education, and course status as required or elective. Collectively, this research furthers the agenda of better understanding the potential advantages of specialized STEM high schools for preparing a future scientific workforce. ¹Tofel-Grehl, C., Callahan, C., & Gubbins, E. (2012). STEM high school communities: Common and differing features. Manuscript in preparation. ²Tofel-Grehl, C., Callahan, C., & Gubbins, E. (2012). Variations in the intensity of specialized science, technology, engineering, and mathematics (STEM) high schools. Manuscript in preparation. ³Tofel-Grehl, C., Callahan, C., & Gubbins, E. (2012). Comparative analyses of discourse in specialized STEM school classes. Manuscript in preparation.

  1. Preparation of Underrepresented Males for Scientific Careers: A Study of the Dr. John H. Hopps Jr. Defense Research Scholars Program at Morehouse College.

    PubMed

    Thompson, Rahmelle C; Monroe-White, Thema; Xavier, Jeffrey; Howell, Courtney; Moore, Myisha Roberson; Haynes, J K

    Equal representation within higher education science, technology, engineering, and mathematics (STEM) fields and the STEM workforce in the United States across demographically diverse populations is a long-standing challenge. This study uses two-to-one nearest-neighbor matched-comparison group design to examine academic achievement, pursuit of graduate science degree, and classification of graduate institution attended by students participating in the Hopps Scholars Program (Hopps) at Morehouse College. Hopps is a highly structured enrichment program aimed at increasing participation of black males in STEM fields. Morehouse institutional records, Hopps Program records, and National Student Clearinghouse data were used to examine differences between Hopps and non-Hopps STEM graduates of Morehouse. Two-way sample t tests and chi-square tests revealed significant differences in academic achievement, likelihood of STEM degree pursuit, and the classification of graduate institutions attended by Hopps versus non-Hopps students. Hopps Scholars were significantly more likely than non-Hopps STEM graduates both to pursue STEM doctoral degrees and to attend doctoral-granting institutions with higher research activity. The Hopps Program's approach to training black male students for scientific careers is a model of success for other programs committed to increasing the number of black males pursuing advanced degrees in STEM. © 2016 R. C. Thompson et al. CBE—Life Sciences Education © 2016 The American Society for Cell Biology. This article is distributed by The American Society for Cell Biology under license from the author(s). It is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0).

  2. Relationship of Middle School Student STEM Interest to Career Intent

    ERIC Educational Resources Information Center

    Christensen, Rhonda; Knezek, Gerald

    2017-01-01

    Understanding middle school students' perceptions regarding STEM dispositions, and the role attitudes play in establishing STEM career aspirations, is imperative to preparing the STEM workforce of the future. Data were gathered from more than 800 middle school students participating in a hands-on, real world application curriculum to examine the…

  3. Moving STEM beyond Schools: Students' Perceptions about an Out-of-School STEM Education Program

    ERIC Educational Resources Information Center

    Baran, Evrim; Bilici, Sedef Canbazoglu; Mesutoglu, Canan; Ocak, Ceren

    2016-01-01

    Recent reports call for reformed education policies in Turkey in accordance with the need to develop students' knowledge and skills about STEM education and improving STEM workforce in the country. This research implemented an integrated out-of-school STEM education program for 6th grade students who come from disadvantaged areas in a large urban…

  4. Marketing Strategy Research

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    None

    This report documents the research that has been undertaken as background for preparation of a marketing campaign for middle and high school students to increase interest in national security careers at the National Nuclear Security Administration. This work is a part of the National Security Preparedness Project (NSPP), being performed under a Department of Energy (DOE)/National Nuclear Security Administration (NNSA) grant. Previous research on the development of a properly trained and skilled national security workforce has identified a lack of interest by k-12 students in the STEM (Science, Technology, Engineering, and Mathematics) fields. Further, participation in these careers by womenmore » and minority populations is limited and is not increasing. Added to this are low educational achievement levels in New Mexico, where the marketing campaign will be deployed.« less

  5. The environment for women in physics in Ireland

    NASA Astrophysics Data System (ADS)

    McLoughlin, Eilish; Fee, Sandra; McCabe, Eithne

    2015-12-01

    Physics is contributing strongly to the national Irish economy, with 4.5% of the Irish workforce employed in physics-based or other science, technology, engineering, and math (STEM) sectors. However, a recent national report reveals that the proportion of women working in jobs that utilize STEM skills is less than 25% of the workforce. We present data collected from the views of 1,000 female secondary school students, young women (age 18-23), secondary-school teachers and parents on what influences secondary school students' choices of subjects and in particular STEM-related subjects. In addition, benchmarking data on female student and staff ratios for the past five years is presented from all seven Irish university physics departments.

  6. National Mathematics Advisory Panel Reports of the Task Groups and Subcommittees

    ERIC Educational Resources Information Center

    US Department of Education, 2008

    2008-01-01

    For students to compete in the 21st-century global economy, knowledge of and proficiency in mathematics are critical. Whether headed to college or to the workforce, today's high school graduates need solid mathematics skill. The National Mathematics Advisory Panel was created in 2006 and charged with reviewing the best available scientific…

  7. NASA Education Recommendation Report - Education Design Team 2011

    NASA Technical Reports Server (NTRS)

    Pengra, Trish; Stofan, James

    2011-01-01

    NASA people are passionate about their work. NASA's missions are exciting to learners of all ages. And since its creation in 1958, NASA's people have been passionate about sharing their inspiring discoveries, research and exploration with students and educators. In May 2010, NASA administration chartered an Education Design Team composed of 12 members chosen from the Office of Education, NASA's Mission Directorates and Centers for their depth of knowledge and education expertise, and directed them to evaluate the Agency's program in the context of current trends in education. By improving NASA's educational offerings, he was confident that the Agency can play a leading role in inspiring student interest in science, technology, engineering and mathematics (STEM) as few other organizations can. Through its unique workforce, facilities, research and innovations, NASA can expand its efforts to engage underserved and underrepresented communities in science and mathematics. Through the Agency's STEM education efforts and science and exploration missions, NASA can help the United States successfully compete, prosper and be secure in the 21st century global community. After several months of intense effort, including meeting with education experts; reviewing Administration policies, congressional direction and education research; and seeking input from those passionate about education at NASA, the Education Design Team made six recommendations to improve the impact of NASA's Education Program: (1) Focus the NASA Education Program to improve its impact on areas of greatest national need (2) Identify and strategically manage NASA Education partnerships (3) Participate in National and State STEM Education policy discussions (4) Establish a structure to allow the Office of Education, Centers and Mission Directorates to implement a strategically integrated portfolio (5) Expand the charter of the Education Coordinating Committee to enable deliberate Education Program design (6) Improve communication to inspire learners

  8. Applied Physics Education: PER focused on Physics-Intensive Careers

    NASA Astrophysics Data System (ADS)

    Zwickl, Benjamin

    2017-01-01

    Physics education research is moving beyond classroom learning to study the application of physics education within STEM jobs and PhD-level research. Workforce-related PER is vital to supporting physics departments as they educate students for a diverse range of careers. Results from an on-going study involving interviews with entry-level employees, academic researchers, and supervisors in STEM jobs describe the ways that mathematics, physics, and communication are needed for workplace success. Math and physics are often used for solving ill-structured problems that involve data analysis, computational modeling, or hands-on work. Communication and collaboration are utilized in leadership, sales, and as way to transfer information capital throughout the organization through documentation, emails, memos, and face-to-face discussions. While managers and advisors think a physics degree typically establishes technical competency, communication skills are vetted through interviews and developed on the job. Significant learning continues after graduation, showing the importance of cultivating self-directed learning habits and the critical role of employers as educators of specialized technical abilities through on-the-job training. Supported by NSF DGE-1432578.

  9. STEM Education: What Does Mathematics Have to Offer?

    ERIC Educational Resources Information Center

    Fitzallen, Noleine

    2015-01-01

    The emphasis on science, technology, engineering, and mathematics (STEM) education in recent times could be perceived as business as usual or as an opportunity for innovation and change in mathematics classrooms. Either option presents challenges for mathematics educators who are expected to contribute to the foundations of a STEM literate…

  10. Female STEM majors wanted: The impact of certain factors on choice of a college major

    NASA Astrophysics Data System (ADS)

    Conrad, Walter Michael

    Although females have made significant strides in educational achievements and substantial inroads into academic majors, such as business and medicine, they have made considerably less progress in the science, technology, engineering, and math (STEM) fields. This translates into a smaller number of female graduates prepared to work in the science career fields and results in American industry looking to other countries for its educated workforce. A mixed-methods research design was used to explore and understand the lived experiences and perceptions of faculty members and working STEM professionals in Northern and Central Virginia. Results indicated that although females are attaining STEM degrees and entering STEM fields in record numbers, obstacles such as a challenging STEM curriculum, bias, feelings of insecurity, lack of female role models, and inadequate preparation for the STEM workforce could impede the progress females have made. This research makes recommendations to the academic community and industry which may be used as retention and recruitment strategies for females considering a career in STEM. The ultimate goal is to significantly increase the number of highly skilled female graduates entering STEM fields, leading the U.S. to regain its previous position atop the world in technological innovation and leadership.

  11. Science, technology, engineering, mathematics (STEM) as mathematics learning approach in 21st century

    NASA Astrophysics Data System (ADS)

    Milaturrahmah, Naila; Mardiyana, Pramudya, Ikrar

    2017-08-01

    This 21st century demands competent human resources in science, technology, engineering design and mathematics so that education is expected to integrate the four disciplines. This paper aims to describe the importance of STEM as mathematics learning approach in Indonesia in the 21st century. This paper uses a descriptive analysis research method, and the method reveals that STEM education growing in developed countries today can be a framework for innovation mathematics in Indonesia in the 21st century. STEM education integrate understanding of science, math skills, and the available technology with the ability to perform engineering design process. Implementation of mathematics learning with STEM approach makes graduates trained in using of mathematics knowledge that they have to create innovative products that are able to solve the problems that exist in society.

  12. Effective Recruiting and Intrusive Retention Strategies for Diversifying the Geosciences through a Research Experiences for Undergraduate Program

    NASA Astrophysics Data System (ADS)

    Liou-Mark, J.; Blake, R.; Norouzi, H.; Yuen-Lau, L.; Ikramova, M.

    2016-12-01

    Worse than in most Science, Technology, Engineering, and Mathematics (STEM) fields, underrepresented minority (URM) groups in the geosciences are reported to be farthest beneath the national benchmarks. Even more alarming, the geosciences have the lowest diversity of all the STEM disciplines at all three levels of higher education. In order to increase the number of underrepresented groups in the geosciences, a National Science Foundation funded Research Experiences for Undergraduates (REU) program at the New York City College of Technology has implemented effective recruitment strategies to attract and retain diverse student cohorts. Recruitment efforts include: 1) establishing partnership with the local community colleges; 2) forging collaborations with scientists of color; 3) reaching out to the geoscience departments; and 4) forming relationships with STEM organizations. Unlike the other REU programs which primarily provide a summer-only research experience, this REU program engages students in a year-long research experience. Students begin their research in the summer for nine weeks, and they continue their research one day a week in the fall and spring semesters. During the academic year, they present their projects at conferences. They also serve as STEM ambassadors to community and high school outreach events. This one-year triad connection of 1) professional organizations/conferences, 2) continual research experience, and 3) service constituent has resulted in higher retention and graduation rates of URMs in the STEM disciplines. Both formative and summative program assessment have uncovered and shown that strong recruitment efforts accompanied by intrusive retention strategies are essential to: a) sustain and support STEM URMs in developing confidence as scientists; b) create formal and informal STEM communities; and c) provide a clear pathway to advanced degrees and to the geoscience workforce. This project is supported by NSF REU Grant #1560050.

  13. Fostering Significant Learning in Sciences

    ERIC Educational Resources Information Center

    Deksissa, Tolessa; Liang, Lily R.; Behera, Pradeep; Harkness, Suzan J.

    2014-01-01

    The new global economy depends on workforce competencies in science, technology, engineering and mathematics more than ever before. To prepare a strong workforce, attracting and educating underrepresented minority students in science is a challenge within our traditional American educational approach. To meet this challenge, fostering significant…

  14. The Hidden STEM Economy

    ERIC Educational Resources Information Center

    Rothwell, Jonathan

    2013-01-01

    Workers in STEM (science, technology, engineering, and math) fields play a direct role in driving economic growth. Yet, because of how the STEM economy has been defined, policymakers have mainly focused on supporting workers with at least a bachelor's (BA) degree, overlooking a strong potential workforce of those with less than a BA. This report…

  15. Stemming the Diffusion of Responsibility: A Longitudinal Case Study of America's Chemistry Teachers

    ERIC Educational Resources Information Center

    Rushton, Gregory T.; Ray, Herman E.; Criswell, Brett A.; Polizzi, Samuel J.; Bearss, Clyde J.; Levelsmier, Nicholas; Chhita, Himanshu; Kirchhoff, Mary

    2014-01-01

    National initiatives to expand the aggregate science, technology, engineering, and math (STEM) workforce reflect America's goals to increase global competitiveness. However, the aggregation of STEM stakeholders may elicit a "diffusion of responsibility" because individuals assume others are already acting. Here, we perform a longitudinal…

  16. The Impact of the Design Process on Student Self-Efficacy and Content Knowledge

    ERIC Educational Resources Information Center

    Gess, Ashley J. H.

    2015-01-01

    The United States of America needs STEM trained workers, STEM faculty and STEM professionals to improve its technical and professional workforce in order to maintain leadership in a global economy. However, American students are not opting to remain in a STEM course of study, and this is especially so for women and minorities. Of the students who…

  17. Exploring the Foundations of the Future STEM Workforce: K-12 Indicators of Postsecondary STEM Success. REL 2016-122

    ERIC Educational Resources Information Center

    Hinojosa, Trisha; Rapaport, Amie; Jaciw, Andrew; Zacamy, Jenna

    2016-01-01

    The number of jobs in science, technology, engineering, and math (STEM) is growing rapidly and is expected to increase by approximately 1 million in the United States between 2012 and 2022 (Vilorio, 2014). People of many racial/ethnic minorities, however, including Hispanic people, are underrepresented among recipients of STEM degrees and among…

  18. Predicting 9th Graders' Science Self-Efficacy and STEM Career Intent: A Multilevel Approach

    ERIC Educational Resources Information Center

    Wagstaff, Iris R.

    2014-01-01

    This study was conducted in response to the growing concern about the lack of U.S. students majoring in STEM fields and pursuing STEM careers (NSF, 2013). In order for the U.S. to compete in a global economy that is increasingly technologically-based, a skilled STEM workforce is a necessity (National Academies, 2010). Understanding the factors…

  19. STEM(ming) from Where? A Philosophical Analysis of U.S. Mathematics Education Policies

    ERIC Educational Resources Information Center

    Chesky, Nataly Z.

    2013-01-01

    Much attention has been placed on mathematics education in U.S. education policy reform discourses. Most recently, the emphasis has been on connecting mathematics with science, technology, and engineering, termed The STEM Initiative. Although a great deal of research has been conducted to understand how to meet the objectives of STEM, studies are…

  20. The relationships among high school STEM learning experiences, expectations, and mathematics and science efficacy and the likelihood of majoring in STEM in college

    NASA Astrophysics Data System (ADS)

    Sahin, Alpaslan; Ekmekci, Adem; Waxman, Hersh C.

    2017-07-01

    This study examines college students' science, technology, engineering, and mathematics (STEM) choices as they relate to high school experiences, parent, teacher, and self-expectations, and mathematics and science efficacy. Participants were 2246 graduates of a STEM-focused public Harmony Public Schools in Texas, Harmony Public Schools (HPS). Descriptive analyses indicated that the overall percentage of HPS graduates who chose a STEM major in college was greater than Texas state and national averages. Logistic regression analyses revealed that males and Asian students are more likely to choose a STEM major in college than females and non-Asian students, respectively. Moreover, students whose parents had a college degree in the U.S. are more likely to major in STEM fields than those who did not. Furthermore, males with higher mathematics efficacy and females with higher science efficacy are more likely to choose a STEM major than their counterparts with lower mathematics and science efficacy.

  1. An analysis of United States K-12 stem education versus STEM workforce at the dawn of the digital revolution

    NASA Astrophysics Data System (ADS)

    Cataldo, Franca

    The world is at the dawn of a third industrial revolution, the digital revolution, that brings great changes the world over. Today, computing devices, the Internet, and the World Wide Web are vital technology tools that affect every aspect of everyday life and success. While computing technologies offer enormous benefits, there are equally enormous safety and security risks that have been growing exponentially since they became widely available to the public in 1994. Cybercriminals are increasingly implementing sophisticated and serious hack attacks and breaches upon our nation's government, financial institutions, organizations, communities, and private citizens. There is a great need for computer scientists to carry America's innovation and economic growth forward and for cybersecurity professionals to keep our nation safe from criminal hacking. In this digital age, computer science and cybersecurity are essential foundational ingredients of technological innovation, economic growth, and cybersecurity that span all industries. Yet, America's K-12 education institutions are not teaching the computer science and cybersecurity skills required to produce a technologically-savvy 21st century workforce. Education is the key to preparing students to enter the workforce and, therefore, American K-12 STEM education must be reformed to accommodate the teachings required in the digital age. Keywords: Cybersecurity Education, Cybersecurity Education Initiatives, Computer Science Education, Computer Science Education Initiatives, 21 st Century K-12 STEM Education Reform, 21st Century Digital Literacies, High-Tech Innovative Problem-Solving Skills, 21st Century Digital Workforce, Standardized Testing, Foreign Language and Culture Studies, Utica College, Professor Chris Riddell.

  2. K-8 Teachers' Self-Efficacy Beliefs for Teaching Mathematics

    ERIC Educational Resources Information Center

    Amankonah, Frank O.

    2013-01-01

    Mathematics knowledge and skills serve as the "gatekeeper" to students' choice of college majors, success obtaining college degrees, and entry into the workforce. However, on the mathematics portion of standardized tests, U.S. fourth and eighth graders performed below their peers in countries such as Singapore, Hong Kong, China, and…

  3. Helping Your Child Learn Mathematics

    ERIC Educational Resources Information Center

    US Department of Education, 2004

    2004-01-01

    An increasingly technological world demands strong mathematical skills for the workforce and everyday life, and these demands will increase in the future. Research has shown that children are more likely to be successful in mathematics and other academic subjects when parents actively support their learning. To ensure that children are on track…

  4. Refueling the STEM and Special Education Teacher Pipelines

    ERIC Educational Resources Information Center

    Goldhaber, Dan; Krieg, John; Theobald, Roddy; Brown, Nate

    2016-01-01

    Improving the quality of the teacher workforce is high on the nation's education policy agenda, but school systems continue to face difficulties in staffing STEM and special education classrooms with qualified teachers. This article documents the mismatch between the supply and demand of STEM and special education teachers in Washington State,…

  5. The Relationships among High School STEM Learning Experiences, Expectations, and Mathematics and Science Efficacy and the Likelihood of Majoring in STEM in College

    ERIC Educational Resources Information Center

    Sahin, Alpaslan; Ekmekci, Adem; Waxman, Hersh C.

    2017-01-01

    This study examines college students' science, technology, engineering, and mathematics (STEM) choices as they relate to high school experiences, parent, teacher, and self-expectations, and mathematics and science efficacy. Participants were 2246 graduates of a STEM-focused public Harmony Public Schools in Texas, Harmony Public Schools (HPS).…

  6. MODSIM World 2007 Conference and Expo: Select Papers and Presentations from the Education and Training Track

    NASA Technical Reports Server (NTRS)

    Pinelli, Thomas E. (Editor); Sullivan, Shannon (Editor); Sanchez, Alicia (Editor)

    2008-01-01

    This NASA Conference Publication features select papers and PowerPoint presentations from the Education and Training Track of MODSIM World 2007 Conference and Expo. Invited speakers and panelists of national and international renown, representing academia, industry and government, discussed how modeling and simulation (M&S) technology can be used to accelerate learning in the K-16 classroom, especially when using M&S technology as a tool for integrating science, technology, engineering and mathematics (STEM) classes. The presenters also addressed the application ofM&S technology to learning and training outside of the classroom. Specific sub-topics of the presentations included: learning theory; curriculum development; professional development; tools/user applications; implementation/infrastructure/issues; and workforce development. There was a session devoted to student M&S competitions in Virginia too, as well as a poster session.

  7. STEM in England: meanings and motivations in the policy arena

    NASA Astrophysics Data System (ADS)

    Wong, Vicky; Dillon, Justin; King, Heather

    2016-10-01

    STEM, an acronym for Science, Technology, Engineering and Mathematics, is widely used in science education. There is confusion, however, as to its provenance and meaning which is potentially problematic. This study examines the purpose of STEM practice in education in England and asks if there are differences in perceptions of STEM between science and mathematics educator stakeholders. The study's contribution to the literature is its unusual focus on those who were responsible for making and enacting national STEM policy. A two-phase qualitative approach was followed comprising an analysis of government documentation together with semi-structured interviews with key contributors to the science and mathematics education discourse. Findings suggest that there is a disconnect between the interpretations of the science and mathematics educators with a danger-advantage dichotomy to participation in STEM being perceived by the mathematics educators. Early aims of the STEM agenda, including increasing diversity, gave way to a focus on numbers of post-16 physics and mathematics students. We conclude that if the term STEM is to continue to be used then there is a need for greater clarity about what it represents in educational terms and a wider debate about its compatibility with the aims of science education for all.

  8. STEM as "Minority": A Phenomenological Case Study of How Students of Color Perceive Their Experience in a STEM Living-Learning Program

    ERIC Educational Resources Information Center

    Sriram, Rishi; Diaz, Crystal

    2016-01-01

    The future of the U.S. scientific workforce depends on graduating college students in science, technology, engineering, and math (STEM) fields. The completion rate of STEM students is a national concern, especially among students of color. This qualitative study examines the experiences of students of color in a living-learning program for STEM…

  9. 78 FR 22841 - Defense Federal Acquisition Regulation Supplement: Encouragement of Science, Technology...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-04-17

    ..., Engineering, and Mathematics (STEM) Programs (DFARS Case 2012-D027); Withdrawal AGENCY: Defense Acquisition... mathematics (STEM) programs. FOR FURTHER INFORMATION CONTACT: Mr. Dustin Pitsch: telephone 571-372- 6090... develop science, technology, engineering, and mathematics (STEM) programs. The purpose of this Notice is...

  10. IBP's Four-Prong Approach for Broadening Participation in the STEM Community

    NASA Astrophysics Data System (ADS)

    Ricciardi, L.; Fauver, A.; Johnson, A.; Detrick, L.; Siegfried, D.; Thomas, S.; Valaitis, S.

    2013-12-01

    The goal of the Institute for Broadening Participation (IBP) is to increase diversity in the Science, Technology, Engineering and Mathematics (STEM) workforce. As a freestanding non-profit dedicated to this work IBP is uniquely positioned to provide resources to faculty and students that individual institutions and disciplinary based programs cannot. Through its initial work with the NSF Integrative Graduate Education and Research Traineeship (IGERT), Research Experiences for Undergraduates (REU), and Alliance for Graduate Education and the Professoriate (AGEP) programs, IBP developed a four-pronged approach open to all members of the STEM community nationally for addressing the problem of underrepresentation: Synthesizing information - compiling and translating best practices into materials and resources accessible and useful to a broad national audience; Creating and maintaining strategic web resources - making information on programs, best practices, and references easily available to a wide audience including students, faculty, and administrators; Extensive face-to-face and virtual outreach - drawing constituents to the resources available via IBP that support students and faculty through the entire STEM pathway; and Catalyzing partnerships - cultivating a community of practice and culture of diversity, to reduce isolation among diversity practitioners, and to increase information sharing. IBP is also home to several successful initiatives that use both virtual and face-to-face components to bring together underrepresented students with established underrepresented and other scientists in academia, government and industry. These connections provide underrepresented students with supportive mentoring, networking opportunities, and professional skill development contributing to an overall improved retention rate of underrepresented students majoring in STEM degrees. IBP's initiatives include the NASA One Stop Shopping Initiative (NASA OSSI), Pathways to Ocean Science, Pathways to Engineering, and the Minorities Striving and Pursuing Higher Degrees of Success (MS PHD'S) Professional Development program in Earth System Science (ESS). NASA OSSI recruits and facilitates student engagement in NASA student education and employment opportunities. Pathways to Ocean Science connects and supports underrepresented students with REU programs in Ocean Sciences and serves as a resource for REU program directors. Pathways to Engineering synthesized mentoring resources into an online mentoring manual for underrepresented STEM students that has been extensively vetted by mentoring experts throughout the country. MS PHD'S, an award-winning professional development program for underrepresented students, focuses on increasing the retention rate of underrepresented students receiving advanced degrees in ESS. As of August 2013, 213 students have participated in the program. 67 of those students are currently enrolled in a PhD. program. Another 47 have completed their PhD and are actively engaged in the ESS workforce.

  11. iSTEM: Learning Mathematics through Minecraft

    ERIC Educational Resources Information Center

    Bos, Beth; Wilder, Lucy; Cook, Marcelina; O'Donnell, Ryan

    2014-01-01

    The Common Core State Standards can be taught with Minecraft, an interactive creative Lego®-like game. Integrating Science, Technology, Engineering, and Mathematics (iSTEM) authors share ideas and activities that stimulate student interest in the integrated fields of science, technology, engineering, and mathematics (STEM) in K-grade 6 classrooms.

  12. Mathematically precocious and female: Self-efficacy and STEM course choices among high achieving middle grade students

    NASA Astrophysics Data System (ADS)

    Burt, Stacey M.

    The problem addressed in this project is the lack of mathematically gifted females choosing to pursue advanced science, technology, engineering, and mathematics (STEM) courses in secondary education due to deficiencies in self-efficacy. The purpose of this project was to study the effects of a child-guided robotics program as it relates to the self-efficacy of mathematically gifted 6th grade female students and their future course choices in the advanced STEM content areas. This mixed-model study utilized a STEM attitude survey, artifacts, interviews, field notes, and standardized tests as measurement tools. Significance was found between genders in the treatment group for the standardized science scores, indicating closure in the achievement gap. Research suggests that STEM enrichment is beneficial for mathematically gifted females.

  13. Fostering an Inclusive STEM Workforce

    ERIC Educational Resources Information Center

    Supalo, Cary A.

    2015-01-01

    This keynote address was delivered by Dr. Cary A. Supalo at the 2015 Training Workforce and Development and diversity conference which is one of the divisions that is part of NIH's general medical sciences. This conference was attended by over 500 program directors from all of the T32 sponsored projects in 2015. This presentation discussed the…

  14. Making STEM Fun: How to Organize a STEM Camp

    ERIC Educational Resources Information Center

    Davis, Kimberly E. Bryant; Hardin, Stacey E.

    2013-01-01

    The work from the University of Central Florida's STEM summer camp (sponsored by Workforce Central Florida) is shared. The camps targeted low-SES schools with a high percentage of students on free and reduced lunch as well as high percentages of students with. Students were given preassessments and postassessments to gauge their knowledge of and…

  15. Developing STEM Leaders Through Space Science Education and Public Outreach

    NASA Astrophysics Data System (ADS)

    Gibbs, M. G.; Veenstra, D.

    2012-08-01

    Capitol College, located in Laurel, Maryland, established the Center for Space Science Education and Public Outreach with the mission to assist in educating future leaders in the science, technology, engineering and math (STEM). This presentation shares emerging best practices through innovative methods to create awareness regarding STEM outreach programs and activities related workforce development and career pathways.

  16. The Interplay between Structure and Agency in the Enactment of STEM Policy

    ERIC Educational Resources Information Center

    Martins, Isabel; Pinhão, Francine; Vilanova, Rita

    2017-01-01

    In their paper, Hoeg and Bencze argue that current STEM curriculum guidelines prioritise the training of a workforce in detriment of a democratically grounded education for citizenship. We agree that there is an insufficient questioning about which type of citizenship STEM curricula would favour and wish to contribute to this debate by (1)…

  17. Recent trends in the U.S. Behavioral and Social Sciences Research (BSSR) workforce.

    PubMed

    Hur, Hyungjo; Andalib, Maryam A; Maurer, Julie A; Hawley, Joshua D; Ghaffarzadegan, Navid

    2017-01-01

    While behavioral and social sciences occupations comprise one of the largest portions of the "STEM" workforce, most studies of diversity in STEM overlook this population, focusing instead on fields such as biomedical or physical sciences. This study evaluates major demographic trends and productivity in the behavioral and social sciences research (BSSR) workforce in the United States during the past decade. Our analysis shows that the demographic trends for different BSSR fields vary. In terms of gender balance, there is no single trend across all BSSR fields; rather, the problems are field-specific, and disciplines such as economics and political science continue to have more men than women. We also show that all BSSR fields suffer from a lack of racial and ethnic diversity. The BSSR workforce is, in fact, less representative of racial and ethnic minorities than are biomedical sciences or engineering. Moreover, in many BSSR subfields, minorities are less likely to receive funding. We point to various funding distribution patterns across different demographic groups of BSSR scientists, and discuss several policy implications.

  18. An Exploration of Stem, Entrepreneurship, and Impact on Girls in an Independent Day School

    NASA Astrophysics Data System (ADS)

    Kelly, Ryan P.

    The 21st century has seen a pervasive theme in STEM continue from the 20th century: women do not pursue and persist in STEM careers at anywhere near the rate of men. Furthermore, STEM education has fallen short in preparing its students to enter the workforce as entrepreneurial knowledge workers prepared to innovate. As STEM and entrepreneurship receive unprecedented attention in scholarly circles, the first purpose of this mixed methods study at an independent day school was to examine the impact of a predominately female STEEM (i.e., science, technology, engineering, entrepreneurship and mathematics) teaching staff on girls' perceptions of STEEM. The second purpose of this study was to examine the impact of adding entrepreneurship to a STEM curriculum. The ultimate goals of this study were to inform local policy and practice. Through teacher interviews, student focus groups, and a student survey, this study investigated the impact of female teachers and a recently established entrepreneurship-infused curriculum. The theory of action guiding this school is that female STEEM teachers and the inclusion of entrepreneurship skills and projects can improve girls' perceptions of the STEM classroom, helping them to view STEM as less gender-oriented (i.e., male-oriented), and thereby make these classes feel more welcoming to girls. This is aimed at increasing their adoption of STEM majors in college and STEM careers after they graduate. This study has four major findings. First, the predominantly female STEEM faculty appeared to build girls' confidence in their STEEM classes. Second, the STEEM teachers use active learning and critical thinking to engage the girls in their classes. Third, the introduction of entrepreneurship appears to have helped increase girls' interest in STEM. Last, even while discussing their efforts to increase girls' engagement with STEM, many teachers celebrate gender blindness. These findings raised a number issues that should be important educators and (especially) school leaders. These include the importance of high standards for girls in STEEM classes, the value of including real world experiences in STEEM lessons, the success of expanding STEM with a less traditionally academic area and the challenges that gender blindness can perpetuate for educators and their students.

  19. The Role of STEM High Schools in Reducing Gaps in Science and Mathematics Coursetaking: Evidence from North Carolina. Research Report. RTI Press Publication RR-0025-1603

    ERIC Educational Resources Information Center

    Glennie, Elizabeth; Mason, Marcinda; Dalton, Ben

    2016-01-01

    Some states have created science, technology, engineering, and mathematics (STEM) schools to encourage student interest and enhance student proficiency in STEM subjects. We examined a set of STEM schools serving disadvantaged students to see whether these students were more likely to take and pass advanced science and mathematics classes than…

  20. Pre-Engineering Program: Science, Technology, Engineering and Mathematics (STEM)

    DTIC Science & Technology

    2013-08-29

    educators in the Urbana-Champaign area. 15. SUBJECT TERMS STEM: science, technology , engineering, mathematics 16. SECURITY CLASSIFICATION OF: 19a. NAME...9132T-13-1-0002 4. TITLE AND SUBTITLE Pre-Engineering Program: Science, Technology , Engineering and Mathematics (STEM) 5c. PROGRAM ELEMENT NUMBER N...project was focused on underserved children in grades 1-6 who need, but have limited access to, out-of-school time STEM (science, technology

  1. A Study of the Correlation between STEM Career Knowledge, Mathematics Self-Efficacy, Career Interests, and Career Activities on the Likelihood of Pursuing a STEM Career among Middle School Students

    ERIC Educational Resources Information Center

    Blotnicky, Karen A.; Franz-Odendaal, Tamara; French, Frederick; Joy, Phillip

    2018-01-01

    Background: A sample of 1448 students in grades 7 and 9 was drawn from public schools in Atlantic Canada to explore students' knowledge of science and mathematics requirements for science, technology, engineering, and mathematics (STEM) careers. Also explored were their mathematics self-efficacy (MSE), their future career interests, their…

  2. STEM and Model-Eliciting Activities: Responsive Professional Development for K-8 Mathematics Coaches

    ERIC Educational Resources Information Center

    Baker, Courtney; Galanti, Terrie; Birkhead, Sara

    2017-01-01

    This research highlights a university-school division collaboration to pilot a professional development framework for integrating STEM in K-8 mathematics classrooms. The university researchers worked with mathematics coaches to construct a realistic and reasonable vision of STEM integration built upon the design principles of model-eliciting…

  3. Team-Based Introductory Research Experiences in Mathematics

    ERIC Educational Resources Information Center

    Baum, Brittany Smith; Rowell, Ginger Holmes; Green, Lisa; Yantz, Jennifer; Beck, Jesse; Cheatham, Thomas; Stephens, D. Christopher; Nelson, Donald

    2017-01-01

    As part of Middle Tennessee State University's (MTSU's) initiative to improve retention of at-risk STEM majors, they recruit first-time, full-time freshman STEM majors with mathematics ACT scores of 19 to 23 to participate in MTSU's "Mathematics as a FirstSTEP to Success in STEM" project (FirstSTEP). This article overviews MTSU's…

  4. How Personal, Behavioral, and Environmental Factors Predict Working in STEMM vs Non-STEMM Middle-Skill Careers

    ERIC Educational Resources Information Center

    Cannady, Matthew A.; Moore, Debra; Votruba-Drzal, Elizabeth; Greenwald, Eric; Stites, Regie; Schunn, Christian D.

    2017-01-01

    Background: Much of science, technology, engineering, mathematics, and medical (STEMM) education policy and research centers around developing the upper levels of the STEMM workforce sector. However, there are many positions in this workforce, "middle-skill careers," that are largely responsible for executing the innovations and are…

  5. Working as a Team

    ERIC Educational Resources Information Center

    Brooks, Hannah

    2017-01-01

    In most STEM industries, teamwork is essential. Engineers, scientists, statisticians, and medical professionals, for example, must communicate with one another and work together. Someday, students may enter the STEM (science, technology, engineering, and math) workforce, where they also will need to collaborate effectively. This article describes…

  6. Latina high school students figured world of STEM: Identity formation in formal and informal communities of practice

    NASA Astrophysics Data System (ADS)

    Alcantara, Minosca Victoria

    In the United States, the education and skill levels of the American population are not measuring up to the growing demands of the STEM workplace. The Bureau of Labor Statistics (BLS) (2007) projects that over the next 20 years, there will be an estimated shortage of 21 million skilled workers. STEM professions (those in Science, Technology, Engineering, and Mathematics), will continue to lead this workforce growth. However, fewer students are majoring in these areas of critical need, particularly women and minorities. Only a small fraction of U.S.-born scientists and engineers training to fill these positions are members of underrepresented minorities (Latino, Black, and American Indian/Native Alaskan students), yet this same population is expected to experience the greatest growth over the next several decades. Using qualitative methods, I explore the role formal and informal communities of practice play in either motivating or hindering Latinas' interest in STEM career. I use the narratives of 16 low-income, urban Latina high school seniors to provide a counternarrative as to the reasons for these underrepresentation. Teachers in the U.S. play a significant role in the reproduction of the culturally prototypical conception of math and science students; the best and brightest in the school. Teachers' role in positioning Latina students in honors/gifted programs based on their perceptions of students' characteristics and their recommendations for placement in honors classes/ programs, STEM extracurricular activities and summer programs are critical to Latina's "good student" identity formation which has a significant role in their motivation or erasure of STEM identities. Latinas in this study strongly identified with their school and were very concerned in maintaining their good student identities. They defined academic success based on the grades they obtained and the colleges they were accepted into. I propose an identity model, L-STEM which highlight the power of sociohistorical meanings in motivating or hindering Latina students' interests in STEM fields.

  7. Operation STEM: Increasing Success and Improving Retention among Mathematically Underprepared Students in STEM

    ERIC Educational Resources Information Center

    Carver, Susan D.; Van Sickle, Jenna; Holcomb, John P.; Jackson, Debbie K.; Resnick, Andrew H.; Duffy, Stephen F.; Sridhar, Nigamanth; Marquard, Antoinette M.; Quinn, Candice M.

    2017-01-01

    In 2012, Cleveland State University implemented a comprehensive program, called Operation STEM (OpSTEM), funded by two National Science Foundation grants, federal work study, and Cleveland State University. Its goal is to increase retention and graduation rates among Science, Technology, Engineering, and Mathematics (STEM) students by helping them…

  8. The AFRL Scholars Program: a STEM-based summer internship initiative

    NASA Astrophysics Data System (ADS)

    Spencer, Mark F.; Atencio, Imelda J.; McCullough, Julie A.; Hwang, Eunsook S.

    2016-09-01

    The Air Force Research Laboratory (AFRL) Scholars Program offers stipend-paid summer internship opportunities to undergraduate- and graduate-level university students as well as upper-level high school students who are pursuing or plan to pursue degrees in science, technology, engineering, and mathematics (STEM). Internships through the AFRL Scholars Program are currently offered through the Directed Energy, Space Vehicles, and Munitions Directorates of AFRL with locations at Kirtland Air Force Base, New Mexico, Eglin Air Force Base, Florida, and Maui, Hawaii. Throughout their internships, AFRL Scholars gain valuable hands-on experience working with full-time AFRL scientists and engineers on cutting-edge research and technology. Overall, the selected interns are able to contribute to unique, research-based projects which often contain a strong emphasis in optics and photonics. This paper celebrates the continued success of the AFRL Scholars Program and shares a statistical overview of its growth over the past few years. In particular, the analysis focuses on how these STEM-related internships will hopefully meet the needs of an aging AFRL workforce in the years to come. This paper also provides an overview of two optics and photonics related internships at the undergraduate and graduate levels, respectively. Both interns received the Outstanding AFRL Scholar Award in their respective categories and are currently pursuing careers in optics and photonics based on their experiences as AFRL Scholars.

  9. Energy, Society, and Education, with Emphasis on Educational Technology Policy for K-12

    NASA Astrophysics Data System (ADS)

    Chedid, Loutfallah Georges

    2005-03-01

    This paper begins by examining the profound impact of energy usage on our lives, and on every major sector of the economy. Then, the anticipated US energy needs by the year 2025 are presented based on the Department of Energy's projections. The paper considers the much-touted National Energy Policy Report, and identifies a major flaw where the policy report neglects education as a contributor to solving future energy problems. The inextricable interaction between energy solutions and education is described, with emphasis on education policy as a potential vehicle for developing economically and commercially sustainable energy systems that have a minimal impact on the environment. With that said, an earnest argument is made as to the need to educate science, technology, engineering, and mathematics (STEM) proficient individuals for the energy technology development workforce, starting with the K-12 level. A framework for the aforementioned STEM education policies is presented that includes a sustained national awareness campaign, address the teacher's salary issues, and addresses teacher quality issues. Moreover, the framework suggests a John Dewey-style "learning-by-doing" shift in pedagogy. Finally, the framework presents specific changes to the current national standards that would be valuable to the 21st century student.

  10. Transforming Tech Ed: The Advanced Technological Education Community Leads in Developing and Implementing Teaching Strategies

    ERIC Educational Resources Information Center

    Patton, Madeline

    2015-01-01

    After years of working in the background to build the capacity of two-year college science, technology, engineering and math (STEM) faculty and the skills of technicians, the Advanced Technological Education (ATE) program is gaining recognition as a source of STEM workforce expertise. The ATE program's effective mentoring of STEM educators and its…

  11. Maximizing Opportunities to Enroll in Advanced High School Science Courses: Examining the Scientific Dispositions of Black Girls

    ERIC Educational Resources Information Center

    Young, Jemimah L.; Ero-Tolliver, Isi; Young, Jamaal R.; Ford, Donna Y.

    2017-01-01

    Diversifying the STEM workforce is a national concern. To address this concern, researchers, policymakers, and educators are working to increase STEM career interest and achievement in a more diverse population of learners. Black girls and young women represent a unique population of STEM learners that remain relatively untapped and largely under…

  12. STEM Work Experience for Girls

    ERIC Educational Resources Information Center

    Collins, Jill

    2012-01-01

    The Royal Air Force (RAF) is a public sector organisation, operating at the leading edge of technology and with a 38,000 strong workforce deployed at locations in the UK and overseas. Around 50% of its personnel are technically employed and 40% of all annual vacancies are for the technically competent. Currently, 13.5% of the workforce is female.…

  13. How Interdisciplinary Liberal Arts Programs Prepare Students for the Workforce and for Life

    ERIC Educational Resources Information Center

    Nutting, Maureen Murphy

    2013-01-01

    Although science, technology, engineering, math (STEM) and vocational training programs are presented as today's community college students' gateway to entry-level positions in the workforce, liberal arts instruction plays a critical role in their training, by providing these students the skills that many employers require and that make…

  14. Redressing the Gender Gap in Science through Use of the Thinking Science Program

    ERIC Educational Resources Information Center

    Kerr, Andrea

    2016-01-01

    Currently (and historically) there exists a significant gender gap within the STEM fields in our schools, tertiary institutions, and workforce. The disproportion of gender representation in the workforce filters down to the classroom level, where teachers see a lack of confidence and engagement in their female students resulting in poor results or…

  15. Myths and Motives behind STEM (Science, Technology, Engineering, and Mathematics) Education and the STEM-Worker Shortage Narrartive

    ERIC Educational Resources Information Center

    Stevenson, Heidi J.

    2014-01-01

    The Business Roundtable (2013) website presents a common narrative in regard to STEM (Science, Technology, Engineering and Mathematics) education, "American students are falling behind in math and science. Fewer and fewer students are pursuing careers in science, technology, engineering and mathematics, and American students are performing at…

  16. Integrating STEM in Elementary Classrooms Using Model-Eliciting Activities: Responsive Professional Development for Mathematics Coaches and Teachers

    ERIC Educational Resources Information Center

    Baker, Courtney K.; Galanti, Terrie M.

    2017-01-01

    Background: This research highlights a school-university collaboration to pilot a professional development framework for integrating STEM in K-6 mathematics classrooms in a mid-Atlantic suburban school division. Because mathematics within STEM integration is often characterized as the calculations or the data representations in science classrooms,…

  17. Mathematics and Science Teachers' Use of and Confidence in Empirical Reasoning: Implications for STEM Teacher Preparation

    ERIC Educational Resources Information Center

    Wasserman, Nicholas H.; Rossi, Dara

    2015-01-01

    The recent trend to unite mathematically related disciplines (science, technology, engineering, and mathematics) under the broader umbrella of STEM education has advantages. In this new educational context of integration, however, STEM teachers need to be able to distinguish between sufficient proof and reasoning across different disciplines,…

  18. DOE Advanced Scientific Advisory Committee (ASCAC): Workforce Subcommittee Letter

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Chapman, Barbara; Calandra, Henri; Crivelli, Silvia

    2014-07-23

    Simulation and computing are essential to much of the research conducted at the DOE national laboratories. Experts in the ASCR ¬relevant Computing Sciences, which encompass a range of disciplines including Computer Science, Applied Mathematics, Statistics and domain Computational Sciences, are an essential element of the workforce in nearly all of the DOE national laboratories. This report seeks to identify the gaps and challenges facing DOE with respect to this workforce. This letter is ASCAC’s response to the charge of February 19, 2014 to identify disciplines in which significantly greater emphasis in workforce training at the graduate or postdoctoral levels ismore » necessary to address workforce gaps in current and future Office of Science mission needs.« less

  19. Reimagining the Pipeline: Advancing STEM Diversity, Persistence, and Success

    PubMed Central

    Allen-Ramdial, Stacy-Ann A.; Campbell, Andrew G.

    2014-01-01

    Achieving trainee diversity in science, technology, engineering, and mathematics is rapidly becoming a challenge faced by many nations. Success in this area ensures the availability of a workforce capable of engaging in scientific practices that will promote increased production capacity and creativity and will preserve global scientific competitiveness. The near-term vision of achieving this goal is within reach and will capitalize on the growing numbers of underrepresented minority groups in the population. Although many nations have had remarkable histories as leaders in science and technology, few have simultaneously struggled with the challenge of meeting the educational and training needs of underrepresented groups. In this article, we share strategies for building the agency of the scientific community to achieve greater diversity by highlighting four key action areas: (1) aligning institutional culture and climate; (2) building interinstitutional partnerships; (3) building and sustaining critical mass; and (4) ensuring, rewarding, and maximizing faculty involvement. PMID:25561747

  20. Reimagining the Pipeline: Advancing STEM Diversity, Persistence, and Success.

    PubMed

    Allen-Ramdial, Stacy-Ann A; Campbell, Andrew G

    2014-07-01

    Achieving trainee diversity in science, technology, engineering, and mathematics is rapidly becoming a challenge faced by many nations. Success in this area ensures the availability of a workforce capable of engaging in scientific practices that will promote increased production capacity and creativity and will preserve global scientific competitiveness. The near-term vision of achieving this goal is within reach and will capitalize on the growing numbers of underrepresented minority groups in the population. Although many nations have had remarkable histories as leaders in science and technology, few have simultaneously struggled with the challenge of meeting the educational and training needs of underrepresented groups. In this article, we share strategies for building the agency of the scientific community to achieve greater diversity by highlighting four key action areas: (1) aligning institutional culture and climate; (2) building interinstitutional partnerships; (3) building and sustaining critical mass; and (4) ensuring, rewarding, and maximizing faculty involvement.

  1. Introduction to the Symposium "Leading Students and Faculty to Quantitative Biology through Active Learning".

    PubMed

    Waldrop, Lindsay D; Miller, Laura A

    2015-11-01

    The broad aim of this symposium and set of associated papers is to motivate the use of inquiry-based, active-learning teaching techniques in undergraduate quantitative biology courses. Practical information, resources, and ready-to-use classroom exercises relevant to physicists, mathematicians, biologists, and engineers are presented. These resources can be used to address the lack of preparation of college students in STEM fields entering the workforce by providing experience working on interdisciplinary and multidisciplinary problems in mathematical biology in a group setting. Such approaches can also indirectly help attract and retain under-represented students who benefit the most from "non-traditional" learning styles and strategies, including inquiry-based, collaborative, and active learning. © The Author 2015. Published by Oxford University Press on behalf of the Society for Integrative and Comparative Biology. All rights reserved. For permissions please email: journals.permissions@oup.com.

  2. Public Views on the Gendering of Mathematics and Related Careers: International Comparisons

    ERIC Educational Resources Information Center

    Forgasz, Helen; Leder, Gilah; Tan, Hazel

    2014-01-01

    Mathematics continues to be an enabling discipline for Science, Technology, Engineering, and Mathematics (STEM)-based university studies and related careers. Explanatory models for females' underrepresentation in higher level mathematics and STEM-based courses comprise learner-related and environmental variables--including societal beliefs. Using…

  3. Examining the Relationship between Student Engagement and STEM Persistence at an HBCU

    NASA Astrophysics Data System (ADS)

    Evans, Saundra Yates

    A growing imbalance in the demand for a science and technology workforce and the declining availability of a science and technology talent pool is challenging America's world dominance in research and innovation, economic performance, and quality of life. Contributing to this imbalance is flatness in the trend of students selecting science, technology, engineering and mathematics (STEM) majors coupled with decreasing rates of retention in STEM disciplines. Many research studies and reports emphasize that incorporating the untapped talents of Americans who are underrepresented in STEM disciplines---African-Americans, Hispanics, and women--is necessary to increase the pipeline of STEM graduates. A synthesis of college persistence literature by Robert Reason (2009) indicates that student engagement is one of the most influential drivers of persistence, and that engagement interventions must address specific student needs within specific institutional contexts to be effective. Past research found that engagement of underrepresented STEM students has been found to positively influence their persistence, and HBCUs have been found to better engage African American students than do other types of institutions. This predictive correlational study examined the relationship between student engagement and persistence in STEM disciplines at an HBCU located in southeastern United States. The relationship between benchmark variables from the National Survey of Student Engagement (NSSE) (academic challenge, active and collaborative learning, student-faculty interaction, enriching educational experiences, and supportive campus environment) and STEM persistence was examined via a predictive correlational design. A non-random sample of STEM students enrolled full-time in their fourth year during spring 2011 and spring 2014 and who participated in the NSSE as freshmen was studied. While the correlation analysis did not result in significant differences in the relationship of student engagement to STEM persistence among persisters as compared to non-persisters, results of the logistic regression indicate that active and collaborative learning and enriching education experiences, along with majoring in engineering and first year GPA, are predictive of STEM persistence. There are several implications of the study for practice, policy, and future research.

  4. The STEM and CTE Pipeline for Community College Students with Learning Disabilities

    NASA Astrophysics Data System (ADS)

    Morgan, Micaela Victoria Cesario

    The technological nature of the world we live in has produced a need for a workforce that is technologically savvy and possesses 21st century skills and abilities. Given that students with a learning disability (LD) may be an untapped source of science, technology, engineering, and mathematics (STEM) or career and technical education (CTE) potential, it is important to understand 1) whether LD students are capable of pursuing STEM and CTE fields and 2) what will aid them in successfully pursuing those fields. The two studies presented aim to answer those questions through a latent profile and latent class analysis. The results from the first study indicated that there are two STEM capable profiles of LD students: High-STEM and CTE Capability or Low-STEM Capability. It was found that female LD students were significantly more likely to be in the High-STEM and CTE Capability profile (.75, p < .05) by 2.11 times and that African-American LD students were significantly more likely to be found in the Low-STEM Capability profile (-1.31, p < .10). It was also more prevalent for LD students to pursue either STEM or CTE at the 2-year college regardless of what profile they resided in. Understanding a students' STEM or CTE capability can play a role in how they prepare and plan for their future. For the second study it was found that LD students could be categorized into three engagement classes: Highly Engaged LD Students, Moderately Engaged LD Students, and Poorly Engaged LD Students. Again, gender played a role in students' classification and it was found that female students were significantly more likely to be in the Moderately Engaged class (.22, p < .05). Results from this study also indicate that the 2-year pathway is the most traversed by LD students. LD students who were engaged in their IEP process, possess self-determination, and are able to utilize accommodations were more successful in pursuing a STEM and CTE field. Implications for postsecondary institutions will be discussed.

  5. A comparison of mixed-integer linear programming models for workforce scheduling with position-dependent processing times

    NASA Astrophysics Data System (ADS)

    Moreno-Camacho, Carlos A.; Montoya-Torres, Jairo R.; Vélez-Gallego, Mario C.

    2018-06-01

    Only a few studies in the available scientific literature address the problem of having a group of workers that do not share identical levels of productivity during the planning horizon. This study considers a workforce scheduling problem in which the actual processing time is a function of the scheduling sequence to represent the decline in workers' performance, evaluating two classical performance measures separately: makespan and maximum tardiness. Several mathematical models are compared with each other to highlight the advantages of each approach. The mathematical models are tested with randomly generated instances available from a public e-library.

  6. Estuarine Ecosystems: Using T & E Signature Approaches to Support STEM Integration

    ERIC Educational Resources Information Center

    McCulloch, Allison W.; Ernst, Jeremy V.

    2012-01-01

    STEM-based understandings and experiences that prepare learners beyond the classroom are of imminent need, as today's STEM education students are tomorrow's leaders in science, technology, engineering, mathematics, and education (Prabhu, 2009). Integrative STEM education signifies the intentional integration of science and mathematics with the…

  7. Views of Science and Mathematics Pre-Service Teachers Regarding STEM

    ERIC Educational Resources Information Center

    Cinar, Sinan; Pirasa, Nimet; Sadoglu, Gunay Palic

    2016-01-01

    STEM education is an integrated approach that combines science, technology, engineering and mathematics disciplines with different subjects in real life situations, together and simultaneously. The views of pre-service teachers introduced to STEM by means of workshops that presented information and scales on STEM education regarding the subject…

  8. STEM: Science Technology Engineering Mathematics. State-Level Analysis

    ERIC Educational Resources Information Center

    Carnevale, Anthony P.; Smith, Nicole; Melton, Michelle

    2011-01-01

    The science, technology, engineering, and mathematics (STEM) state-level analysis provides policymakers, educators, state government officials, and others with details on the projections of STEM jobs through 2018. This report delivers a state-by-state snapshot of the demand for STEM jobs, including: (1) The number of forecast net new and…

  9. NASA Education Implementation Plan 2015-2017

    ERIC Educational Resources Information Center

    National Aeronautics and Space Administration, 2015

    2015-01-01

    The NASA Education Implementation Plan (NEIP) provides an understanding of the role of NASA in advancing the nation's STEM education and workforce pipeline. The document outlines the roles and responsibilities that NASA Education has in approaching and achieving the agency's and administration's strategic goals in STEM Education. The specific…

  10. Connecting Undergraduate Instruction to the 2017 Solar Eclipse

    ERIC Educational Resources Information Center

    Lopez, Ramon E.; Ambrose, Bradley S.; Bailey, Janelle M.; Cid, Ximena C.; Vieyra, Rebecca E.; Willoughby, Shannon D.

    2017-01-01

    Space science is perhaps the science topic that elicits the greatest interest in students in the United States and also worldwide. NASA has always endeavored to leverage that widespread interest to advance STEM education, not least because NASA requires a thriving STEM workforce for the future.

  11. Connecting undergraduate instruction to the 2017 solar eclipse

    NASA Astrophysics Data System (ADS)

    Lopez, Ramon E.; Ambrose, Bradley S.; Bailey, Janelle M.; Cid, Ximena C.; Vieyra, Rebecca E.; Willoughby, Shannon D.

    2017-04-01

    Space science is perhaps the science topic that elicits the greatest interest in students in the United States and also worldwide. NASA has always endeavored to leverage that widespread interest to advance STEM education, not least because NASA requires a thriving STEM workforce for the future.

  12. Urban Climate Change Resilience as a Teaching Tool for a STEM Summer Bridge Program

    NASA Astrophysics Data System (ADS)

    Rosenzweig, B.; Vorosmarty, C. J.; Socha, A.; Corsi, F.

    2015-12-01

    Community colleges have been identified as important gateways for the United States' scientific workforce development. However, students who begin their higher education at community colleges often face barriers to developing the skills needed for higher-level STEM careers, including basic training in mathematics, programming, analytical problem solving, and cross-disciplinary communication. As part of the Business Higher Education Forum's Undergraduate STEM Interventions in Industry (USI2) Consortium, we are developing a summer bridge program for students in STEM fields transferring from community college to senior (4-year) colleges at the City University of New York. Our scientific research on New York City climate change resilience will serve as the foundation for the bridge program curriculum. Students will be introduced to systems thinking and improve their analytical skills through guided problem-solving exercises using the New York City Climate Change Resilience Indicators Database currently being developed by the CUNY Environmental Crossroads Initiative. Students will also be supported in conducting an introductory, independent research project using the database. The interdisciplinary nature of climate change resilience assessment will allow students to explore topics related to their STEM field of interest (i.e. engineering, chemistry, and health science), while working collaboratively across disciplines with their peers. We hope that students that participate in the bridge program will continue with their research projects through their tenure at senior colleges, further enhancing their academic training, while actively contributing to the study of urban climate change resilience. The effectiveness of this approach will be independently evaluated by NORC at the University of Chicago, as well as through internal surveying and long-term tracking of participating student cohorts.

  13. Enhancing Mathematics (STEM) Teacher Education in Regional Australia: Pedagogical Interactions and Affect

    ERIC Educational Resources Information Center

    Woolcott, Geoff; Yeigh, Tony

    2015-01-01

    This article reports on initial findings, including the mathematics components, of a multi-institutional Science, Technology, Engineering, and Mathematics (STEM) project, "It's part of my life: Engaging university and community to enhance science and mathematics education." This project is focussed on improving the scientific and…

  14. The Federal Science, Technology, Engineering, and Mathematics (STEM) Education Portfolio. A Report from the Federal Inventory of STEM Education Fast-Track Action Committee Committee on STEM Education National Science and Technology Council

    ERIC Educational Resources Information Center

    Executive Office of the President, 2011

    2011-01-01

    The National Science and Technology Council (NSTC) Committee on STEM Education (CoSTEM) coordinates Federal programs and activities in support of STEM (science, technology, engineering and mathematics) education pursuant to the requirements of Sec. 101 of the America COMPETES (Creating Opportunities to Meaningfully Promote Excellence in Technology…

  15. STEM Workforce Pipeline

    DTIC Science & Technology

    2013-07-30

    more about STEM. From museums, to gardens, to planetariums and more, Places to Go mobilizes people to explore the STEM resources offered by their...Works website was developed utilizing a phased approach. This approach allowed for informed, periodic updates to the structure, design, and backend ...our web development team, throughout this phase. A significant amount of backend development work on the website, as well as design work was completed

  16. Effects of Educational Support Services on Female Community College Students' Academic Success in STEM, STEM-Related, and Non-STEM Programs

    ERIC Educational Resources Information Center

    Billings, Jenny Elizabeth

    2017-01-01

    According to the American Association of University Women (AAUW) (n.d.), approximately 4 million women, more than ever before, rely on community colleges to prepare them for higher education and the workforce. These community college female students "represent all ages, races, and ethnicities, [and] include more than a million mothers".…

  17. Examination of Factors That Predict Academic Adjustment and Success of Community College Transfer Students in STEM at 4-Year Institutions

    ERIC Educational Resources Information Center

    Lopez, Carlos; Jones, Stephanie J.

    2017-01-01

    There are a limited number of individuals who possess the skills to fulfill the workforce demand in STEM (science, technology, engineering, and math) in the United States. Therefore, community colleges and 4-year institutions must be able to identify academic and social factors that impact students' participation in the areas of STEM. These…

  18. Accomplishment in Science, Technology, Engineering, and Mathematics (STEM) and Its Relation to STEM Educational Dose: A 25-Year Longitudinal Study

    ERIC Educational Resources Information Center

    Wai, Jonathan; Lubinski, David; Benbow, Camilla P.; Steiger, James H.

    2010-01-01

    Two studies examined the relationship between precollegiate advanced/enriched educational experiences and adult accomplishments in science, technology, engineering, and mathematics (STEM). In Study 1, 1,467 13-year-olds were identified as mathematically talented on the basis of scores [greater than or equal to] 500 (top 0.5%) on the math section…

  19. Dropout Factories: The Profitability of "At-Risk" Students

    ERIC Educational Resources Information Center

    Eastman, Nicholas J.

    2016-01-01

    Every public school teacher today is charged, above all else, with a utilitarian form of workforce preparation: college and career readiness. The distinction between college and career is superficial. The overarching goal of both is career readiness, and STEM careers are the darlings of the "readiness" discourse. Within the STEM reform…

  20. Making STEM Accessible and Effective through NASA Robotics Programs

    ERIC Educational Resources Information Center

    West, Jonathan; Vadiee, Nader; Sutherland, Emery; Kaye, Bradley; Baker, Kyle

    2018-01-01

    There is no question that Science, Math, Engineering, and Technology (STEM) education is critical to the future of our students and workforce. As technology advances, computer programming skills are becoming a necessity in almost all fields. However, teaching programming and other advanced technologies is very difficult, especially in…

  1. STEM Images Revealing STEM Conceptions of Pre-Service Chemistry and Mathematics Teachers

    ERIC Educational Resources Information Center

    Akaygun, Sevil; Aslan-Tutak, Fatma

    2016-01-01

    Science, technology, engineering, and mathematics (STEM) education has been an integral part of many countries' educational policies. In last decade, various practices have been implemented to make STEM areas valuable for 21st century generation. These actions require reconsideration of both pre- and in-service teacher education because those who…

  2. National Survey of STEM High Schools' Curricular and Instructional Strategies and Practices

    ERIC Educational Resources Information Center

    Forman, Jennifer; Gubbins, Elizabeth Jean; Villanueva, Merzili; Massicotte, Cindy; Callahan, Carolyn; Tofel-Grehl, Colby

    2015-01-01

    A limited number of highly selective high schools specializing in science, technology, engineering and mathematics (STEM) education have existed for many decades, encouraging youth with identified STEM talent to pursue careers as STEM leaders and innovators. As members of the National Consortium for Specialized Secondary Schools of Mathematics,…

  3. Utility-Value Intervention with Parents Increases Students' STEM Preparation and Career Pursuit

    ERIC Educational Resources Information Center

    Rozek, Christopher S.; Svoboda, Ryan C.; Harackiewicz, Judith M.; Hulleman, Christopher S.; Hyde, Janet S.

    2017-01-01

    During high school, developing competence in science, technology, engineering, and mathematics (STEM) is critically important as preparation to pursue STEM careers, yet students in the United States lag behind other countries, ranking 35th in mathematics and 27th in science achievement internationally. Given the importance of STEM careers as…

  4. Redefining Science, Technology, Engineering, and Mathematics (STEM) Educational Opportunities for Underserved and Underrepresented Students at NASA

    ERIC Educational Resources Information Center

    Hackler, Amanda Smith

    2011-01-01

    Underserved and underrepresented students consistently leave science, technology, engineering, and mathematics (STEM) degree fields to pursue less demanding majors. This perpetual problem slowed the growth in STEM degree fields (United States Department of Labor, 2007). Declining enrollment in STEM degree fields among underserved and…

  5. Integrated STEM Assessment Model

    ERIC Educational Resources Information Center

    Bicer, Ali; Capraro, Robert M.; Capraro, Mary M.

    2017-01-01

    Previous research identified a strong correlation between mathematics and science performance albeit for small samples of students. Even though there was a high correlation between mathematics and science performance, researchers examining students' STEM achievement investigated mathematics and science achievement separately. The present study…

  6. Defining the Relationship of Student Achievement Between STEM Subjects Through Canonical Correlation Analysis of 2011 Trends in International Mathematics and Science Study (TIMSS) Data

    NASA Astrophysics Data System (ADS)

    O'Neal, Melissa Jean

    Canonical correlation analysis was used to analyze data from Trends in International Mathematics and Science Study (TIMSS) 2011 achievement databases encompassing information from fourth/eighth grades. Student achievement in life science/biology was correlated with achievement in mathematics and other sciences across three analytical areas: mathematics and science student performance, achievement in cognitive domains, and achievement in content domains. Strong correlations between student achievement in life science/biology with achievement in mathematics and overall science occurred for both high- and low-performing education systems. Hence, partial emphases on the inter-subject connections did not always lead to a better student learning outcome in STEM education. In addition, student achievement in life science/biology was positively correlated with achievement in mathematics and science cognitive domains; these patterns held true for correlations of life science/biology with mathematics as well as other sciences. The importance of linking student learning experiences between and within STEM domains to support high performance on TIMSS assessments was indicated by correlations of moderate strength (57 TIMSS assessments was indicated by correlations of moderate strength (57 < r < 85) stronger correlations (73 < r < 97) between life science/biology and other science domains. Results demonstrated the foundational nature of STEM knowledge at the fourth grade level, and established the importance of strong interconnections among life science/biology, mathematics, and other sciences. At the eighth grade level, students who built increasing levels of cognitive complexity upon firm foundations were prepared for successful learning throughout their educational careers. The results from this investigation promote a holistic design of school learning opportunities to improve student achievement in life science/biology and other science, technology, engineering, and mathematics (STEM) subjects at the elementary and middle school levels. While the curriculum can vary from combined STEM subjects to separated mathematics or science courses, both professional learning communities (PLC) for teachers and problem-based learning (PBL) for learners can be strengthened through new knowledge construction beyond the traditional boundaries of each subject. It is the knowledge transfer across subjects that breaks barriers of future STEM discoveries to improve STEM education outcomes.

  7. Utility-value intervention with parents increases students' STEM preparation and career pursuit.

    PubMed

    Rozek, Christopher S; Svoboda, Ryan C; Harackiewicz, Judith M; Hulleman, Chris S; Hyde, Janet S

    2017-01-31

    During high school, developing competence in science, technology, engineering, and mathematics (STEM) is critically important as preparation to pursue STEM careers, yet students in the United States lag behind other countries, ranking 35th in mathematics and 27th in science achievement internationally. Given the importance of STEM careers as drivers of modern economies, this deficiency in preparation for STEM careers threatens the United States' continued economic progress. In the present study, we evaluated the long-term effects of a theory-based intervention designed to help parents convey the importance of mathematics and science courses to their high-school-aged children. A prior report on this intervention showed that it promoted STEM course-taking in high school; in the current follow-up study, we found that the intervention improved mathematics and science standardized test scores on a college preparatory examination (ACT) for adolescents by 12 percentile points. Greater high-school STEM preparation (STEM course-taking and ACT scores) was associated with increased STEM career pursuit (i.e., STEM career interest, the number of college STEM courses, and students' attitudes toward STEM) 5 y after the intervention. These results suggest that the intervention can affect STEM career pursuit indirectly by increasing high-school STEM preparation. This finding underscores the importance of targeting high-school STEM preparation to increase STEM career pursuit. Overall, these findings demonstrate that a motivational intervention with parents can have important effects on STEM preparation in high school, as well as downstream effects on STEM career pursuit 5 y later.

  8. Utility-value intervention with parents increases students’ STEM preparation and career pursuit

    PubMed Central

    Rozek, Christopher S.; Svoboda, Ryan C.; Harackiewicz, Judith M.; Hulleman, Chris S.; Hyde, Janet S.

    2017-01-01

    During high school, developing competence in science, technology, engineering, and mathematics (STEM) is critically important as preparation to pursue STEM careers, yet students in the United States lag behind other countries, ranking 35th in mathematics and 27th in science achievement internationally. Given the importance of STEM careers as drivers of modern economies, this deficiency in preparation for STEM careers threatens the United States’ continued economic progress. In the present study, we evaluated the long-term effects of a theory-based intervention designed to help parents convey the importance of mathematics and science courses to their high-school–aged children. A prior report on this intervention showed that it promoted STEM course-taking in high school; in the current follow-up study, we found that the intervention improved mathematics and science standardized test scores on a college preparatory examination (ACT) for adolescents by 12 percentile points. Greater high-school STEM preparation (STEM course-taking and ACT scores) was associated with increased STEM career pursuit (i.e., STEM career interest, the number of college STEM courses, and students’ attitudes toward STEM) 5 y after the intervention. These results suggest that the intervention can affect STEM career pursuit indirectly by increasing high-school STEM preparation. This finding underscores the importance of targeting high-school STEM preparation to increase STEM career pursuit. Overall, these findings demonstrate that a motivational intervention with parents can have important effects on STEM preparation in high school, as well as downstream effects on STEM career pursuit 5 y later. PMID:28096393

  9. Department of Everything: Department of Defense Spending That Has Little to Do With National Security

    DTIC Science & Technology

    2012-11-01

    and Mathematics (STEM) programs that duplicate the work of the Department of Education and local school districts ($10.7 billion). The Department of...of science, technology, engineering, and mathematics (STEM).16 The Pentagon recently joined the cooking show craze by partnering with the...of DOD Science, Technology, Engineering, and Mathematics (STEM) Programs,” 2010. 17 The Pentagon Channel, “The Grill Sergeants,” http

  10. First Steps Toward Improving DoD STEM Workforce Diversity: Response to the 2012 Department of Defense STEM Diversity Summit

    DTIC Science & Technology

    2013-01-01

    student achievement or par- ticipation in STEM fields. For example, facilitators of a middle school student program...Assessment Annual Cost navy Seaperch Middle school Middle school robotics competition 45% 35,000 students , 4,000 teachers missing number of annual...participating in Seaperch increased interest in studying engineering in 25% of middle school and 30% of high school students program

  11. Learning Scientific Reasoning Skills May Be Key to Retention in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Jensen, Jamie L.; Neeley, Shannon; Hatch, Jordan B.; Piorczynski, Ted

    2017-01-01

    The United States produces too few Science, Technology, Engineering, and Mathematics (STEM) graduates to meet demand. We investigated scientific reasoning ability as a possible factor in STEM retention. To do this, we classified students in introductory biology courses at a large private university as either declared STEM or non-STEM majors and…

  12. Academic Success of Urban African American Elementary Students in Title I Schools

    ERIC Educational Resources Information Center

    Anderson, James Sebastian

    2017-01-01

    The researcher investigated the achievement of third- and fifth-grade urban African American students who attended science, technology, engineering, and mathematics (STEM), Non-STEM, and Theme Title I schools in science and mathematics on the 2015 Georgia Milestones Assessment. The researcher used data from 29 Non-STEM, 14 STEM, and 10 Theme…

  13. Progress Report on Coordinating Federal Science, Technology, Engineering, and Mathematics (STEM) Education

    ERIC Educational Resources Information Center

    Executive Office of the President, 2016

    2016-01-01

    As called for in the America COMPETES Reauthorization Act of 2010, the National Science and Technology Council's (NSTC) Committee on STEM Education (CoSTEM) released, in May of 2013, the Federal Science, Technology, Engineering, and Mathematics (STEM) Education 5- Year Strategic Plan (Strategic Plan). As required by the Act, this report includes…

  14. Involvement of African-American Girls in Science, Technology, Engineering, and Mathematics (STEM) Education

    ERIC Educational Resources Information Center

    Nkere, Nsidi

    2016-01-01

    A qualitative case study was conducted by examining the perceptions of fifth-grade African American girls about their experiences with science, technology, engineering and mathematics (STEM) education and potential for STEM as a future career. As the United States suffers from waning participation across all demographics in STEM and a high level…

  15. Science, Technology, Engineering, Mathematics (STEM): Catalyzing Change Amid the Confusion

    ERIC Educational Resources Information Center

    Barakos, Lynn; Lujan, Vanessa; Strang, Craig

    2012-01-01

    Over the past eight years or so, educators have struggled to make sense of the many views and definitions of science, technology, engineering, and mathematics (STEM) education and what constitutes quality in STEM practices. The multitude of recent STEM funding opportunities has done little to create a common understanding about how to best engage…

  16. How to Motivate US Students to Pursue STEM (Science, Technology, Engineering and Mathematics) Careers

    ERIC Educational Resources Information Center

    Hossain, Md. Mokter; G. Robinson, Michael

    2012-01-01

    STEM (science, technology, engineering and mathematics) has been a powerful engine of prosperity in the US since World War II. Currently, American students' performances and enthusiasm in STEM education are inadequate for the US to maintain its leadership in STEM professions unless the government takes more actions to motivate a new generation of…

  17. Defense Threat Reduction Agency > Careers > Strategic Recruiting Programs

    Science.gov Websites

    graduate science, mathematics and engineering students. Students are offered these scholarships and graduate science, mathematics and engineering students. Students are offered scholarships and fellowships with disabilities, please call (703) 767-4451. Workforce Recruitment Program for College Students with

  18. Retention and promotion of women and underrepresented minority faculty in science and engineering at four large land grant institutions

    PubMed Central

    Durodoye, Raifu; Griffith, Emily; Wilson, Alyson

    2017-01-01

    The current climate on college campuses has brought new urgency to the need to increase faculty diversity. In STEM fields particularly, the dearth of underrepresented minority (URM) and female faculty is severe. The retention and success of African American, Hispanic/Latino, American Indian and female faculty have direct implications for the quality and diversity of the future scientific workforce. Understanding the ways retention patterns differ by discipline and institution is crucial for developing a diverse faculty. This study investigates tenure attainment, retention, and time to promotion to full professor for women and URM faculty. We analyze personnel records for assistant and associate professors hired or appointed from 1992 to 2015 at four large land grant institutions. Representation of women and URM faculty in STEM disciplines increased substantially from 1992 to 2015, but mostly for women and Hispanic faculty and more slowly for black and American Indian faculty. Results by gender In the most recent cohort, 2002–2015, the experiences of men and women differed substantially among STEM disciplines. Female assistant professors were more likely than men to leave the institution and to leave without tenure in engineering, but not in the agricultural, biological and biomedical sciences and natural resources or physical and mathematical sciences. In contrast, the median times to promotion from associate to full professor were similar for women and men in engineering and the physical and mathematical sciences, but one to two years longer for women than men in the agricultural, biological and biomedical sciences and natural resources. Results for underrepresented minority faculty URM faculty hiring is increasing, but is well below the proportions earning doctoral degrees in STEM disciplines. The results are variable and because of the small numbers of URM faculty, the precision and power for comparing URM faculty to other faculty were low. In three of the four institutions, lower fractions of URM faculty than other faculty hired in the 2002–2006 time frame left without tenure. Also, in the biological and biomedical and physical and mathematical sciences no URM faculty left without tenure. On the other hand, at two of the institutions, significantly more URM faculty left before their tenth anniversary than other faculty and in engineering significantly more URM faculty than other faculty left before their tenth anniversary. We did not find significant differences in promotion patterns between URM and other faculty. PMID:29091958

  19. Do They Enter the Workforce? Career Choices after an Undergrad Research Experience

    NASA Astrophysics Data System (ADS)

    Greco, S.; Wissel, S.; Zwicker, A.; Ortiz, D.; Dominguez, A.

    2015-11-01

    Students in undergrad research internships go on to grad school at rates of 50-75% (Lopatto, 2007;Russell, 2005). NSF studied its undergrad program and found that 74% of physics interns (67% for engineering) go to grad school. PPPL undergrad interns were tracked for 10 years. Only 3% of physics PhD candidates are studying plasma physics, but 23% of our alumni that entered grad school did so in plasma. AIP reports that 60% of physics majors go to grad school (AIP, 2012), but 95% of PPPL interns have gone on to grad schools. Several programs track enrollment in grad school. AIP compiles statistics of undergrads who enter grad school and PhD students who work in the field. There has been no study of interns that follows the path from undergrad to grad school and then on to employment. Our tracking shows that most not only complete their advanced degrees but also stay in STEM fields following their academic careers. 88% of them become part of the STEM workforce, higher than the 82% of all physics PhDs employed in physics after obtaining their degree (AIP, 2014). PPPL puts more students in grad school in physics, and specifically plasma physics, and a higher percentage of those grad students stay in the STEM workforce.

  20. Math Is All around Us: Exploring the Teaching, Learning, and Professional Development of Three Urban Mathematics Teachers

    ERIC Educational Resources Information Center

    Cosby, Missy; Horton, Akesha; Berzina-Pitcher, Inese

    2017-01-01

    The MSUrbanSTEM fellowship program aims to support science, technology, engineering, and mathematics (STEM) educators teaching in an urban context. In this chapter, we used a multiple case studies methodology to examine the qualitatively different ways three urban mathematics educators implemented a yearlong project in their mathematics classrooms…

  1. Science, Technology, Engineering, and Mathematics (STEM) Curriculum and Seventh Grade Mathematics and Science Achievement

    ERIC Educational Resources Information Center

    James, Jamie Smith

    2014-01-01

    The purpose of this quantitative research study was to evaluate to what degree Science, Technology, Engineering and Mathematics (STEM) education influenced mathematics and science achievement of seventh grade students in one Middle Tennessee school district. This research used an independent samples t test at the a = 0.05 level to evaluate…

  2. Overcoming the toxic influence of subtle messaging: Utah women who persist in STEM

    NASA Astrophysics Data System (ADS)

    Thackeray, Susan L.

    It is important to train more females to support the needs of a national and global economy workforce. The purpose of this thesis is to explore the proposition of the effect subtle messaging has on a Utah young woman's future career choice. The literature review will approach the science, technology, engineering, and math (STEM) subjects with historical, psychological, and cultural vantage points. An examination of three interconnected topics of research will include a history of women in the workforce and identified barriers to STEM education and careers to identify what types of messages are delivered to women as it relates to STEM and how it influences their career interest decisions. While there are historical barriers towards women in training for and entering STEM careers, no strong evidence is identified for sustained improvement. The changing concepts of social cognitive career theory can potentially provide a framework for constructivist assumptions regarding the topic of what can focus Utah young women learners to influence their own career development and surroundings to persist into STEM careers. Interpretative Phenomenology Analysis (IPA) provides increased understanding of the experiences of how Utah young women come to their decision and what role their environment contributes to that experience. Preliminary research outcomes demonstrate that the participants describe feelings of self-efficacy along with cultural expectations that do not align with their personal goals to enter into STEM education and careers.

  3. Ready, Aim, Fire Your Cannons!

    ERIC Educational Resources Information Center

    Enderson, Mary C.

    2015-01-01

    This article presents a science, technology, engineering, and mathematics (STEM) activity, building an air cannon, in a mathematics classroom. It describes an investigation grounded in STEM concepts that elementary and middle school teachers carried out to think about ways of implementing STEM activities into their instruction. This particular…

  4. Student and high-school characteristics related to completing a science, technology, engineering or mathematics (STEM) major in college

    NASA Astrophysics Data System (ADS)

    LeBeau, Brandon; Harwell, Michael; Monson, Debra; Dupuis, Danielle; Medhanie, Amanuel; Post, Thomas R.

    2012-04-01

    Background: The importance of increasing the number of US college students completing degrees in science, technology, engineering or mathematics (STEM) has prompted calls for research to provide a better understanding of factors related to student participation in these majors, including the impact of a student's high-school mathematics curriculum. Purpose: This study examines the relationship between various student and high-school characteristics and completion of a STEM major in college. Of specific interest is the influence of a student's high-school mathematics curriculum on the completion of a STEM major in college. Sample: The sample consisted of approximately 3500 students from 229 high schools. Students were predominantly Caucasian (80%), with slightly more males than females (52% vs 48%). Design and method: A quasi-experimental design with archival data was used for students who enrolled in, and graduated from, a post-secondary institution in the upper Midwest. To be included in the sample, students needed to have completed at least three years of high-school mathematics. A generalized linear mixed model was used with students nested within high schools. The data were cross-sectional. Results: High-school predictors were not found to have a significant impact on the completion of a STEM major. Significant student-level predictors included ACT mathematics score, gender and high-school mathematics GPA. Conclusions: The results provide evidence that on average students are equally prepared for the rigorous mathematics coursework regardless of the high-school mathematics curriculum they completed.

  5. Engineering an Associate Degree-Level STEM Workforce Education Curriculum

    ERIC Educational Resources Information Center

    Selwitz, Jason L.; Ahring, Birgitte; Garcia-Perez, Manuel; Morrison, Judith

    2018-01-01

    Community and technical colleges serve a vital function in STEM education by training workers for medium- and high-skilled technical careers and providing employers the labor necessary to operate and maintain thriving business ventures. A curriculum developed with the elements of a systems-based approach results in a program more relevant to the…

  6. Generation SMH (shaking my head): Work-Life Balance and Generational Realities

    NASA Astrophysics Data System (ADS)

    Jones, M. B.

    2012-12-01

    Many Federal Agencies have 'workforce development' programs that focus on preparing the next generation of scientists and engineers at the graduate and undergraduate level. Several of the science Agencies (e.g., NASA, NOAA, EPA, etc.), have programs that support students in many of the diverse disciplines that are unique to those Agency missions. While financial support certainly is critical to assist students in the STEM and other fields, professional development is just as important to equip students with a balanced arsenal of tactics to be successful professionals in the STEM workforce of today. Finding life balance as one moves through a STEM career path poses unique challenges that require a certain skill set that is not always intuitive. Some of those challenges include: selecting grad or post doc positions (negotiating to a family's advantage); balancing work and family commitments; and dealing with employer/advisor perceptions and expectations. For current and future generations in STEM, many of the above mentioned challenges require additional skill in negotiating interactions with individuals from other generations. Understanding perceptions and managing expectations are learnable skills that do not necessarily come with project funding.

  7. Can Parents Influence Children's Mathematics Achievement and Persistence in STEM Careers?

    ERIC Educational Resources Information Center

    Ing, Marsha

    2014-01-01

    This study explores the relationship between parental motivational practices, Children's mathematics achievement trajectories, and persistence in science, technology, engineering, and mathematics (STEM) careers. Nationally representative longitudinal survey data were analyzed using latent growth curve analysis. Findings indicate that…

  8. Persistence in STEM: An investigation of the relationship between high school experiences in science and mathematics and college degree completion in STEM fields

    NASA Astrophysics Data System (ADS)

    Maltese, Adam V.

    While the number of Bachelor's degrees awarded annually has nearly tripled over the past 40 years (NSF, 2008), the same cannot be said for degrees in the STEM (science, technology, engineering and mathematics) fields. The Bureau of Labor Statistics projects that by the year 2014 the combination of new positions and retirements will lead to 2 million job openings in STEM (BLS, 2005). Thus, the research questions I sought to answer with this study were: (1)What are the most common enrollment patterns for students who enter into and exit from the STEM pipeline during high school and college? (2) Controlling for differences in student background and early interest in STEM careers, what are the high school science and mathematics classroom experiences that characterize student completion of a college major in STEM? Using data from NELS:88 I analyzed descriptive statistics and completed logistic regressions to gain an understanding of factors related to student persistence in STEM. Approximately 4700 students with transcript records and who participated in all survey rounds were included in the analyses. The results of the descriptive analysis demonstrated that most students who went on to complete majors in STEM completed at least three or four years of STEM courses during high school, and enrolled in advanced high school mathematics and science courses at higher rates. At almost every pipeline checkpoint indicators of the level of coursework and achievement were significant in predicting student completion of a STEM degree. The results also support previous research that showed demographic variables have little effect on persistence once the sample is limited to those who have the intrinsic ability and desire to complete a college degree. The most significant finding is that measures of student interest and engagement in science and mathematics were significant in predicting completion of a STEM degree, above and beyond the effects of course enrollment and performance. A final analysis, which involved the comparison of descriptive statistics for students who switched into and out of the STEM pipeline during high school, suggested that attitudes toward mathematics and science play a major role in choices regarding pipeline persistence.

  9. National STEM School Education Strategy: A Comprehensive Plan for Science, Technology, Engineering and Mathematics Education in Australia

    ERIC Educational Resources Information Center

    Education Council, 2015

    2015-01-01

    There are many factors that affect student engagement in science, technology, engineering and mathematics (STEM). Underlying this are the views of the broader community--and parents in particular--about the relevance of STEM, and the approach to the teaching and learning of STEM from the early years and continuing throughout schooling. Connected…

  10. Development of an Instrument to Assess Attitudes toward Science, Technology, Engineering, and Mathematics (STEM)

    ERIC Educational Resources Information Center

    Guzey, S. Selcen; Harwell, Michael; Moore, Tamara

    2014-01-01

    There is a need for more students to be interested in science, technology, engineering, and mathematics (STEM) careers to advance U.S. competitiveness and economic growth. A consensus exists that improving STEM education is necessary for motivating more students to pursue STEM careers. In this study, a survey to measure student (grades 4-6)…

  11. Identifying and Nurturing Future Innovators in Science, Technology, Engineering, and Mathematics: A Review of Findings from the Study of Mathematically Precocious Youth

    ERIC Educational Resources Information Center

    Benbow, Camilla Persson

    2012-01-01

    Calls to strengthen education in science, technology, engineering, and mathematics (STEM) are underscored by employment trends and the importance of STEM innovation for the economy. The Study of Mathematically Precocious Youth (SMPY) has been tracking over 5,000 talented individuals longitudinally for 40 years, throwing light on critical questions…

  12. Facilitating Collaboration across Science, Technology, Engineering & Mathematics (STEM) Fields in Program Development

    ERIC Educational Resources Information Center

    Ejiwale, James A.

    2014-01-01

    Collaboration plays a major role in interdisciplinary activities among Science, Technology, Engineering & Mathematics (STEM) disciplines or fields. It also affects the relationships among cluster members on the management team. Although effective collaboration does not guarantee success among STEM disciplines, its absence usually assures…

  13. A STEM Exploration with Gears

    ERIC Educational Resources Information Center

    Deis, Timothy; Julius, Julie

    2017-01-01

    Science, engineering, and mathematics are fields that many students see as separate entities. But if these fields are combined with technology, they become STEM. This investigation provides a context and allows students to explore mathematics, science, and engineering within that context. It requires students to model with mathematics and find…

  14. Comparative Analyses of Discourse in Specialized STEM School Classes

    ERIC Educational Resources Information Center

    Tofel-Grehl, Colby; Callahan, Carolyn M.; Nadelson, Louis S.

    2017-01-01

    The authors detail the discourse patterns observed within mathematics and science classes at specialized STEM (science, technology, engineering, and mathematics) high schools. Analyses reveal that teachers in mathematics classes tended to engage their students in authoritative discourse while teachers in science classes tended to engage students…

  15. CTE's Role in Science, Technology, Engineering and Mathematics

    ERIC Educational Resources Information Center

    Hyslop, Alisha

    2010-01-01

    For the last several years, concern has been brewing about America's underinvestment and underperformance in science, technology, engineering and mathematics--the fields collectively known as STEM. STEM can be described as an initiative for securing America's leadership in science, technology, engineering and mathematics fields and identifying…

  16. The impact of the NASA Administrator's Fellowship Program on fellows' career choices

    NASA Astrophysics Data System (ADS)

    Graham, Eva M.

    Maintaining diversity in the technical workforce and in higher education has been identified as one way to increase the outreach, recruitment and retention of students and other faculty from underrepresented, underserved and minority populations, especially in Science, Technology, Engineering and Mathematics (STEM) courses of study and careers. The National Aeronautics and Space Administration (NASA) Administrator's Fellowship Program (NAFP) is a professional development program targeting faculty at Minority Serving Institutions and NASA civil servant employees for a two year work-based professional development experience toward increasing the likelihood of retaining them in STEM careers and supporting the recruitment and retention of minority students in STEM courses of study. This evaluation links the activities of the fellowship program to the impact on fellows' career choices as a result of participation through a series of surveys and interviews. Fellows' personal and professional perceptions of themselves and colleagues' and administrators' beliefs about their professional capabilities as a result of selection and participation were also addressed as they related to career outcomes. The findings indicated that while there was no direct impact on fellows' choice of careers, the exposure, direction and focus offered through travel, mentoring, research and teaching had an impact their perceptions of their own capabilities and, their colleagues' and administrators' beliefs about them as professionals and researchers. The career outcomes reported were an increase in the number publications, promotions, change in career and an increased awareness of the culture of science and engineering.

  17. Enhancing Diversity in Undergraduate Science: Self-Efficacy Drives Performance Gains with Active Learning.

    PubMed

    Ballen, Cissy J; Wieman, Carl; Salehi, Shima; Searle, Jeremy B; Zamudio, Kelly R

    2017-01-01

    Efforts to retain underrepresented minority (URM) students in science, technology, engineering, and mathematics (STEM) have shown only limited success in higher education, due in part to a persistent achievement gap between students from historically underrepresented and well-represented backgrounds. To test the hypothesis that active learning disproportionately benefits URM students, we quantified the effects of traditional versus active learning on student academic performance, science self-efficacy, and sense of social belonging in a large (more than 250 students) introductory STEM course. A transition to active learning closed the gap in learning gains between non-URM and URM students and led to an increase in science self-efficacy for all students. Sense of social belonging also increased significantly with active learning, but only for non-URM students. Through structural equation modeling, we demonstrate that, for URM students, the increase in self-efficacy mediated the positive effect of active-learning pedagogy on two metrics of student performance. Our results add to a growing body of research that supports varied and inclusive teaching as one pathway to a diversified STEM workforce. © 2017 C. J. Ballen et al. CBE—Life Sciences Education © 2017 The American Society for Cell Biology. This article is distributed by The American Society for Cell Biology under license from the author(s). It is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0).

  18. Addressing the Standards for Mathematical Practice in a Calculus Class

    ERIC Educational Resources Information Center

    Pilgrim, Mary E.

    2014-01-01

    The Common Core State Standards (CCSS) provide teachers with the expectations and requirements that are meant to prepare K-12 students for college and the workforce (CCSSI 2010b). The Common Core State Standards for Mathematical Practice (SMPs) emphasize the development of skills and conceptual understanding for students to become proficient in…

  19. Students' Attitude towards STEM Education

    ERIC Educational Resources Information Center

    Popa, Roxana-Alexandra; Ciascai, Liliana

    2017-01-01

    STEM is the acronym of Science, Technology, Engineering, and Mathematics fields. STEM education refers both to teaching and learning in the above-mentioned disciplines, but especially to teaching and learning a new discipline based on the integration of Science, Technology, Engineering, and Mathematics. The present survey aims to investigate the…

  20. Community Partnerships for Fostering Student Interest and Engagement in STEM

    ERIC Educational Resources Information Center

    Watters, James J.; Diezmann, Carmel M.

    2013-01-01

    The foundations of Science, Technology, Engineering and Mathematics (STEM) education begins in the early years of schooling when students encounter formal learning experiences primarily in mathematics and science. Politicians, economists and industrialists recognise the importance of STEM in society, and therefore a number of strategies have been…

  1. Evaluating the Effectiveness of Integrative STEM Education: Teacher and Administrator Professional Development

    ERIC Educational Resources Information Center

    Havice, William; Havice, Pamela; Waugaman, Chelsea; Walker, Kristin

    2018-01-01

    The integration of science, technology, engineering, and mathematics (STEM) education, also referred to as integrative STEM education, is a relatively new interdisciplinary teaching technique that incorporates an engineering design-based learning approach with mathematics, science, technology, and engineering education (Sanders, 2010, 2012, 2013;…

  2. Research and Teaching: Project-Based Instruction with Future STEM Educators--An Interdisciplinary Approach

    ERIC Educational Resources Information Center

    Wilhelm, Jennifer

    2014-01-01

    This study documented the means by which STEM (science, technology, engineering, and mathematics) educators experienced the mathematics and science associated with understanding lunar phenomena. The article reports how well STEM education graduate students interacted with projectbased materials as they engaged in interdisciplinary teaching and…

  3. Perceived Mathematical Ability under Challenge: A Longitudinal Perspective on Sex Segregation among STEM Degree Fields

    ERIC Educational Resources Information Center

    Nix, Samantha; Perez-Felkner, Lara; Thomas, Kirby

    2015-01-01

    Students' perceptions of their mathematics ability vary by gender and seem to influence science, technology, engineering, and mathematics (STEM) degree choice. Related, students' perceptions during academic difficulty are increasingly studied in educational psychology, suggesting a link between such perceptions and task persistence. Despite…

  4. Mathematical Description and Mechanistic Reasoning: A Pathway toward STEM Integration

    ERIC Educational Resources Information Center

    Weinberg, Paul J.

    2017-01-01

    Because reasoning about mechanism is critical to disciplined inquiry in science, technology, engineering, and mathematics (STEM) domains, this study focuses on ways to support the development of this form of reasoning. This study attends to how mechanistic reasoning is constituted through mathematical description. This study draws upon Smith's…

  5. Mathematics, Engineering Science Achievement (MESA). Washington's Community and Technical Colleges

    ERIC Educational Resources Information Center

    Washington State Board for Community and Technical Colleges, 2014

    2014-01-01

    Growing Science, Technology, Education, and Mathematics (STEM) talent Washington MESA--Mathematics Engineering Science Achievement--helps under-represented community college students excel in school and ultimately earn STEM bachelor's degrees. MESA has two key programs: one for K-12 students, and the other for community and technical college…

  6. College Students' Persistence and Degree Completion in Science, Technology, Engineering, and Mathematics (STEM): The Role of Non-Cognitive Attributes of Self-Efficacy, Outcome Expectations, and Interest

    ERIC Educational Resources Information Center

    Aryee, Michael

    2017-01-01

    The lack of students' persistence (or student's effort to continue their academic studies until degree completion) in Science, Technology, Engineering, and Mathematics (STEM) and the attrition of STEM students as well as the shortage of STEM workers have gathered much attention from policy makers, governmental agencies, higher education…

  7. Helping All Students Become Einstein's Using Bibliotherapy When Teaching Mathematics to Prepare Students for a STEM World

    ERIC Educational Resources Information Center

    Furner, Joseph M.

    2017-01-01

    Today, being confident and having a sound understanding of mathematics is critical in an age of STEM. Teachers must play in important role in seeing that all students display their confidence in their ability to do mathematics. This paper explains the process of using bibliotherapy when teaching mathematics to address both the math anxious or the…

  8. Perceived mathematical ability under challenge: a longitudinal perspective on sex segregation among STEM degree fields.

    PubMed

    Nix, Samantha; Perez-Felkner, Lara; Thomas, Kirby

    2015-01-01

    Students' perceptions of their mathematics ability vary by gender and seem to influence science, technology, engineering, and mathematics (STEM) degree choice. Related, students' perceptions during academic difficulty are increasingly studied in educational psychology, suggesting a link between such perceptions and task persistence. Despite interest in examining the gender disparities in STEM, these concepts have not been considered in tandem. In this manuscript, we investigate how perceived ability under challenge-in particular in mathematics domains-influences entry into the most sex-segregated and mathematics-intensive undergraduate degrees: physics, engineering, mathematics, and computer science (PEMC). Using nationally representative Education Longitudinal Study of 2002 (ELS) data, we estimate the influence of perceived ability under challenging conditions on advanced high school science course taking, selection of an intended STEM major, and specific major type 2 years after high school. Demonstrating the importance of specificity when discussing how gender influences STEM career pathways, the intersecting effects of gender and perceived ability under mathematics challenge were distinct for each scientific major category. Perceived ability under challenge in secondary school varied by gender, and was highly predictive of selecting PEMC and health sciences majors. Notably, women's 12th grade perceptions of their ability under mathematics challenge increased their probability of selecting PEMC majors over and above biology. In addition, gender moderated the effect of growth mindset on students' selection of health science majors. Perceptions of ability under challenge in general and verbal domains also influenced retention in and declaration of certain STEM majors. The implications of these results are discussed, with particular attention to access to advanced scientific coursework in high school and interventions aimed at enhancing young women's perceptions of their ability, in particular in response to the potentially inhibiting influence of stereotype threat on their pathways to scientific degrees.

  9. Perceived mathematical ability under challenge: a longitudinal perspective on sex segregation among STEM degree fields

    PubMed Central

    Nix, Samantha; Perez-Felkner, Lara; Thomas, Kirby

    2015-01-01

    Students' perceptions of their mathematics ability vary by gender and seem to influence science, technology, engineering, and mathematics (STEM) degree choice. Related, students' perceptions during academic difficulty are increasingly studied in educational psychology, suggesting a link between such perceptions and task persistence. Despite interest in examining the gender disparities in STEM, these concepts have not been considered in tandem. In this manuscript, we investigate how perceived ability under challenge—in particular in mathematics domains—influences entry into the most sex-segregated and mathematics-intensive undergraduate degrees: physics, engineering, mathematics, and computer science (PEMC). Using nationally representative Education Longitudinal Study of 2002 (ELS) data, we estimate the influence of perceived ability under challenging conditions on advanced high school science course taking, selection of an intended STEM major, and specific major type 2 years after high school. Demonstrating the importance of specificity when discussing how gender influences STEM career pathways, the intersecting effects of gender and perceived ability under mathematics challenge were distinct for each scientific major category. Perceived ability under challenge in secondary school varied by gender, and was highly predictive of selecting PEMC and health sciences majors. Notably, women's 12th grade perceptions of their ability under mathematics challenge increased their probability of selecting PEMC majors over and above biology. In addition, gender moderated the effect of growth mindset on students' selection of health science majors. Perceptions of ability under challenge in general and verbal domains also influenced retention in and declaration of certain STEM majors. The implications of these results are discussed, with particular attention to access to advanced scientific coursework in high school and interventions aimed at enhancing young women's perceptions of their ability, in particular in response to the potentially inhibiting influence of stereotype threat on their pathways to scientific degrees. PMID:26113823

  10. To authorize the National Science Foundation to award grants for implementing or expanding research-based reforms in master's and doctoral level STEM education that emphasize preparation for diverse careers in the STEM workforce.

    THOMAS, 111th Congress

    Rep. Giffords, Gabrielle [D-AZ-8

    2010-03-25

    House - 04/30/2010 Referred to the Subcommittee on Higher Education, Lifelong Learning, and Competitiveness. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  11. Towards a high quality high school workforce: A longitudinal, demographic analysis of U.S. public school physics teachers

    NASA Astrophysics Data System (ADS)

    Rushton, Gregory T.; Rosengrant, David; Dewar, Andrew; Shah, Lisa; Ray, Herman E.; Sheppard, Keith; Watanabe, Lynn

    2017-12-01

    Efforts to improve the number and quality of the high school physics teaching workforce have taken several forms, including those sponsored by professional organizations. Using a series of large-scale teacher demographic data sets from the National Center for Education Statistics (NCES), this study sought to investigate trends in teacher quality at the national level in the two and a half decades between 1987 and 2012. Specifically, we investigated (i) details about the degree backgrounds, main teaching assignments, and experience levels of those assigned to teach physics; (ii) whether the proportion of those with certifications in physics as a fraction of the entire physics teaching workforce had changed; and (iii) if workforce diversity (with respect to race and gender) had changed over time. Our data indicate that trends in these domains have generally been positive, but still fall short of having a highly qualified physics teacher in each classroom. Additionally, the population of physics teachers has more novices and fewer veterans than it did 10 years ago, although veteran physics teachers are not as rare as those in other branches of high school STEM fields. We also analyzed trends in physics teacher race and gender diversity and found them to lag behind other STEM and non-STEM teacher communities. High school physics is still mostly taught by white males with backgrounds from outside of physics. Implications for future policy decisions at the local and national levels are discussed, including attending to the specific needs of degree-holding and non-degree-holding physics teachers separately and localizing teacher recruitment and preparation efforts in regional centers.

  12. Solving the Diversity Dilemma: Changing the Face of the STEM Workforce. Vital Signs: Reports on the Condition of STEM Learning in the U.S.

    ERIC Educational Resources Information Center

    Change the Equation, 2015

    2015-01-01

    Our nation's prospects hinge on how well it responds to demographic change. The future of U.S. leadership in technology and innovation will increasingly depend on young women and people of color. If current trends persist, we are in for a world of trouble. Researchers have long known that women and people of color are scarce in STEM jobs, but…

  13. Expanding girls' horizons in physics and other sciences: A successful strategy since 1976

    NASA Astrophysics Data System (ADS)

    Spencer, Cherrill M.

    2015-12-01

    To start on the path to a career in science, technology, engineering, or mathematics (STEM), girls must take appropriate prerequisite-to-college mathematics and science courses when they are 15 to 18 years old. The Expanding Your Horizons in Science, Engineering, and Mathematics (EYH) conferences are one-day conferences for girls aged 12 to 18, designed to encourage girls towards a STEM career. These conferences engage schoolgirls in enjoyable hands-on STEM activities, created and led by women STEM professionals. This paper describes the history of EYH conferences, what happens at one, the impact of an EYH conference on the girls, and how to start one.

  14. Vignettes of scholars: A case study of black male students at a STEM early college high school

    NASA Astrophysics Data System (ADS)

    Adams, Tempestt Richardson

    Ensuring students graduate high school ready to enter college or the workforce has become a prime focus within secondary education. High school graduates are often ill-prepared for college-level work and often have to register for remedial courses before they can take standard college level courses (Southern Regional Education Board, 2010). Serving as both a solution to this concern and an alternative to traditional high schools, early college high schools were created to focus on increasing the number of students graduating from high school and enrolling in college. Early college high schools seek to serve students who have traditionally underperformed in school and those who are underrepresented in higher education including students of color, first-generation college students, students from low socioeconomic backgrounds, and English language learners (Barnett, Bucceri, Hindo, Kim, 2013; "Overview & FAQS," 2013). In efforts to learn more about how early colleges are meeting the needs of students, this dissertation examines the experiences, identity construction, and perceptions of Black male students at a science, technology, engineering, and mathematics (STEM) based early college high school. Using a qualitative case study design, participants were eight Black male upperclassmen enrolled in a STEM early college high school, located on the campus of a four-year university. Data was collected through focus groups and individual interviews and data was analyzed thematically. Findings suggest students in this study have largely positive experiences at their early college high school. Despite some challenges, the early college high school environment helps facilitate scholar identities, and the STEM focus of the school helps students learn more about their strengths and weaknesses. The implications of the research, recommendations for educational stakeholders, and recommendations for future research are discussed.

  15. The Need for an Effective Collaboration across Science, Technology, Engineering & Mathematics (STEM) Fields for a Meaningful Technological Development in Nigeria

    ERIC Educational Resources Information Center

    Haruna, Umar Ibrahim

    2015-01-01

    Collaboration plays a major role in interdisciplinary activities among Science, Technology, Engineering & Mathematics (STEM) disciplines or fields. It also affects the relationships among cluster members on the management team. Although effective collaboration does not guarantee success among STEM disciplines, its absence usually assures…

  16. Women of Color in Science, Technology, Engineering, and Mathematics (STEM)

    ERIC Educational Resources Information Center

    Johnson, Dawn R.

    2011-01-01

    Scholars have theorized and examined women's underrepresentation in science, technology, engineering and mathematics (STEM) fields for well over thirty years. However, much of this research has paid little attention to issues of racial and ethnic diversity among women, suggesting that all women have the same experiences in STEM. Women of color…

  17. Influences on Visual Spatial Rotation: Science, Technology, Engineering, and Mathematics (STEM) Experiences, Age, and Gender

    ERIC Educational Resources Information Center

    Perry, Paula Christine

    2013-01-01

    Science, Technology, Engineering, and Mathematics (STEM) education curriculum is designed to strengthen students' science and math achievement through project based learning activities. As part of a STEM initiative, SeaPerch was developed at Massachusetts Institute of Technology. SeaPerch is an innovative underwater robotics program that instructs…

  18. STEM Education and Leadership: A Mathematics and Science Partnership Approach

    ERIC Educational Resources Information Center

    Merrill, Chris; Daugherty, Jenny

    2010-01-01

    The issue of attracting more young people to choose careers in science, technology, engineering, and mathematics (STEM) has become critical for the United States. Recent studies by businesses, associations, and education have all agreed that the United States' performance in the STEM disciplines have placed the nation in grave risk of…

  19. Retaining Students in Science, Technology, Engineering, and Mathematics (STEM) Majors

    ERIC Educational Resources Information Center

    Watkins, Jessica; Mazur, Eric

    2013-01-01

    In this paper we present results relating undergraduate student retention in science, technology, engineering, and mathematics (STEM) majors to the use of Peer Instruction (PI) in an introductory physics course at a highly selective research institution. We compare the percentages of students who switch out of a STEM major after taking a physics…

  20. Strategies to Increase Representation of Students with Disabilities in Science, Technology, Engineering and Mathematics (STEM)

    ERIC Educational Resources Information Center

    White, Jeffry L.; Massiha, G. H.

    2015-01-01

    As a nation wrestles with the need to train more professionals, persons with disabilities are undereducated and underrepresented in science, technology, engineering, and mathematics (STEM). The following project was proposed to increase representation of students with disabilities in the STEM disciplines. The program emphasizes an integrated…

  1. Science and Mathematics Advanced Placement Exams: Growth and Achievement over Time

    ERIC Educational Resources Information Center

    Judson, Eugene

    2017-01-01

    Rapid growth of Advanced Placement (AP) exams in the last 2 decades has been paralleled by national enthusiasm to promote availability and rigor of science, technology, engineering, and mathematics (STEM). Trends were examined in STEM AP to evaluate and compare growth and achievement. Analysis included individual STEM subjects and disaggregation…

  2. Integration of Media Design Processes in Science, Technology, Engineering, and Mathematics (STEM) Education

    ERIC Educational Resources Information Center

    Karahan, Engin; Canbazoglu Bilici, Sedef; Unal, Aycin

    2015-01-01

    Problem Statement: Science, technology, engineering and mathematics (STEM) education aims at improving students' knowledge and skills in science and math, and thus their attitudes and career choices in these areas. The ultimate goal in STEM education is to create scientifically literate individuals who can survive in the global economy. The…

  3. Transforming Teacher Preparation to Ensure Long-Term Improvement in STEM Teaching

    ERIC Educational Resources Information Center

    Hiebert, James

    2013-01-01

    An alternative mathematics preparation program for K-8 teachers is described as an existence proof that steadily increasing effectiveness of STEM (science, technology, engineering, and mathematics) preparation is possible. The program is based on treating every lesson in each of five mathematics content and methods courses as objects of study.…

  4. A Norwegian Out-of-School Mathematics Project's Influence on Secondary Students' STEM Motivation

    ERIC Educational Resources Information Center

    Jensen, Fredrik; Sjaastad, Jørgen

    2013-01-01

    Considerable resources are spent on initiatives aiming to increase achievement and participation in science, technology, engineering, and mathematics (STEM). Drawing on focus group interviews and a questionnaire study with participants in ENT3R, a Norwegian out-of-school mathematics program, we investigated why participants attended and stayed in…

  5. STEM development: A study of 6th--12th grade girls' interest and confidence in mathematics and science

    NASA Astrophysics Data System (ADS)

    Heaverlo, Carol Ann

    Researchers, policymakers, business, and industry have indicated that the United States will experience a shortage of professionals in the Science, Technology, Engineering, and Mathematics (STEM) fields. Several strategies have been suggested to address this shortage, one of which includes increasing the representation of girls and women in the STEM fields. In order to increase the representation of women in the STEM fields, it is important to understand the developmental factors that impact girls' interest and confidence in STEM academics and extracurricular programs. Research indicates that greater confidence leads to greater interest and vice versa (Denissen et al., 2007). This study identifies factors that impact girls' interest and confidence in mathematics and science, defined as girls' STEM development. Using Bronfenbrenner's (2005) bioecological model of human development, several factors were hypothesized as having an impact on girls' STEM development; specifically, the macrosystems of region of residence and race/ethnicity, and the microsystems of extracurricular STEM activities, family STEM influence, and math/science teacher influence. Hierarchical regression analysis results indicated that extracurricular STEM involvement and math teacher influence were statistically significant predictors for 6--12th grade girls' interest and confidence in mathematics. Furthermore, hierarchical regression analysis results indicated that the only significant predictor for 6--12th grade girls' interest and confidence in science was science teacher influence. This study provides new knowledge about the factors that impact girls' STEM development. Results can be used to inform and guide educators, administrators, and policy makers in developing programs and policy that support and encourage the STEM development of 6--12th grade girls.

  6. 78 FR 37590 - Agency Information Collection Activities: Submission for OMB Review; Comment Request

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-06-21

    ...: Program Evaluation of the Scholarships in Science, Technology, Engineering, and Mathematics (S-STEM... Mathematics (S-STEM) Program, which operates within NSF's Division of Undergraduate Education. The evaluation...

  7. An American Imperative: Transforming the Recruitment, Retention, and Renewal of Our Nation's Mathematics and Science Teaching Workforce

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2007

    2007-01-01

    American students today have limited interest in studying mathematics and science, and academic achievement in these two foundational disciplines is demonstrably low. This reality poses an acute challenge to our ability to keep American society intellectually vibrant and to ensure that our economy is globally competitive. This Business-Higher…

  8. Communities Count: Community Based Sourcebook for Promoting Mathematics & Science Education.

    ERIC Educational Resources Information Center

    Crespo, Hilda; Cid, Nadine

    In the increasingly technological workforce, greater competency in mathematics, science, and computers among Latino and other minority students takes on a new urgency. Hispanic Americans are a vital pool of workers to tap for the nation's future growth. Schools must ensure that Hispanic Americans have the skills they need to enter the labor force…

  9. Seeking congruity between goals and roles: a new look at why women opt out of science, technology, engineering, and mathematics careers.

    PubMed

    Diekman, Amanda B; Brown, Elizabeth R; Johnston, Amanda M; Clark, Emily K

    2010-08-01

    Although women have nearly attained equality with men in several formerly male-dominated fields, they remain underrepresented in the fields of science, technology, engineering, and mathematics (STEM). We argue that one important reason for this discrepancy is that STEM careers are perceived as less likely than careers in other fields to fulfill communal goals (e.g., working with or helping other people). Such perceptions might disproportionately affect women's career decisions, because women tend to endorse communal goals more than men. As predicted, we found that STEM careers, relative to other careers, were perceived to impede communal goals. Moreover, communal-goal endorsement negatively predicted interest in STEM careers, even when controlling for past experience and self-efficacy in science and mathematics. Understanding how communal goals influence people's interest in STEM fields thus provides a new perspective on the issue of women's representation in STEM careers.

  10. Attitudes towards Science, Technology, Engineering and Mathematics (STEM) in a Project-Based Learning (PjBL) Environment

    ERIC Educational Resources Information Center

    Tseng, Kuo-Hung; Chang, Chi-Cheng; Lou, Shi-Jer; Chen, Wen-Ping

    2013-01-01

    Many scholars claimed the integration of science, technology, engineering and mathematics (STEM) education is beneficial to the national economy and teachers and institutes have been working to develop integrated education programs. This study examined a project-based learning (PjBL) activity that integrated STEM using survey and interview…

  11. The Role of Academic Preparation and Interest on STEM Success. ACT Research Report Series

    ERIC Educational Resources Information Center

    Radunzel, Justine; Mattern, Krista; Westrick, Paul

    2016-01-01

    Research has shown that science, technology, engineering, and mathematics (STEM) majors who are more academically prepared--especially in terms of their mathematics and science test scores--are more likely to be successful across a variety of outcomes: cumulative grade point average (GPA), persistence in a STEM major, and ultimately earning a STEM…

  12. The M in Stem via the M in Epidemiology

    ERIC Educational Resources Information Center

    Griffiths, Martin

    2011-01-01

    It is the case that some activities claiming to reside under the STEM umbrella do not, in fact, give participants the opportunity to engage in anything other than routine mathematics. With this in mind, we explore here the potential for developing and then delivering STEM activities based on the discipline of mathematical epidemiology. We argue…

  13. Motivating Children to Develop Their Science, Technology, Engineering, and Mathematics (STEM) Talent

    ERIC Educational Resources Information Center

    Andersen, Lori

    2013-01-01

    Motivation in mathematics and science appears to be more important to STEM occupational choice than ability. Using the expectancy value model, parents may be able to recognize potential barriers to children's selection of a STEM occupation and take actions to help facilitate talent development. These are especially important for parents of…

  14. Relationship between High School Mathematical Achievement and Quantitative GPA

    ERIC Educational Resources Information Center

    Brown, Jennifer L.; Halpin, Glennelle; Halpin, Gerald

    2015-01-01

    The demand for STEM graduates has increased, but the number of incoming freshmen who declare a STEM major has remained stagnant. High school courses, such as calculus, can open or close the gate for students interested in careers in STEM. The purpose of this study was to determine if high school mathematics preparation was a significant…

  15. STEM Education: A Review of the Contribution of the Disciplines of Science, Technology, Engineering and Mathematics

    ERIC Educational Resources Information Center

    McDonald, Christine V.

    2016-01-01

    Recent global educational initiatives and reforms have focused on increasing the number of students pursuing STEM subjects, and ensuring students are well-prepared, and suitably qualified to engage in STEM careers. This paper examines the contributions of the four disciplines--Science, Technology, Engineering and Mathematics--to the field of STEM…

  16. Implementing "Big Ideas" to Advance the Teaching and Learning of Science, Technology, Engineering, and Mathematics (STEM)

    ERIC Educational Resources Information Center

    Chalmers, Christina; Carter, Merilyn; Cooper, Tom; Nason, Rod

    2017-01-01

    Although education experts are increasingly advocating the incorporation of integrated Science, Technology, Engineering, and Mathematics (STEM) curriculum units to address limitations in much current STEM teaching and learning, a review of the literature reveals that more often than not such curriculum units are not mediating the construction of…

  17. Living Learning Communities: An Intervention in Keeping Women Strong in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Belichesky, Jennifer

    2013-01-01

    The purpose of this study was to expand on the current research pertaining to women in science, technology, engineering, and mathematics (STEM) majors, better understand the experiences of undergraduate women in the sciences, identify barriers to female persistence in their intended STEM majors, and understand the impact of the STEM co-educational…

  18. Pre-Service Science Teachers' Cognitive Structures Regarding Science, Technology, Engineering, Mathematics (STEM) and Science Education

    ERIC Educational Resources Information Center

    Hacioglu, Yasemin; Yamak, Havva; Kavak, Nusret

    2016-01-01

    The aim of this study is to reveal pre-service science teachers' cognitive structures regarding Science, Technology, Engineering, Mathematics (STEM) and science education. The study group of the study consisted of 192 pre-service science teachers. A Free Word Association Test (WAT) consisting of science, technology, engineering, mathematics and…

  19. Dismantling the Birdcage: Adolescent Girls' Attitudes towards Learning Mathematics with a Relational Pedagogy in a Problem-Based Environment

    ERIC Educational Resources Information Center

    Schettino, Carmel

    2013-01-01

    Although the Gender Achievement Gap is closing in mathematics, the "interest gap" in pursuing STEM fields is not. Mathematics education research has discussed constructivist, student-centered and inclusive methods of teaching that have been found to encourage students that have underachieved and been underrepresented in STEM fields. One…

  20. A Complex Formula: Girls and Women in Science, Technology, Engineering and Mathematics in Asia

    ERIC Educational Resources Information Center

    Salmon, Aliénor

    2015-01-01

    What factors might be causing the low participation of women Science, Technology, Engineering and Mathematics (STEM) fields? What can be done to attract more girls and women into STEM in Asia and beyond? The report, "A Complex Formula. Girls and Women in Science, Technology, Engineering and Mathematics in Asia", answers three fundamental…

  1. Opinions of Secondary School Science and Mathematics Teachers on STEM Education

    ERIC Educational Resources Information Center

    Yildirim, Bekir; Türk, Cumhur

    2018-01-01

    In this study, the opinions of middle school science teachers and mathematics teachers towards STEM education were examined. The research was carried out for 30 hours with 28 middle school science and mathematics teachers who were working in Istanbul during the spring semester of 2016-2017 academic year. 75% of these teachers are female teachers…

  2. Introducing Chemical Reactions Concepts in K-6 through a Hands-On Food Spherification and Spaghetti-Fication Experiment

    ERIC Educational Resources Information Center

    Gupta, Anju; Hill, Nicole; Valenzuela, Patricia; Johnson, Eric

    2017-01-01

    Recruiting students in STEM majors to fill the gap in STEM workforce is a continued challenge, which can be addressed by introducing scientific principles through hand-on activities to the students at an early stage. This paper presents the design, implementation and assessment of a chemistry-related workshop for sixth grade students that were…

  3. Slow off the Mark: Elementary School Teachers and the Crisis in Science, Technology, Engineering, and Math Education

    ERIC Educational Resources Information Center

    Epstein, Diana; Miller, Raegen T.

    2011-01-01

    One can't throw a stone without hitting a STEM initiative these days, but most science, technology, engineering, and math initiatives--thus the STEM acronym--overlook a fundamental problem. In general, the workforce pipeline of elementary school teachers fails to ensure that the teachers who inform children's early academic trajectories have the…

  4. Teachers from Instructors to Designers of Inquiry-Based Science, Technology, Engineering, and Mathematics Education: How Effective Inquiry-Based Science Education Implementation Can Result in Innovative Teachers and Students

    ERIC Educational Resources Information Center

    Filippi, Alyssa; Agarwal, Dipali

    2017-01-01

    There is a need for individuals in science, technology, engineering, and mathematics (STEM) careers to drive the innovation and research potential of Europe. Yet, there is expected to be a decrease in the number of STEM professionals, as there is less student interest in STEM fields of the study. Studies show that STEM classes that focus on…

  5. Exploring Counseling Services and Their Impact on Female, Underrepresented Minority Community College Students in Science, Technology, Engineering, and Math: A Qualitative Study

    NASA Astrophysics Data System (ADS)

    Strother, Elizabeth

    The economic future of the United States depends on developing a workforce of professionals in science, technology, engineering and mathematics (Adkins, 2012; Mokter Hossain & Robinson, 2012). In California, the college population is increasingly female and underrepresented minority, a population that has historically chosen to study majors other than STEM. In California, community colleges provide a major inroad for students seeking to further their education in one of the many universities in the state. The recent passage of Senate Bill 1456 and the Student Success and Support Program mandate increased counseling services for all California community college students (California Community College Chancellors Office, 2014). This dissertation is designed to explore the perceptions of female, underrepresented minority college students who are majoring in an area of science, technology, engineering and math, as they relate to community college counseling services. Specifically, it aims to understand what counseling services are most effective, and what community college counselors can do to increase the level of interest in STEM careers in this population. This is a qualitative study. Eight participants were interviewed for the case study, all of whom are current or former community college students who have declared a major in a STEM discipline. The semi-structured interviews were designed to help understand what community college counselors can do to better serve this population, and to encourage more students to pursue STEM majors and careers. Through the interviews, themes emerged to explain what counseling services are the most helpful. Successful STEM students benefited from counselors who showed empathy and support. Counselors who understood the intricacies of educational planning for STEM majors were considered the most efficacious. Counselors who could connect students with enrichment activities, such as internships, were highly valued, as were counseling services that helped students learn to negotiate being a woman in male-dominated classes. The interviews shed light on the particular skills required to effectively counsel underrepresented minority females in STEM majors in the community college.

  6. An Investigation of Science, Technology, Engineering and Mathematics (STEM) Focused High Schools in the U.S.

    ERIC Educational Resources Information Center

    Scott, Catherine

    2012-01-01

    This study examined the characteristics of 10 science, technology, engineering and mathematics (STEM) focused high schools that were selected from various regions across the United States. In an effort to better prepare students for careers in STEM fields, many schools have been designed and are currently operational, while even more are in the…

  7. A Research about the Placement of the Top Thousand Students in STEM Fields in Turkey between 2000 and 2014

    ERIC Educational Resources Information Center

    Akgunduz, Devrim

    2016-01-01

    STEM (Science, Technology, Engineering and Mathematics), one of the mostly emphasized concepts in the world, is a paradigm that creates interdisciplinary learning and provides achievement of the outcomes of science, mathematics, engineering and technology while doing this. This research was carried out to investigate the STEM fields' placement of…

  8. Students Who Study Science, Technology, Engineering, and Mathematics (STEM) in Postsecondary Education. Stats in Brief. NCES 2009-161

    ERIC Educational Resources Information Center

    Chen, Xianglei

    2009-01-01

    Rising concern about America's ability to maintain its competitive position in the global economy has renewed interest in science, technology, engineering and mathematics (STEM) education. To understand who enters into and completes undergraduate programs in STEM fields, this report examined data from three major national studies: the 1995-96…

  9. Developing Middle School Students' Interests in STEM via Summer Learning Experiences: See Blue STEM Camp

    ERIC Educational Resources Information Center

    Mohr-Schroeder, Margaret J.; Jackson, Christa; Miller, Maranda; Walcott, Bruce; Little, David L.; Speler, Lydia; Schooler, William; Schroeder, D. Craig

    2014-01-01

    It is a well-known fact that, in general, many students have a lack of interest and proficiency in mathematics and science. Therefore, it is imperative that we prepare and inspire all students, specifically students of underrepresented populations, to learn science, technology, engineering, and mathematics (STEM) content. Now in its fourth year,…

  10. Middle School Science and Mathematics Teachers' Conceptions of the Nature of Science: A One-Year Study on the Effects of Explicit and Reflective Online Instruction

    ERIC Educational Resources Information Center

    Wong, Sissy S.; Firestone, Jonah B.; Ronduen, Lionnel G.; Bang, EunJin

    2016-01-01

    Science, Technology, Engineering, and Mathematics (STEM) education has become one of the main priorities in the United States. Science education communities and researchers advocate for integration of STEM disciplines throughout the teaching curriculum. This requires teacher knowledge in STEM disciplines, as well as competence in scientific…

  11. A Phenomenological Study of the Persistence of Unsuccessful Students in Developmental Mathematics at a Community College

    ERIC Educational Resources Information Center

    Canfield, Barbara

    2013-01-01

    There are a large number of students entering college underprepared for college-level mathematics (Carnegie Foundation for the Advancement of Teaching, 2011). While this problem is not new, it has become the focus of national attention because of the impact it has on college completion and workforce development. There is much written in the…

  12. Building a Community of Scholars: One University's Story of Students Engaged in Learning Science, Mathematics, and Engineering through a NSF S-STEM Grant

    ERIC Educational Resources Information Center

    Kalevitch, Maria; Maurer, Cheryl; Badger, Paul; Holdan, Greg; Iannelli, Joe; Sirinterlikci, Arif; Semich, George; Bernauer, James

    2012-01-01

    The School of Engineering, Mathematics, and Science (SEMS) at Robert Morris University (RMU) was awarded a five-year grant from the National Science Foundation (NSF) to fund scholarships to 21 academically talented but financially challenged students majoring in the disciplines of science, technology, engineering, and mathematics (STEM). Each…

  13. Gender Differences in the Effects of a Utility-Value Intervention to Help Parents Motivate Adolescents in Mathematics and Science

    ERIC Educational Resources Information Center

    Rozek, Christopher S.; Hyde, Janet S.; Svoboda, Ryan C.; Hulleman, Chris S.; Harackiewicz, Judith M.

    2015-01-01

    A foundation in science, technology, engineering, and mathematics (STEM) education is critical for students' college and career advancement, but many U.S. students fail to take advanced mathematics and science classes in high school. Research has neglected the potential role of parents in enhancing students' motivation for pursuing STEM courses.…

  14. 75 FR 20007 - Advisory Committee for Education and Human Resources; Notice of Meeting

    Federal Register 2010, 2011, 2012, 2013, 2014

    2010-04-16

    ... Foundation's science, technology, engineering, and mathematics (STEM) education and human resources... Broadening Participation--Undergraduate Science, Technology, Engineering & Mathematics (STEM). III. Discussion of Graduate Education/Career Development Programs. IV. Collaborations with the Department of...

  15. The Underrepresentation of Women in the Engineering Element of STEM Occupations and Influencers Contributing to the Persistent Gap

    NASA Astrophysics Data System (ADS)

    Holl, David

    Within Science, Technology, Engineering, and Mathematics (STEM) careers fields, the representation of women remains at an inequitable level when compared to men and to women's representation in other professions. Given the current state of women representing 52% of the professional and management-related workforce (U.S. Bureau of Labor and Statistics, 2015), their representation at only 15% of employed engineers nationwide appears to be a problem. When considering the fact that recent graduation data show women earn over 19% of Bachelor's degrees in engineering each year, the low number becomes increasingly puzzling. What factors are contributing to this low number of women in engineering professions? One of the contributing factors is clearly women's choice of education and career paths. However, empirical literature suggests, after pursuing and entering the engineer profession, women often are victim to gender schema, cognitive bias, and an absence of family-friendly work policies, an insufficient number of female mentors, social exclusion, and other drivers potentially leading to their higher turnover rate compared to their male counterparts. This project looks within one military-related organization to uncover reasons for the low representation of female engineers. The combination of a mixed-methods approach to data collection and the Knowledge, Motivation, and Organization (KMO) framework developed by Clark and Estes (2008) for analysis is employed by this project. Comparison of the analysis results to widely accepted learning and motivation principles presented in the reviewed literature led to a proposal of research-based solutions to address the representation gap and ultimately increase women's representation in engineering and other STEM career fields.

  16. Promoting professional identity, motivation, and persistence: Benefits of an informal mentoring program for female undergraduate students

    PubMed Central

    Bloodhart, Brittany; Barnes, Rebecca T.; Adams, Amanda S.; Clinton, Sandra M.; Pollack, Ilana; Godfrey, Elaine; Burt, Melissa; Fischer, Emily V.

    2017-01-01

    Women are underrepresented in a number of science, technology, engineering, and mathematics (STEM) disciplines. Limited diversity in the development of the STEM workforce has negative implications for scientific innovation, creativity, and social relevance. The current study reports the first-year results of the PROmoting Geoscience Research, Education, and SuccesS (PROGRESS) program, a novel theory-driven informal mentoring program aimed at supporting first- and second-year female STEM majors. Using a prospective, longitudinal, multi-site (i.e., 7 universities in Colorado/Wyoming Front Range & Carolinas), propensity score matched design, we compare mentoring and persistence outcomes for women in and out of PROGRESS (N = 116). Women in PROGRESS attended an off-site weekend workshop and gained access to a network of volunteer female scientific mentors from on- and off-campus (i.e., university faculty, graduate students, and outside scientific professionals). The results indicate that women in PROGRESS had larger networks of developmental mentoring relationships and were more likely to be mentored by faculty members and peers than matched controls. Mentoring support from a faculty member benefited early-undergraduate women by strengthening their scientific identity and their interest in earth and environmental science career pathways. Further, support from a faculty mentor had a positive indirect impact on women’s scientific persistence intentions, through strengthened scientific identity development. These results imply that first- and second- year undergraduate women’s mentoring support networks can be enhanced through provision of protégé training and access to more senior women in the sciences willing to provide mentoring support. PMID:29091969

  17. Promoting professional identity, motivation, and persistence: Benefits of an informal mentoring program for female undergraduate students.

    PubMed

    Hernandez, Paul R; Bloodhart, Brittany; Barnes, Rebecca T; Adams, Amanda S; Clinton, Sandra M; Pollack, Ilana; Godfrey, Elaine; Burt, Melissa; Fischer, Emily V

    2017-01-01

    Women are underrepresented in a number of science, technology, engineering, and mathematics (STEM) disciplines. Limited diversity in the development of the STEM workforce has negative implications for scientific innovation, creativity, and social relevance. The current study reports the first-year results of the PROmoting Geoscience Research, Education, and SuccesS (PROGRESS) program, a novel theory-driven informal mentoring program aimed at supporting first- and second-year female STEM majors. Using a prospective, longitudinal, multi-site (i.e., 7 universities in Colorado/Wyoming Front Range & Carolinas), propensity score matched design, we compare mentoring and persistence outcomes for women in and out of PROGRESS (N = 116). Women in PROGRESS attended an off-site weekend workshop and gained access to a network of volunteer female scientific mentors from on- and off-campus (i.e., university faculty, graduate students, and outside scientific professionals). The results indicate that women in PROGRESS had larger networks of developmental mentoring relationships and were more likely to be mentored by faculty members and peers than matched controls. Mentoring support from a faculty member benefited early-undergraduate women by strengthening their scientific identity and their interest in earth and environmental science career pathways. Further, support from a faculty mentor had a positive indirect impact on women's scientific persistence intentions, through strengthened scientific identity development. These results imply that first- and second- year undergraduate women's mentoring support networks can be enhanced through provision of protégé training and access to more senior women in the sciences willing to provide mentoring support.

  18. Examining the Impact of a Professional Development Course on STEM Teachers' Acceptance of and Intent to Implement Problem-Based Learning

    ERIC Educational Resources Information Center

    Mong, Christopher J.

    2013-01-01

    In order to improve STEM education, as well as incorporate 21st century skills, teacher education programs are in the process of finding better ways to address these areas (Trilling & Fadel, 2009). New teachers entering the workforce are prepared mostly to teach content the way they were taught (Alger, 2009; Eick & Reed, 2002; Goodnough…

  19. Sex and Science: How Professor Gender Perpetuates the Gender Gap. NBER Working Paper No. 14959

    ERIC Educational Resources Information Center

    Carrell, Scott E.; Page, Marianne E.; West, James E.

    2009-01-01

    Why aren't there more women in science? Female college students are currently 37 percent less likely than males to obtain a bachelor's degree in science, technology, engineering, and math (STEM), and comprise only 25 percent of the STEM workforce. This paper begins to shed light on this issue by exploiting a unique dataset of college students who…

  20. Connecting mathematics learning through spatial reasoning

    NASA Astrophysics Data System (ADS)

    Mulligan, Joanne; Woolcott, Geoffrey; Mitchelmore, Michael; Davis, Brent

    2018-03-01

    Spatial reasoning, an emerging transdisciplinary area of interest to mathematics education research, is proving integral to all human learning. It is particularly critical to science, technology, engineering and mathematics (STEM) fields. This project will create an innovative knowledge framework based on spatial reasoning that identifies new pathways for mathematics learning, pedagogy and curriculum. Novel analytical tools will map the unknown complex systems linking spatial and mathematical concepts. It will involve the design, implementation and evaluation of a Spatial Reasoning Mathematics Program (SRMP) in Grades 3 to 5. Benefits will be seen through development of critical spatial skills for students, increased teacher capability and informed policy and curriculum across STEM education.

  1. Mentorship: The Education-Research Continuum

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Correll, D

    2008-05-29

    Mentoring of science students stems naturally from the intertwined link between science education and science research. In fact, the mentoring relationship between a student and a scientist may be thought of analogically as a type of double helix forming the 'DNA' that defines the blueprint for the next generation of scientists. Although this analogy would not meet the rigorous tests commonly used for exploring the natural laws of the universe, the image depicted does capture how creating and sustaining the future science workforce benefits greatly from the continuum between education and research. The path science students pursue from their educationmore » careers to their research careers often involves training under an experienced and trusted advisor, i.e., a mentor. For many undergraduate science students, a summer research internship at a DOE National Laboratory is one of the many steps they will take in their Education-Research Continuum. Scientists who choose to be mentors share a commitment for both science education and science research. This commitment is especially evident within the research staff found throughout the Department of Energy's National Laboratories. Research-based internship opportunities within science, technology, engineering and mathematics (STEM) exist at most, if not all, of the Laboratories. Such opportunities for students are helping to create the next generation of highly trained professionals devoted to the task of keeping America at the forefront of scientific innovation. 'The Journal of Undergraduate Research' (JUR) provides undergraduate interns the opportunity to publish their scientific innovation and to share their passion for education and research with fellow students and scientists. The theme of this issue of the JUR (Vol. 8, 2008) is 'Science for All'. Almost 20 years have passed since the American Association for the Advancement of Science published its 1989 report, 'Science for All Americans-Project 2061'. The first recommendation for learning science stated: 'The Nature of Science includes the scientific world view, scientific methods of inquiry, and the nature of the scientific enterprise'. All three elements of the 'Nature of Science' are pivotal aspects of a research internship under the mentorship of an experienced and trusted advisor. In addition to internships for undergraduates, an important ingredient in realizing 'Science for All' is collaboration involving educators and scientists as they engage science students and the public at large to promote science literacy and to develop the next generation of STEM professionals. The DOE National Laboratories, individually and collectively, form an ideal nexus for nurturing these complementary collaborations. My 'Science for All' experiences at Lawrence Livermore National Laboratory (LLNL) over the last 30 years have spanned pre-college, college, and postdoctoral activities, including mentoring of undergraduate students. Early in my mentoring career, I became aware that undergraduates in particular needed help in answering the question 'what path (or paths) will lead to a challenging and rewarding STEM career'? For many, a successful path included a research internship that would result in expanded skills and training in addition to those received from their academic education. These internship skills were helpful whether the student's next Education-Research Continuum decision was graduate school or STEM employment. My experience at LLNL mirrors that of my colleagues at other DOE National Laboratories--internships with a dedicated mentor provide undergraduates with a unique set of skills that can underpin their future options and serve to improve the number, quality, and successful outcomes of students who enter STEM careers. 'Science for All' can also be found in the goals of 'The America COMPETES Act', which call for renewed efforts to increase investments in scientific research and development, strengthen education, and encourage entrepreneurship. Mentoring is an important ingredient in reaching these goals because the success of future endeavors will require a diverse workforce of scientists, technicians, engineers, mathematicians, and STEM educators. A small, but not insignificant, metric of how well the nation is doing to create the next STEM generation can be measured by the abstracts and articles published in the 'Journal of Undergraduate Research'. At the 'heart' of the JUR is the professional commitment of the DOE National Laboratory workforce to mentor the next STEM generation and to realize 'Science for All'.« less

  2. Alignment of Hands-on STEM Engagement Activities with Positive STEM Dispositions in Secondary School Students

    NASA Astrophysics Data System (ADS)

    Christensen, Rhonda; Knezek, Gerald; Tyler-Wood, Tandra

    2015-12-01

    This study examines positive dispositions reported by middle school and high school students participating in programs that feature STEM-related activities. Middle school students participating in school-to-home hands-on energy monitoring activities are compared to middle school and high school students in a different project taking part in activities such as an after-school robotics program. Both groups are compared and contrasted with a third group of high school students admitted at the eleventh grade to an academy of mathematics and science. All students were assessed using the same science, technology, engineering and mathematics (STEM) dispositions instrument. Findings indicate that the after-school group whose participants self-selected STEM engagement activities, and the self-selected academy of mathematics and science group, each had highly positive STEM dispositions comparable to those of STEM professionals, while a subset of the middle school whole-classroom energy monitoring group that reported high interest in STEM as a career, also possessed highly positive STEM dispositions comparable to the STEM Professionals group. The authors conclude that several different kinds of hands-on STEM engagement activities are likely to foster or maintain positive STEM dispositions at the middle school and high school levels, and that these highly positive levels of dispositions can be viewed as a target toward which projects seeking to interest mainstream secondary students in STEM majors in college and STEM careers, can hope to aspire. Gender findings regarding STEM dispositions are also reported for these groups.

  3. Collaboratory=Collaborate+Laboratory: The Mid-Columbia STEM Education Collaboratory

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Willcuts, Meredith H.; Kennedy, Cathleen A.

    Pacific Northwest National Laboratory created a network focused on collaboration in STEM education to design and deliver projects, resources, and professional learning opportunities in a testbed environment. How do you uncover and fill gaps in equitable access to high-quality science, technology, engineering, and math (STEM) education offerings in your local region? Where might you deploy strategies to improve STEM workforce preparation and increase public understanding of STEM-oriented issues? And how can you help to ensure that students, educators, parents, and the community are aware of these programs and know how to access them in schools, colleges, and community venues? Ifmore » you are the Pacific Northwest National Laboratory (PNNL), you take on the huge goal of designing and implementing an innovative STEM education collaboration project that impacts all levels of local education, both inside and outside of school settings. PNNL is one of the 17 national laboratories funded by the U.S. Department of Energy. Operated by Battelle, PNNL has a vested interest in preparing the next generation of scientists and engineers for their future careers, thus building a STEM-capable workforce and creating a STEM-literate community. One of Battelle’s core principles is a commitment to STEM education and its role in business competitiveness and quality of life. PNNL has been active in STEM education for decades, providing internships for future scientists, giving educators in-house lab experiences, and engaging its researchers in STEM outreach activities in classrooms and the community. The Collaboratory is a relatively recent outcome of Battelle’s longstanding efforts in STEM education. The original Collaboratory planning documents, developed by PNNL’s Office of STEM Education (OSE), state the objective to “design, implement, and mature a local STEM education collaboration zone that highlights the power of PNNL and Battelle to impact the educational ecosystem and serve as a model for amplifying and accelerating progress in addressing our STEM education and workforce challenges” (PNNL 2013). In other words, we (the OSE) sought to create a zone of collaboration in which members co-design and deliver STEM education programs, share findings and lessons learned from their experiences, and co-manage and sustain the organization. We started by identifying possible collaborators located nearby in the largely rural southeast corner of Washington State. Recognizing that our potential collaborators had differing norms, values, and relationships within the community, as well as their own areas of expertise and purpose, we convened representatives from K–12 public and private schools, higher education, community-based learning providers, and local business and industry to brainstorm a unified vision to resolve gaps in local STEM education needs. Through discussions with these collaborators, we started hunting for gaps where STEM efforts were lacking but a desire to improve existed. We gave ourselves permission to try things out and built a testbed space where we could experiment with new ideas, gather evidence of feasibility, and treat failures as constructive learning opportunities. Through this generative process and with seed funding from Battelle, inter-organizational teams now work together, both virtually and in real time, to develop, test, and deploy resources to support student success, educators’ effectiveness, and community engagement in STEM. Thus, the Mid-Columbia STEM Education Collaboratory (Collaboratory) was born. This is the story of our beginnings: our challenges, our lessons learned, and emerging indicators of success. For those interested in launching an education–business–community STEM learning ecosystem, we share our story.« less

  4. An Examination of the Effects of Collaborative Scientific Visualization via Model-Based Reasoning on Science, Technology, Engineering, and Mathematics (STEM) Learning within an Immersive 3D World

    ERIC Educational Resources Information Center

    Soleimani, Ali

    2013-01-01

    Immersive 3D worlds can be designed to effectively engage students in peer-to-peer collaborative learning activities, supported by scientific visualization, to help with understanding complex concepts associated with learning science, technology, engineering, and mathematics (STEM). Previous research studies have shown STEM learning benefits…

  5. Monitoring Progress: How the 2012 National Survey of Science and Mathematics Education Can Inform a National K-12 STEM Education Indicator System

    ERIC Educational Resources Information Center

    Fulkerson, William O.; Banilower, Eric R.

    2014-01-01

    "Monitoring Progress Toward Successful K-12 STEM Education: A Nation Advancing?" (National Research Council, 2013) describes a set of 14 indicators for assessing and tracking the health of pre-college STEM education in the United States. This 2012 National Survey of Science and Mathematics Education (NSSME), is the fifth in a series of…

  6. Factors That Female Higher Education Faculty in Select Science, Technology, Engineering, and Mathematics (STEM) Fields Perceive as Being Influential to Their Success and Persistence in Their Chosen Professions

    ERIC Educational Resources Information Center

    Opare, Phyllis Bernice

    2012-01-01

    The purpose of this study was to determine factors female higher education faculty in select science, technology, engineering, and mathematics (STEM) fields perceived as influential to their success and persistence in their chosen professions. Females are underrepresented in STEM professions including academia, despite the fact that female…

  7. Building a Community of Scholars: One University's Story of Students Engaged in Learning Science, Mathematics, and Engineering through a NSF S-STEM Grant--Part II

    ERIC Educational Resources Information Center

    Kalevitch, Maria; Maurer, Cheryl; Badger, Paul; Holdan, Greg; Sirinterlikci, Arif

    2015-01-01

    The School of Engineering, Mathematics, and Science (SEMS) at Robert Morris University (RMU) was awarded a five-year grant from the National Science Foundation (NSF) to fund scholarships to 21 academically talented but financially challenged students majoring in the disciplines of science, technology, engineering, and mathematics (STEM). Each…

  8. An Exploration into the Potential Career Effects from Middle and High School Mathematics Experiences: A Mixed Methods Investigation into STEM Career Choice

    ERIC Educational Resources Information Center

    DeThomas, Elizabeth M.

    2017-01-01

    This mixed methods research study examined the effects of middle and high school mathematics experiences on students' choice of college major, particularly whether students decided to major in a STEM field. Social cognitive career theory was used to examine potential influences of mathematics self-efficacy and how those influences and mathematics…

  9. Helping parents to motivate adolescents in mathematics and science: an experimental test of a utility-value intervention.

    PubMed

    Harackiewicz, Judith M; Rozek, Christopher S; Hulleman, Chris S; Hyde, Janet S

    2012-08-01

    The pipeline toward careers in science, technology, engineering, and mathematics (STEM) begins to leak in high school, when some students choose not to take advanced mathematics and science courses. We conducted a field experiment testing whether a theory-based intervention that was designed to help parents convey the importance of mathematics and science courses to their high school-aged children would lead them to take more mathematics and science courses in high school. The three-part intervention consisted of two brochures mailed to parents and a Web site, all highlighting the usefulness of STEM courses. This relatively simple intervention led students whose parents were in the experimental group to take, on average, nearly one semester more of science and mathematics in the last 2 years of high school, compared with the control group. Parents are an untapped resource for increasing STEM motivation in adolescents, and the results demonstrate that motivational theory can be applied to this important pipeline problem.

  10. The Gender-Equality Paradox in Science, Technology, Engineering, and Mathematics Education.

    PubMed

    Stoet, Gijsbert; Geary, David C

    2018-04-01

    The underrepresentation of girls and women in science, technology, engineering, and mathematics (STEM) fields is a continual concern for social scientists and policymakers. Using an international database on adolescent achievement in science, mathematics, and reading ( N = 472,242), we showed that girls performed similarly to or better than boys in science in two of every three countries, and in nearly all countries, more girls appeared capable of college-level STEM study than had enrolled. Paradoxically, the sex differences in the magnitude of relative academic strengths and pursuit of STEM degrees rose with increases in national gender equality. The gap between boys' science achievement and girls' reading achievement relative to their mean academic performance was near universal. These sex differences in academic strengths and attitudes toward science correlated with the STEM graduation gap. A mediation analysis suggested that life-quality pressures in less gender-equal countries promote girls' and women's engagement with STEM subjects.

  11. Exploring international gender differences in mathematics self-concept

    PubMed Central

    Goldman, Amy D.; Penner, Andrew M.

    2013-01-01

    This study provides an international perspective on mathematics by examnnng mathematics self-concept, achievement, and the desire to enter a career involving mathematics among eighth graders in 49 countries. Using data from the Trends in International Mathematics and Science Study, this study shows that self-concept in mathematics is more closely related to the desire to enter a career using mathematics than achievement is. Further, while gender differences in mathematics self-concept are smaller in more egalitarian countries, both girls and boys have lower mathematics self-concepts and less interest in mathematics careers in these countries. These findings reveal a policy paradox: policies aimed at training the next generation of STEM professionals often highlight the need to close the gender gap, but countries with smaller gender gaps have fewer boys and girls interested in mathematics-intensive careers. We conclude by highlighting the importance of disentangling instrumental and expressive aspects of gender inequality in STEM fields. PMID:27840545

  12. The DOE fellows program-a workforce development initiative for the US department of energy

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Lagos, Leonel E.

    The US Department of Energy Office of Environmental Management (DOE-EM) oversees one of the largest and most technically challenging cleanup programs in the world. The mission of DOE-EM is to complete the safe cleanup of the environmental legacy from five decades of nuclear weapons development and government-sponsored nuclear energy research. Since 1995, Florida International University's Applied Research Center (FIU-ARC) has supported the DOE-EM mission and provided unique research capabilities to address some of these highly technical and difficult challenges. This partnership has allowed FIU-ARC to create a unique infrastructure that is critical for the training and mentoring of science, technology,more » engineering, and math (STEM) students and has exposed many STEM students to 'hands-on' DOE-EM applied research, supervised by the scientists and engineers at ARC. As a result of this successful partnership between DOE and FIU, DOE requested FIU-ARC to create the DOE-FIU Science and Technology Workforce Development Initiative in 2007. This innovative program was established to create a 'pipeline' of minority STEM students trained and mentored to enter DOE's environmental cleanup workforce. The program was designed to help address DOE's future workforce needs by partnering with academic, government and private companies (DOE contractors) to mentor future minority scientists and engineers in the research, development, and deployment of new technologies and processes addressing DOE's environmental cleanup challenges. Since its inception in 2007, the program has trained and mentored 78 FIU STEM minority students. Although, the program has been in existence for only six years, a total of 75 internships have been conducted at DOE National Laboratories, DOE sites, DOE Headquarters and field offices, and DOE contractors. Over 100 DOE Fellows have participated in the Waste Management (WM) Symposia since 2008 with a total of 84 student posters and 7 oral presentations given at WM. The DOE Fellows participation at WM has resulted in three Best Student Poster Awards (WM09, WM10, and WM11) and one Best Professional Poster Award (WM09). DOE Fellows have also presented their research at ANS DD and R and ANS Robotics Topical meetings and this year two Fellows will present at the International Conference on Environmental Remediation and Radioactive Waste Management (ICEM13) in Brussels, Belgium. Moreover, several of our DOE Fellows have already obtained employment with DOE-EM, other federal agencies, DOE contractors, commercial nuclear power companies, and other STEM industry (GE, Boeing, Lockheed Martin, Johnson and Johnson, Beckman-Coulter, and other top companies). This paper will discuss how DOE Fellows program is training and mentoring FIU STEM students in Department of Energy's Office of Environmental Management technical challenges and research. This training and mentoring has resulted in the development of well-trained and polished young scientists and engineers that will become the future workforce in charge of carrying on DOE-EM's environmental cleanup mission. The paper will showcase FIU's DOE Fellows model and highlight some of the applied research the DOE Fellows have conducted at FIU's Applied Research Center and across the DOE Complex by participating in summer internship assignments. (authors)« less

  13. Countries with Higher Levels of Gender Equality Show Larger National Sex Differences in Mathematics Anxiety and Relatively Lower Parental Mathematics Valuation for Girls

    PubMed Central

    2016-01-01

    Despite international advancements in gender equality across a variety of societal domains, the underrepresentation of girls and women in Science, Technology, Engineering, and Mathematics (STEM) related fields persists. In this study, we explored the possibility that the sex difference in mathematics anxiety contributes to this disparity. More specifically, we tested a number of predictions from the prominent gender stratification model, which is the leading psychological theory of cross-national patterns of sex differences in mathematics anxiety and performance. To this end, we analyzed data from 761,655 15-year old students across 68 nations who participated in the Programme for International Student Assessment (PISA). Most importantly and contra predictions, we showed that economically developed and more gender equal countries have a lower overall level of mathematics anxiety, and yet a larger national sex difference in mathematics anxiety relative to less developed countries. Further, although relatively more mothers work in STEM fields in more developed countries, these parents valued, on average, mathematical competence more in their sons than their daughters. The proportion of mothers working in STEM was unrelated to sex differences in mathematics anxiety or performance. We propose that the gender stratification model fails to account for these national patterns and that an alternative model is needed. In the discussion, we suggest how an interaction between socio-cultural values and sex-specific psychological traits can better explain these patterns. We also discuss implications for policies aiming to increase girls’ STEM participation. PMID:27100631

  14. Countries with Higher Levels of Gender Equality Show Larger National Sex Differences in Mathematics Anxiety and Relatively Lower Parental Mathematics Valuation for Girls.

    PubMed

    Stoet, Gijsbert; Bailey, Drew H; Moore, Alex M; Geary, David C

    2016-01-01

    Despite international advancements in gender equality across a variety of societal domains, the underrepresentation of girls and women in Science, Technology, Engineering, and Mathematics (STEM) related fields persists. In this study, we explored the possibility that the sex difference in mathematics anxiety contributes to this disparity. More specifically, we tested a number of predictions from the prominent gender stratification model, which is the leading psychological theory of cross-national patterns of sex differences in mathematics anxiety and performance. To this end, we analyzed data from 761,655 15-year old students across 68 nations who participated in the Programme for International Student Assessment (PISA). Most importantly and contra predictions, we showed that economically developed and more gender equal countries have a lower overall level of mathematics anxiety, and yet a larger national sex difference in mathematics anxiety relative to less developed countries. Further, although relatively more mothers work in STEM fields in more developed countries, these parents valued, on average, mathematical competence more in their sons than their daughters. The proportion of mothers working in STEM was unrelated to sex differences in mathematics anxiety or performance. We propose that the gender stratification model fails to account for these national patterns and that an alternative model is needed. In the discussion, we suggest how an interaction between socio-cultural values and sex-specific psychological traits can better explain these patterns. We also discuss implications for policies aiming to increase girls' STEM participation.

  15. Preparing the 21st Century Workforce: Strengthening and Improving K-12 and Undergraduate Science, Math, and Engineering Education. Field Hearing Before the Subcommittee on Research, Committee on Science, House of Representatives, 107th Congress, First Session (April 22, 2002).

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. House.

    The hearing reported in this document focuses on K-12 and undergraduate science, mathematics, and engineering education and the improvement of the educational system to prepare the 21st century workforce. The report includes statements from Ms. Narvella R. West, Executive Director for Science, Dallas Independent School District; Dr. Geoffrey C.…

  16. A Comparison of Student Spatial Abilities Across STEM Fields

    NASA Astrophysics Data System (ADS)

    Loftis, Thad; Cid, Xiimena; Lopez, Ramon

    2011-10-01

    It has been shown that STEM (Science, Technology, Engineering, and Mathematics) students have higher spatial abilities than students in the liberal arts or humanities. In order to track the change in spatial abilities within a group, studies in physics have examined topics in kinematics, chemistry has examined topics on molecular diagrams, mathematics has examined topics related to geometry, and engineering has developed courses specifically targeting students' spatial abilities. It is understood that students in STEM fields improve their spatial abilities while taking STEM courses, but very few studies have done comparisons amongst the different STEM fields. I will be presenting data comparing different STEM students' spatial ability, assessed using the Mental Rotation Test.

  17. Cognitive and Motivational Factors That Inspire Hispanic Female Students to Pursue STEM-Related Academic Programs That Lead to Careers in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Morel-Baker, Sonaliz

    2017-01-01

    Hispanics, and women in particular, continue to be underrepresented in the fields of science, technology, engineering, and mathematics (STEM). The purpose of this study was to analyze cognitive and motivational factors that inspired Hispanic female college students to major in STEM programs and aspire to academic success. This mixed methods study…

  18. 75 FR 67380 - Office of the Director; Notice of Meeting

    Federal Register 2010, 2011, 2012, 2013, 2014

    2010-11-02

    ... of Outside Awards for ACD Approval; Biomedical Workforce Issues; ACD Stem Cell Working Group Report...: 8 a.m. to 3 p.m. Agenda: NIH Director's Report, Lasker Clinical Research Program; ACD TRND Working...

  19. Examining Thai high school students' developing STEM projects

    NASA Astrophysics Data System (ADS)

    Teenoi, Kultida; Siripun, Kulpatsorn; Yuenyong, Chokchai

    2018-01-01

    Like others, Thailand education strongly focused on STEM education. This paper aimed to examine existing Thai high school students' integrated knowledge about science, technology, engineering, and mathematics (STEM) in their developing science project. The participants included 49 high school students were studying the subject of individual study (IS) in Khon Kaen wittayayon school, Khon Kaen, Thailand. The IS was provided to gradually enhance students to know how to do science project starting from getting start to do science projects, They enrolled to study the individual study of science project for three year in roll. Methodology was qualitative research. Views of students' integrated knowledge about STEM were interpreted through participant observation, interview, and students' science projects. The first author as participant observation has taught this group of students for 3 years. It found that 16 science projects were developed. Views of students' integrated knowledge about STEM could be categorized into three categories. These included (1) completely indicated integration of knowledge about science, technology, engineering, and mathematics, (2) partial indicated integration of knowledge about science, technology, engineering, and mathematics, and (3) no integration. The findings revealed that majority of science projects could be categorized as completely indicated integration of knowledge about science, technology, engineering, and mathematics. The paper suggested some ideas of enhancing students to applying STEM for developing science projects.

  20. Are Universities Providing Non-STEM Students the Mathematics Preparation Required by Their Programs?: A Case Study of A Quantitative Literacy Pathway and Vertical Alignment from Remediation to Degree Completion

    ERIC Educational Resources Information Center

    Allen, Charles

    2017-01-01

    Informed by Gagne's belief in the necessity of prerequisite knowledge for new learning, and Bruner's Spiral Curriculum Theory, the objective of this case study was to explore the postsecondary pathway from remedial mathematics, through one gateway mathematics course, and into the quantitative literacy requirements of various non-STEM programs of…

  1. The creation and validation of an instrument to measure school STEM Culture

    NASA Astrophysics Data System (ADS)

    White, Christopher

    Although current research exists on school culture, there is a gap in the literature on specialized aspects of culture such as STEM Culture defined as the beliefs, values, practices, resources, and challenges in STEM fields (Science, Technology, Engineering and Mathematics) within a school. The objective of this study was to create a valid and reliable instrument, the STEM Culture Assessment Tool (STEM-CAT), that measures this cultural aspect based on a survey of stakeholder groups within the school community and use empirical data to support the use of this instrument to measure STEM Culture. Items were created and face validity was determined through a focus group and expert review before a pilot study was conducted to determine reliability of the items. Once items were determined reliable, the survey was given to eight high schools and results were correlated to the percentage of seniors who self-reported whether they intend to pursue STEM fields upon graduation. The results of this study indicate further need for research to determine how the STEM-CAT correlates to STEM culture due to some inconsistencies with the dependent variable in this study. Future research could be done correlating the results of the STEM-CAT with participation in Advanced Placement science and mathematics, SAT/ACT scores in science and mathematics or the number of students who actually pursue STEM fields rather than a prediction halfway through the 12th grade.

  2. Coordinating Federal Science, Technology, Engineering, and Mathematics (STEM) Education Investments: Progress Report. A Report from the Federal Coordination in STEM Education Task Force Committee on STEM Education National Science and Technology Council: In Response to the Requirements of the America COMPETES Reauthorization Act of 2010

    ERIC Educational Resources Information Center

    Executive Office of the President, 2012

    2012-01-01

    The America COMPETES Reauthorization Act of 2013 directs the Office of Science and Technology Policy (OSTP) to create an interagency committee under the National Science and Technology Council (NSTC) to develop a 5-year Federal science, technology, engineering, and mathematics (STEM) education strategic plan that includes: (1) annual and long-term…

  3. The Top STEM Degree Producers

    ERIC Educational Resources Information Center

    Diverse: Issues in Higher Education, 2012

    2012-01-01

    This article presents a list of the top Science, Technology, Engineering, and Mathematics (STEM) degree producers in the U.S. This list is broken down into seven categories: (1) Total Minority Research/Scholarship and Other Doctoral: Mathematics and Statistics; (2) Total Minority Bachelors: Biological and Biomedical Sciences; (3) Total Minority…

  4. Engaged Learning and Youth Interest in STEM Careers: A Science Museum Exhibit on Air Pollution and Urban Sustainability

    NASA Astrophysics Data System (ADS)

    Stuart, A. L.

    2012-12-01

    Enrollments in science, technology, engineering, and mathematics (STEM) curricula currently lag workforce needs. Participation of women and minorities in STEM careers also remains low despite efforts to improve their representation in these fields. We discuss the development and evaluation of a science museum exhibit aimed at stimulating interest of middle school children (particularly girls) in STEM careers. The exhibit was designed to teach science, while addressing two factors identified as limiting the interest of girls in STEM fields — perceived lack of social relevance and lack of female role models. Further, it was designed to apply best practices in science education, including inquiry-based learning and interdisciplinary content. The exhibit was developed through collaboration between students and faculty researchers at the University of South Florida and science education and evaluation specialists at the Museum of Science and Industry of Tampa. A few stages of formative and summative assessment, including focus group discussions, visitor observation, and surveys were used to evaluate the effectiveness of the exhibit to educational project goals. The installed exhibit is focused on teaching content related to interactions between air pollution, urban design, and human health. The approximately 25 square foot exhibit space involves four different types of components. A three-dimensional model of a city, with underlying dynamic computer simulations, allows visitors to interactively explore relationships between city design, air pollution and exposures. A computer game, with quiz questions requiring user decisions on personal to community behavior, provides visual feedback regarding impacts on air pollution. Traditional panels with graphics and text, including results of current research, display integrative scientific content with open-ended questions to stimulate discussion. Finally, personal profiles highlight the diverse family, work, and social lives of a few STEM professionals from childhood to mid-career. Current results of the educational evaluation suggest that the quiz game and three-dimensional interactive model were particularly effective at engaging and interesting visitors in the science content. The personal profiles appear to have helped to interest visitors in STEM careers, regardless of gender or age. The methods and results demonstrated through this exhibit should inform improvements to informal science education toward increased engagement of the next generation in science content and STEM careers.

  5. A Case Study of an Academia-Industry Partnership to Meet the Education and Training Needs in a Science, Technology, Engineering & Mathematics (STEM) Field

    ERIC Educational Resources Information Center

    Richardson, Joseph Carl

    2013-01-01

    The purpose of this case study is to provide a description of the characteristics of an academia-industry partnership that works together with industry to meet the education and training needs in a Science, Technology, Engineering, and Mathematics (STEM) field. After the launch of Sputnik in 1957, U.S. pursued efforts to compete in STEM fields on…

  6. Student’s STEM Literacy in Biotechnology Learning at Junior High School

    NASA Astrophysics Data System (ADS)

    Nurlaely, N.; Permanasari, A.; Riandi, R.

    2017-09-01

    A considerable study to student’s STEM literacy achievement profile, especially in biotechnology learning, has been conducted to make the innovation of the STEM-based learning. The study aims to find out the STEM literacy. The sample is taken through purposive sampling technique to 45 students of 9th grade of a junior high school in Tasikmalaya district. The instruments are multiple choice questions. Data are analysed by calculating mean score of students’ STEM literacy achievement. The results show that student’s STEM literacy achievement was low. Science literacy aspect was the lowest, while mathematical literacy gained better than another aspect. The low achievement of students’ STEM literacy was because of learning activities that have not been able to integrate science, technology, engineering, and mathematics in science learning. The literacy profile indicates the importance of applying STEM approach to science learning, and it is recommended to improve students’ STEM literacy achievement.

  7. Title: The Impact of 2006-2012 CReSIS Summer Research Programs that Influence Student's Choice of a STEM Related Major in College Authors: Dr. Darnell Johnson Djohnson@mail.ecsu.edu Elizabeth City State University, Elizabeth City, North Carolina 27909 Dr. Linda Hayden Haydenl@mindspring.com Elizabeth City State University, Elizabeth City, North Carolina, 27909

    NASA Astrophysics Data System (ADS)

    Johnson, D.

    2013-12-01

    Abstract: Researchers, policymakers, business, and industry have indicated that the United States will experience a future shortage of professionals in the Science, Technology, Engineering, and Mathematics (STEM) fields. Several strategies have been suggested to address this impending shortage, one of which includes increasing the representation of females and minorities in the STEM fields. In order to increase the representation of underrepresented students in the STEM fields, it is important to understand the motivational factors that impact underrepresented students' interest in STEM academics and extracurricular programs. Research indicates that greater confidence leads to greater interest and vice versa (Denissen et al., 2007). In this paper, the mathematics research team examined the role of practical research experience during the summer for talented minority secondary students studying in STEM fields. An undergraduate research mathematics team focused on the link between summer research and the choice of an undergraduate discipline. A Chi Square Statistical Test was used to examine Likert Scale results on the attitude of students participating in the 2006-2012 Center for Remote Sensing of Ice Sheets (CReSIS) Summer Research Programs for secondary students. This research was performed at Elizabeth City State University located in northeastern North Carolina about the factors that impact underrepresented students' choices of STEM related majors in college. Results can be used to inform and guide educators, administrators, and policy makers in developing programs and policy that support and encourage the STEM development of underrepresented students. Index Terms: Science, Technology, Engineering, and Mathematics (STEM), Underrepresented students

  8. Choosing STEM College Majors: Exploring the Role of Pre-College Engineering Courses

    ERIC Educational Resources Information Center

    Phelps, L. Allen; Camburn, Eric M.; Min, Sookweon

    2018-01-01

    Despite the recent policy proclamations urging state and local educators to implement integrated science, technology, engineering, and mathematics (STEM) curricula, relatively little is known about the role and impact of pre-college engineering courses within these initiatives. When combined with appropriate mathematics and science courses, high…

  9. Careers in STEM Begin with Elementary Student Interest in Mathematics

    ERIC Educational Resources Information Center

    Brimmer, Linda Ertrachter

    2017-01-01

    I investigated why math capable students are not entering science, technology, engineering, and math (STEM) careers. To research the problem, I explored how highly effective elementary math teachers (HEMT) create student interest in mathematics using the self- efficacy (SE) theory and information and communication technology (ICT). The purpose of…

  10. Reform in Undergraduate Science, Technology, Engineering, and Mathematics: The Classroom Context

    ERIC Educational Resources Information Center

    Stage, Frances K.; Kinzie, Jillian

    2009-01-01

    This article reports the results of a series of site visits examining modifications to science, technology, engineering, and mathematics (STEM) teaching and learning based on reform on three differing campuses. Innovations in stem classrooms included collaborative approaches to learning; incorporation of active learning, authentic contexts, peer…

  11. STEM - Science, Technology, Engineering, & Mathematics Career Expo

    Science.gov Websites

    Search STEM - Science, Technology, Engineering, & Mathematics Career Expo Come to Fermilab to meet Career Expo on April 18, 2018! Here's your guide to the event. Meet scientists, engineers, & ; technicians Ask career questions of the experts Ask experts about educational pathways leading to specific

  12. Community Colleges Giving Students a Framework for STEM Careers

    ERIC Educational Resources Information Center

    Musante, Susan

    2012-01-01

    Over the coming decade, America will need one million more science, technology, engineering, and mathematics (STEM) professionals than was originally projected. This is the conclusion of a February 2012 report, "Engage to Excel: Producing One Million Additional College Graduates with Degrees in Science, Technology, Engineering, and Mathematics".…

  13. Characteristics of Schools Successful in STEM: Evidence from Two States' Longitudinal Data

    ERIC Educational Resources Information Center

    Hansen, Michael

    2014-01-01

    Present federal education policies promote learning in science, technology, engineering, and mathematics (STEM) and the participation of minority students in these fields. Using longitudinal data on students in Florida and North Carolina, value-added estimates in mathematics and science are generated to categorize schools into performance levels…

  14. Open Campus: Strategic Plan

    DTIC Science & Technology

    2016-05-01

    The formal and informal interactions among scientists, engineers, and business and technology specialists fostered by this environment will lead...pathways for highly trained graduates of science, technology, engineering, and mathematics (STEM) academic programs, and help academic institutions...engineering and mathematics (STEM) disciplines relevant to ARL science and technology programs. Under EPAs, visiting students and professors

  15. Leadership Training in Science, Technology, Engineering and Mathematics Education in Bulgaria

    ERIC Educational Resources Information Center

    Bairaktarova, Diana; Cox, Monica F.; Evangelou, Demetra

    2011-01-01

    This synthesis paper explores current leadership training in science, technology, engineering and mathematics (STEM) education in Bulgaria. The analysis begins with discussion of global factors influencing the implementation of leadership training in STEM education in general and then presents information about the current status of leadership…

  16. Psycho-Social Determinants of Gender Prejudice in Science, Technology, Engineering and Mathematics

    ERIC Educational Resources Information Center

    Nnachi, N. O.; Okpube, M. N.

    2015-01-01

    This work focused on the "Psycho-social Determinants of Gender Prejudice in Science, Technology, Engineering and Mathematics (STEM)". The females were found to be underrepresented in STEM fields. The under-representation results from gender stereotype, differences in spatial skills, hierarchical and territorial segregations and…

  17. Conflicts in Developing an Elementary STEM Magnet School

    ERIC Educational Resources Information Center

    Sikma, Lynn; Osborne, Margery

    2014-01-01

    Elementary schools in the United States have been the terrain of a highly politicized push for improved reading and mathematics attainment, as well as calls for increased importance to be given to science, technology, engineering, and mathematics (STEM). With priorities placed on basic skills, however, instructional time in subjects such as…

  18. STEMing the tide: using ingroup experts to inoculate women's self-concept in science, technology, engineering, and mathematics (STEM).

    PubMed

    Stout, Jane G; Dasgupta, Nilanjana; Hunsinger, Matthew; McManus, Melissa A

    2011-02-01

    Three studies tested a stereotype inoculation model, which proposed that contact with same-sex experts (advanced peers, professionals, professors) in academic environments involving science, technology, engineering, and mathematics (STEM) enhances women's self-concept in STEM, attitudes toward STEM, and motivation to pursue STEM careers. Two cross-sectional controlled experiments and 1 longitudinal naturalistic study in a calculus class revealed that exposure to female STEM experts promoted positive implicit attitudes and stronger implicit identification with STEM (Studies 1-3), greater self-efficacy in STEM (Study 3), and more effort on STEM tests (Study 1). Studies 2 and 3 suggested that the benefit of seeing same-sex experts is driven by greater subjective identification and connectedness with these individuals, which in turn predicts enhanced self-efficacy, domain identification, and commitment to pursue STEM careers. Importantly, women's own self-concept benefited from contact with female experts even though negative stereotypes about their gender and STEM remained active. (PsycINFO Database Record (c) 2010 APA, all rights reserved).

  19. Case study of the science, engineering, mathematics, and aerospace academy: Participant and parental perceptions

    NASA Astrophysics Data System (ADS)

    Graves, Catherine

    The science, engineering, mathematics, and aerospace academy (SEMAA) is a federally-funded national out-of-school time (OST) science, technology, engineering, and mathematics (STEM) program that provides K-12 grade participants with hands-on activities and access to an aerospace education laboratory with the goals of increasing participants' engagement and interest in STEM and STEM careers. The SEMAA also provides support, resources, and training for SEMAA participants' parents through the Family Cafe. This multiple-case study investigated participants' and their parents' reasons for enrolling in the SEMAA and characterized the SEMAA in terms of its operations and infrastructure, instructors, learning environment, curriculum and instruction, and parental engagement. This study also assessed the role of the SEMAA in supporting participants' STEM college degree and career interests. Additionally, this study assessed the participants' attitudes towards science and science motivation factors. The findings of this study have implications for SEMAA and other OST STEM program providers related to: (a) recruitment and retention, (b) operations and infrastructure, (c) learning environments, (d) instructors, (e) curriculum and instruction, (f) parental engagement, and (g) OST STEM program outcomes.

  20. STEM, STEM Education, STEMmania

    ERIC Educational Resources Information Center

    Sanders, Mark

    2009-01-01

    In this article, the author introduces integrative STEM (science, technology, engineering, and/or mathematics) education and discusses the importance of the program. The notion of integrative STEM education includes approaches that explore teaching and learning between/among any two or more of the STEM subject areas, and/or between a STEM subject…

  1. Innovative educational modules for the next generation of transportation professionals.

    DOT National Transportation Integrated Search

    2012-07-01

    Basic science and mathematics competence, including awareness of engineering careers, gained in grades K12 forms the foundation of an educated, capable, and technical future transportation workforce. This project developed a series of educational ...

  2. 3 CFR 9018 - Proclamation 9018 of September 13, 2013. National Hispanic-Serving Institutions Week, 2013

    Code of Federal Regulations, 2014 CFR

    2014-01-01

    ..., knowledge-based economy, higher education helps build a skilled workforce and provides clear pathways to... passions. From the arts and humanities to education to science, technology, engineering, and mathematics...

  3. 2008 ESMD Space Grant Faculty Project

    NASA Technical Reports Server (NTRS)

    Murphy, Gloria; Conrad, James; Guo, Jiang; Lackey, Ellen; Lambright, Jonathan; Misra, Prabhakar; Prasad, Nadipuram; Radcliff, Roger; Selby, Gregory; Wersinger, Jean-Marie; hide

    2008-01-01

    Objectives of this project was to: Gather senior design project ideas and internship opportunities: Relative to space explorationnd In support of the ESMD Space Grant Student Project Support NASAs Educational Framework Outcome 1: Contribute to the development of the STEM workforce

  4. Place Based STEM: Leveraging Local Resources to Engage K-12 Teachers in Teaching Integrated STEM and for Addressing the Local STEM Pipeline

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Dr. Louis Nadelson; Anne Louise Seifert; Meagan McKinney

    Business, industry, parks, nature settings, government infrastructure, and people, can be invaluable resources for connecting STEM curriculum within context which results in conditions ideal for promoting purposeful learning of authentic STEM content. Thus, community-based STEM resources offer ideal context for teaching STEM content. A benefit of focusing teacher attention on these contextual, content aligned resources is that they are in every community; making place-based STEM education a possibility, regardless of the location of STEM teaching and learning. Further, associating STEM teaching and learning with local resources addresses workforce development and the STEM pipeline by exposing students to STEM careers andmore » applications in their local communities. The desire to align STEM teaching and learning with local STEM related resources guided the design of our week-long integrated STEM K-12 teacher professional development (PD) program, i-STEM. We have completed four years of our i-STEM PD program and have made place-based STEM a major emphasis of our curriculum. This report focuses on the data collected in the fourth year of our program. Our week-long i-STEM PD served over 425 educators last summer (2013), providing them with in depth theme-based integrated STEM short courses which were limited to an average of 15 participants and whole group plenary sessions focused around placed based integrated STEM, inquiry, engineering design, standards and practices of Common Core and 21st Century skills. This state wide PD was distributed in five Idaho community colleges and took place over two weeks. The STEM short courses included topics on engineering for sustainability, using engineering to spark interest in STEM, municipal water systems, health, agriculture, food safety, mining, forestry, energy, and others. Integral to these short courses were field trips designed to connect the K-12 educators to the resources in their local communities that could be leveraged for teaching integrated STEM and provide a relevant context for teaching STEM content. Workplace presentations made by place-based STEM experts and provided teachers field trips to place-base STEM industries and business such as manufacturing plants, waste water treatment systems, mines, nature parks, food processing plants, research, hospitals, and laboratory facilities. We researched the 425 participants’ conceptions of place-based STEM prior to and after their taking part in the summer institutes, which included fieldtrips. Our findings revealed substantial increase in our participants’ knowledge, interest, and plans to use place-based resources for teaching integrated STEM. We detail the data analysis and provide a theoretical foundation and justification for the importance of place-based STEM to address the STEM pipeline for the future workforce.« less

  5. Integrating STEM education through Project-Based Inquiry Learning (PIL) in topic space among year one pupils

    NASA Astrophysics Data System (ADS)

    Ng, Chee Hoe; Adnan, M.

    2018-01-01

    This research aims to investigate the effect of integrating STEM education through Project-based Inquiry Learning (PIL) and the users of the STEM modules which consists of five projects on topic Space in Year One Mathematics Syllabus in Kurikulum Standard Sekolah Rendah (KSSR) of Malaysia. STEM education in primary school focuses on the introduces and awareness of students about the importance of STEM education. The projects in STEM modules are covering the different ethnic cultures in Malaysia. The modules are designed using the four phases in PIL. Concepts and the explanation of STEM education on each project are emphasized and provided in the modules so the teachers able to carry out the projects by using the modules. By using the modules in primary Mathematics, the students and teachers will be more understanding on how to integrate the Mathematics’ concepts in STEM education.

  6. The Relationship between Students' Performance on Conventional Standardized Mathematics Assessments and Complex Mathematical Modeling Problems

    ERIC Educational Resources Information Center

    Kartal, Ozgul; Dunya, Beyza Aksu; Diefes-Dux, Heidi A.; Zawojewski, Judith S.

    2016-01-01

    Critical to many science, technology, engineering, and mathematics (STEM) career paths is mathematical modeling--specifically, the creation and adaptation of mathematical models to solve problems in complex settings. Conventional standardized measures of mathematics achievement are not structured to directly assess this type of mathematical…

  7. DOE Office of Scientific and Technical Information (OSTI.GOV)

    Kelic, Andjelka; Zagonel, Aldo A.

    A system dynamics model was developed in response to the apparent decline in STEM candidates in the United States and a pending shortage. The model explores the attractiveness of STEM and STEM careers focusing on employers and the workforce. Policies such as boosting STEM literacy, lifting the H-1B visa cap, limiting the offshoring of jobs, and maintaining training are explored as possible solutions. The system is complex, with many feedbacks and long time delays, so solutions that focus on a single point of the system are not effective and cannot solve the problem. A deeper understanding of parts of themore » system that have not been explored to date is necessary to find a workable solution.« less

  8. Unstable identity compatibility: how gender rejection sensitivity undermines the success of women in science, technology, engineering, and mathematics fields.

    PubMed

    Ahlqvist, Sheana; London, Bonita; Rosenthal, Lisa

    2013-09-01

    Although the perceived compatibility between one's gender and science, technology, engineering, and mathematics (STEM) identities (gender-STEM compatibility) has been linked to women's success in STEM fields, no work to date has examined how the stability of identity over time contributes to subjective and objective STEM success. In the present study, 146 undergraduate female STEM majors rated their gender-STEM compatibility weekly during their freshman spring semester. STEM women higher in gender rejection sensitivity, or gender RS, a social-cognitive measure assessing the tendency to perceive social-identity threat, experienced larger fluctuations in gender-STEM compatibility across their second semester of college. Fluctuations in compatibility predicted impaired outcomes the following school year, including lower STEM engagement and lower academic performance in STEM (but not non-STEM) classes, and significantly mediated the relationship between gender RS and STEM engagement and achievement in the 2nd year of college. The week-to-week changes in gender-STEM compatibility occurred in response to negative academic (but not social) experiences.

  9. The Development of the STEM Career Interest Survey (STEM-CIS)

    NASA Astrophysics Data System (ADS)

    Kier, Meredith W.; Blanchard, Margaret R.; Osborne, Jason W.; Albert, Jennifer L.

    2014-06-01

    Internationally, efforts to increase student interest in science, technology, engineering, and mathematics (STEM) careers have been on the rise. It is often the goal of such efforts that increased interest in STEM careers should stimulate economic growth and enhance innovation. Scientific and educational organizations recommend that efforts to interest students in STEM majors and careers begin at the middle school level, a time when students are developing their own interests and recognizing their academic strengths. These factors have led scholars to call for instruments that effectively measure interest in STEM classes and careers, particularly for middle school students. In response, we leveraged the social cognitive career theory to develop a survey with subscales in science, technology, engineering, and mathematics. In this manuscript, we detail the six stages of development of the STEM Career Interest Survey. To investigate the instrument's reliability and psychometric properties, we administered this 44-item survey to over 1,000 middle school students (grades 6-8) who primarily were in rural, high-poverty districts in the southeastern USA. Confirmatory factor analyses indicate that the STEM-CIS is a strong, single factor instrument and also has four strong, discipline-specific subscales, which allow for the science, technology, engineering, and mathematics subscales to be administered separately or in combination. This instrument should prove helpful in research, evaluation, and professional development to measure STEM career interest in secondary level students.

  10. Science, Technology, Engineering, and Mathematics (STEM) Participation among College Students with an Autism Spectrum Disorder

    ERIC Educational Resources Information Center

    Wei, Xin; Yu, Jennifer W.; Shattuck, Paul; McCracken, Mary; Blackorby, Jose

    2013-01-01

    Little research has examined the popular belief that individuals with an autism spectrum disorder (ASD) are more likely than the general population to gravitate toward science, technology, engineering, and mathematics (STEM) fields. This study analyzed data from the National Longitudinal Transition Study-2, a nationally representative sample of…

  11. Career Advancement Outcomes in Academic Science, Technology, Engineering and Mathematics (STEM): Gender, Mentoring Resources, and Homophily

    ERIC Educational Resources Information Center

    Lee, Sang Eun

    2017-01-01

    This dissertation examines gender differences in career advancement outcomes among academic science, technology, engineering and mathematics (STEM) scientists. In particular, this research examines effects of gender, PhD advisors and postdoctoral supervisors mentoring resources and gender homophily in the mentoring dyads on the career advancement…

  12. Speedometry: A Vehicle for Promoting Interest and Engagement through Integrated STEM Instruction

    ERIC Educational Resources Information Center

    Sinatra, Gale M.; Mukhopadhyay, Ananya; Allbright, Taylor N.; Marsh, Julie A.; Polikoff, Morgan S.

    2017-01-01

    The curriculum, Hot Wheels Speedometry (Mattel, El Segundo, CA, USA), was designed to align with the Next Generation Science Standards for science and the Common Core State Standards for mathematics. Our objective was to develop, implement, and evaluate the impact of this integrated science, technology, engineering, and mathematics (STEM)…

  13. Five Women in Science, Technology, Engineering, and Mathematics Majors: A Portraiture of Their Lived Experiences

    ERIC Educational Resources Information Center

    Torcivia, Patrice Prusko

    2012-01-01

    Numerous studies have addressed science, technology, engineering and mathematics (STEM) and their relation to education and gender ranging from elementary school pedagogy to career choices for traditional-aged college students. Little research has addressed nontraditional female students returning to the university to in the STEM fields. This…

  14. Qualified, but Not Choosing STEM at University: Unconscious Influences on Choice of Study

    ERIC Educational Resources Information Center

    Rodd, Melissa; Reiss, Michael; Mujtaba, Tamjid

    2014-01-01

    This article offers explanations as to why good candidates for mathematics or physics degrees might opt to study subjects other than STEM (science, technology, engineering, mathematics) subjects at university. Results come from analysis, informed by psychoanalytic theory and practice, of narrative-style interviews conducted with first-year…

  15. McNair Scholars' Science, Technology, Engineering, and Mathematics (STEM) Graduate Experience: A Pilot Study

    ERIC Educational Resources Information Center

    Bancroft, Senetta F.; Benson, Susan Kushner; Johnson-Whitt, Eugenia

    2016-01-01

    Nationally, racial and gender disparities persist in science, technology, engineering, and mathematics (STEM) disciplines. These disparities are most notable at the doctoral level and are also found in the doctoral outcomes of Ronald E. McNair Postbaccalaureate Achievement Program participants (Scholars) despite opportunities designed to promote…

  16. Diversifying Science, Technology, Engineering, and Mathematics (STEM): An Inquiry into Successful Approaches in Chemistry

    ERIC Educational Resources Information Center

    Wilson, Zakiya S.; McGuire, Saundra Y.; Limbach, Patrick A.; Doyle, Michael P.; Marzilli, Luigi G.; Warner, Isiah M.

    2014-01-01

    For many years, the U.S. has underutilized its human resources, as evidenced by the pervasive underrepresentation of several racial and ethnic groups within academia in general and the science, technology, engineering, and mathematics (STEM) disciplines, in particular. To address this underutilization, academic departments within U.S. universities…

  17. Technology to Advance High School and Undergraduate Students with Disabilities in Science, Technology, Engineering, and Mathematics

    ERIC Educational Resources Information Center

    Leddy, Mark H.

    2010-01-01

    Americans with disabilities are underemployed in science, technology, engineering and mathematics (STEM) at higher rates than their nondisabled peers. This article provides an overview of the National science Foundation's Research in Disabilities Education (RDE) program, of technology use by students with disabilities (SWD) in STEM, and of…

  18. AccessSTEM: Building Capacity to Include Students with Disabilities in Science, Technology, Engineering, and Mathematics Fields

    ERIC Educational Resources Information Center

    DO-IT, 2007

    2007-01-01

    A series of activities were undertaken to understand the underrepresentation and increase the participation of people with disabilities in science, technology, engineering, and mathematics (STEM) careers. These activities were funded by the Research in Disabilities Education (RDE) program of the National Science Foundation (NSF). They were…

  19. Participation in Science and Technology: Young People's Achievement-Related Choices in Late-Modern Societies

    ERIC Educational Resources Information Center

    Boe, Maria Vetleseter; Henriksen, Ellen Karoline; Lyons, Terry; Schreiner, Camilla

    2011-01-01

    Young people's participation in science, technology, engineering and mathematics (STEM) is a matter of international concern. Studies and careers that require physical sciences and advanced mathematics are most affected by the problem and women in particular are under-represented in many STEM fields. This article views international research about…

  20. Student Perceptions of a Summer Ventures in Science and Mathematics Camp Experience

    ERIC Educational Resources Information Center

    Binns, Ian C.; Polly, Drew; Conrad, James; Algozzine, Bob

    2016-01-01

    "As the world becomes increasingly technological, the value of (the ideas and skills of its population) will be determined in no small measure by the effectiveness of science, technology, engineering, and mathematics (STEM) education in the United States" and "STEM education will determine whether the United States will remain a…

  1. Science, Technology, Engineering, and Mathematics (STEM) Participation among College Students with an Autism Spectrum Disorder

    ERIC Educational Resources Information Center

    Wei, Xin; Christiano, Elizabeth R.; Yu, Jennifer W.; Blackorby, Jose; Shattuck, Paul; Newman, Lynn A.

    2014-01-01

    Little research has examined the popular belief that individuals with an autism spectrum disorder (ASD) are more likely than the general population to gravitate toward science, technology, engineering, and mathematics (STEM) fields. This study analyzed data from the National Longitudinal Transition Study-2, a nationally representative sample of…

  2. Using Learning Stories to Capture "Gifted" and "Hard Worker" Mindsets within a NYC Specialized High School for the Sciences

    ERIC Educational Resources Information Center

    Pride, Leah D.

    2014-01-01

    All science, technology, engineering, and mathematics (STEM) educators working in urban public school systems are expected to provide opportunities for students to develop foundational scientific literacy skills in mathematics and science learning. However, the demands on STEM educators teaching the "gifted" or…

  3. Examining the Relationships among Classroom Climate, Self-Efficacy, and Achievement in Undergraduate Mathematics: A Multi-Level Analysis

    ERIC Educational Resources Information Center

    Peters, Michelle L.

    2013-01-01

    For nearly 50 years, leaders in American industry, military, education, and politics have focused considerable attention on STEM (science, technology, engineering, and mathematics) education. Given the increased societal demand for STEM careers, the relationships among classroom climate, self-efficacy, and achievement in undergraduate mathematics…

  4. Inquiry Based-Computational Experiment, Acquisition of Threshold Concepts and Argumentation in Science and Mathematics Education

    ERIC Educational Resources Information Center

    Psycharis, Sarantos

    2016-01-01

    Computational experiment approach considers models as the fundamental instructional units of Inquiry Based Science and Mathematics Education (IBSE) and STEM Education, where the model take the place of the "classical" experimental set-up and simulation replaces the experiment. Argumentation in IBSE and STEM education is related to the…

  5. K-12 Bolsters Ties to Engineering

    ERIC Educational Resources Information Center

    Robelen, Erik W.

    2013-01-01

    When science, technology, engineering and mathematics (STEM) education is discussed in the K-12 sphere, it often seems like shorthand for mathematics and science, with perhaps a nod to technology and even less, if any, real attention to engineering. But recent developments signal that the "e" in STEM may be gaining a firmer foothold at…

  6. Undergraduate research projects help promote diversity in the geosciences

    USGS Publications Warehouse

    Young, De'Etra; Trimboli, Shannon; Toomey, Rick S.; Byl, Thomas D.

    2016-01-01

    A workforce that draws from all segments of society and mirrors the ethnic, racial, and gender diversity of the United States population is important. The geosciences (geology, hydrology, geospatial sciences, environmental sciences) continue to lag far behind other science, technology, engineering and mathematical (STEM) disciplines in recruiting and retaining minorities (Valsco and Valsco, 2010). A report published by the National Science Foundation in 2015, “Women, Minorities, and Persons with Disabilities in Science and Engineering” states that from 2002 to 2012, less than 2% of the geoscience degrees were awarded to African-American students. Data also show that as of 2012, approximately 30% of African-American Ph.D. graduates obtained a bachelor’s degree from a Historic Black College or University (HBCU), indicating that HBCUs are a great source of diverse students for the geosciences. This paper reviews how an informal partnership between Tennessee State University (a HBCU), the U.S. Geological Survey, and Mammoth Cave National Park engaged students in scientific research and increased the number of students pursuing employment or graduate degrees in the geosciences.

  7. Community Based Informatics: Geographical Information Systems, Remote Sensing and Ontology collaboration - A technical hands-on approach

    NASA Astrophysics Data System (ADS)

    Branch, B. D.; Raskin, R. G.; Rock, B.; Gagnon, M.; Lecompte, M. A.; Hayden, L. B.

    2009-12-01

    With the nation challenged to comply with Executive Order 12906 and its needs to augment the Science, Technology, Engineering and Mathematics (STEM) pipeline, applied focus on geosciences pipelines issue may be at risk. The Geosciences pipeline may require intentional K-12 standard course of study consideration in the form of project based, science based and evidenced based learning. Thus, the K-12 to geosciences to informatics pipeline may benefit from an earth science experience that utilizes a community based “learning by doing” approach. Terms such as Community GIS, Community Remotes Sensing, and Community Based Ontology development are termed Community Informatics. Here, approaches of interdisciplinary work to promote and earth science literacy are affordable, consisting of low cost equipment that renders GIS/remote sensing data processing skills necessary in the workforce. Hence, informal community ontology development may evolve or mature from a local community towards formal scientific community collaboration. Such consideration may become a means to engage educational policy towards earth science paradigms and needs, specifically linking synergy among Math, Computer Science, and Earth Science disciplines.

  8. Emerging Science and Research Opportunities for Metals and Metallic Nanostructures: A Report on the NSF MMN Workshop

    NASA Astrophysics Data System (ADS)

    Pollock, Tresa; Handwerker, Carol

    In the next decade, fundamental research in metals and metallic nanostructures (MMN) has the potential to continue to transform science into innovative materials, devices, and systems. This talk summarizes the findings of a workshop to identify emerging and potentially transformative research areas in MMN. The metals and metallic nanostructures (MMNs) workshop aimed to identify significant research trends, scientific fundamentals, and recent breakthroughs that can enable new or enhanced MMN performance, either alone or in a more complex materials system, for a wide range of applications. Additionally, the role that MMN research can play in high-priority research and development (R&D) areas such as the U.S. Materials Genome Initiative, the National Nanotechnology Initiative, the Advanced Manufacturing Initiative, and other similar initiatives that exist internationally was assessed. The workshop also addressed critical issues related to materials research instrumentation and the cyberinfrastructure for materials science research and education, as well as science, technology, engineering, and mathematics (STEM) workforce development, with emphasis on the United States but with an appreciation that similar challenges and opportunities for the materials community exist internationally.

  9. Technology-Supported Science Instruction through Integrated STEM Guitar Building: The Case for STEM and Non-STEM Instructor Success

    ERIC Educational Resources Information Center

    Hauze, Sean; French, Debbie

    2017-01-01

    With a national emphasis on integrated science, technology, engineering, and mathematics (STEM) education in K-16 courses, incorporating technology in a meaningful way is critical. This research examines whether STEM and non-STEM teachers were able to incorporate technology in STEM courses successfully with sufficient professional development. The…

  10. Highlighting Successful Strategies for Engaging Minority Students in the Geosciences

    NASA Astrophysics Data System (ADS)

    Liou-Mark, J.; Blake, R.; Norouzi, H.; Vladutescu, D. V.; Yuen-Lau, L.

    2017-12-01

    Igniting interest and creativity in students for the geosciences oftentimes require innovation, bold `outside-the-box' thinking, and perseverance, particularly for minority students for whom the preparation for the discipline and its lucrative pathways to the geoscience workforce are regrettably unfamiliar and woefully inadequate. The enrollment, retention, participation, and graduation rates of minority students in STEM generally and in the geosciences particularly remain dismally low. However, a coupled, strategic geoscience model initiative at the New York City College of Technology (City Tech) of the City University of New York has been making steady in-roads of progress, and it offers practical solutions to improve minority student engagement in the geosciences. Aided by funding from the National Science Foundation (NSF), two geoscience-centric programs were created from NSF REU and NSF IUSE grants, and these programs have been successfully implemented and administered at City Tech. This presentation shares the hybrid geoscience research initiatives, the multi-tiered mentoring structures, the transformative geoscience workforce preparation, and a plethora of other vital bastions of support that made the overall program successful. Minority undergraduate scholars of the program have either moved on to graduate school, to the geoscience workforce, or they persist with greater levels of success in their STEM disciplines.

  11. The Current Status of STEM Education Research

    ERIC Educational Resources Information Center

    Brown, Josh

    2012-01-01

    This paper explores the current Science, Technology, Engineering and Mathematics (STEM) education research base through an analysis of articles from eight journals focused on the STEM disciplines. Analyzed are both practitioner and research publications to determine the current scope of STEM education research, where current STEM education…

  12. Korean Students' Attitudes toward STEM Project-Based Learning and Major Selection

    ERIC Educational Resources Information Center

    Han, Sunyoung

    2017-01-01

    The trend of avoiding science, technology, engineering, and mathematics (STEM) majors has persisted resulting in a lack of professionals in STEM fields. Further, the current STEM education system in Korea does not meet domestic demands for STEM labor. To discover an educational approach encouraging students to choose STEM majors at the…

  13. Stemming on STEM: A STEM Education Framework for Students with Disabilities

    ERIC Educational Resources Information Center

    Hwang, Jiwon; Taylor, Jonte C.

    2016-01-01

    There has been increased attention paid to science, technology, engineering, and mathematics also known as STEM. The focus on STEM has been both educational and occupational. Unfortunately, students with disabilities perform below their peers without disabilities in math and science. The authors discuss issues related to STEM and students with…

  14. STEM Careers Are Out of This World--No Need to Fear Science, Technology, Engineering, or Math

    NASA Technical Reports Server (NTRS)

    Griffin, Amanda; Manning, Kelvin

    2012-01-01

    At NASA, we fully support the President's Educate to Innovate Program in the hopes that American students move from the middle of the pack to the top in the next decade; and that we are expanding STEM education and career opportunities for underrepresented groups, including minorities and females. The first goal we have implemented to help accomplish this is to Strengthen NASA and the Nation's future workforce - Many of you in the audience could be our potential workforce, and the co-op and intern program at NASA is helping students like you. The second goal is to Attract and retain students in STEM disciplines-To compete effectively for the minds, imaginations and career ambitions of young people like you, throughout NASA, we regularly send educators and NASA speakers into classrooms to work directly with you, encouraging you to follow in the footsteps of NASA engineers and scientists. The Third goal is to Engage Americans in NASA's mission- To get young people involved in NASA's mission, we have many exciting programs for college students like the Lunabotics Mining Competition and the Cubes Satellites sent to space

  15. Diversity: The business case for and benefits of

    NASA Astrophysics Data System (ADS)

    Jones, M. B.

    2013-05-01

    Many Federal Agencies have 'workforce development' programs that focus on preparing the next generation of scientists and engineers at the graduate and undergraduate level. Several of the science Agencies (e.g., NASA, NOAA, EPA, etc.), have programs that support students in many of the diverse disciplines that are unique to those Agency missions. While financial support certainly is critical to assist students in the STEM and other fields, professional development is just as important to equip students with a balanced arsenal of tactics to be successful professionals in the STEM workforce of today. Understanding perceptions and managing expectations are learnable skills that do not necessarily come with project funding. Finding life balance as one moves through a STEM career path poses unique challenges that require a certain skill set that is not always intuitive. Some of those challenges include: selecting grad or post doc positions (negotiating to a family's advantage); balancing work and family commitments; and dealing with employer/advisor perceptions and expectations. Since the scientific enterprise requires multiple perspectives to flourish (e.g., peer review), many of the above mentioned challenges require additional skill in negotiating interactions with individuals from a variety of backgrounds… with as many perspectives.

  16. Females and STEM: Determining the K-12 Experiences that Influenced Women to Pursue STEM Fields

    NASA Astrophysics Data System (ADS)

    Petersen, Anne Marie

    In the United States, careers in the fields of Science, Technology, Engineering, and Mathematics (STEM) are increasing yet there are not enough trained personnel to meet this demand. In addition, of those that seek to pursue STEM fields in the United States, only 26% are female. In order to increase the number of women seeking STEM based bachelor's degrees, K-12 education must provide a foundation that prepares students for entry into these fields. The purpose of this phenomenological study was to determine the perceived K-12 experiences that influenced females to pursue a STEM field. Twelve college juniors or seniors seeking a degree in Biology, Mathematics, or Physics were interviewed concerning their K-12 experiences. These interviews were analyzed and six themes emerged. Teacher passion and classroom characteristics such as incorporating challenging activities played a significant role in the females' decisions to enter STEM fields. Extra-curricular activities such as volunteer and mentor opportunities and the females' need to benefit others also influenced females in their career choice. Both the formal (within the school) and informal (outside of the traditional classroom) pipeline opportunities that these students encountered helped develop a sense of self-efficacy in science and mathematics; this self-efficacy enabled them to persist in pursuing these career fields. Several participants cited barriers that they encountered in K-12 education, but these barriers were primarily internal as they struggled with overcoming self-imposed obstacles in learning and being competitive in the mathematics and science classrooms. The experiences from these female students can be used by K-12 educators to prepare and encourage current female students to enter STEM occupations.

  17. Developing teaching process for enhancing students' mathematical problem solving in the 21st century through STEM education

    NASA Astrophysics Data System (ADS)

    Prawvichien, Sutthaporn; Siripun, Kulpatsorn; Yuenyong, Chokchai

    2018-01-01

    The STEM education could provide the context for students' learning in the 21st century. The Mathematical problem solving requires a context which simulates real life in order to give students experience of the power of mathematics in the world around them. This study aimed to develop the teaching process for enhancing students' mathematical problem solving in the 21st century through STEM education. The paper will clarify the STEM learning activities about graph theories regarding on the 6 steps of engineering design process. These include identify a challenge, exploring ideas, designing and planning, doing and developing, test and evaluate, and present the solution. The learning activities will start from the Identify a challenge stage which provides the northern part of Thailand flooding situation in order to set the students' tasks of develop the solutions of providing the routes of fastest moving people away from the flooding areas. The explore ideas stage will provide activities for enhance students to learn some knowledge based for designing the possible solutions. This knowledge based could focus on measuring, geometry, graph theory, and mathematical process. The design and plan stage will ask students to model the city based on the map and then provide the possible routes. The doing and development stage will ask students to develop the routes based on their possible model. The test and evaluating will ask students to clarify how to test and evaluate the possible routes, and then test it. The present solution stage will ask students to present the whole process of designing routes. Then, the paper will discuss how these learning activities could enhance students' mathematical problem solving. The paper may have implication for STEM education in school setting.

  18. Inclusive STEM High School Design: 10 Critical Components

    ERIC Educational Resources Information Center

    Peters-Burton, Erin E.; Lynch, Sharon J.; Behrend, Tara S.; Means, Barbara B.

    2014-01-01

    Historically, the mission of science, technology, engineering, and mathematics (STEM) schools emphasized providing gifted and talented students with advanced STEM coursework. However, a newer type of STEM school is emerging in the United States: inclusive STEM high schools (ISHSs). ISHSs have open enrollment and are focused on preparing…

  19. Expanding STEM Opportunities through Inclusive STEM-Focused High Schools

    ERIC Educational Resources Information Center

    Means, Barbara; Wang, Haiwen; Wei, Xin; Lynch, Sharon; Peters, Vanessa; Young, Viki; Allen, Carrie

    2017-01-01

    Inclusive STEM high schools (ISHSs) (where STEM is science, technology, engineering, and mathematics) admit students on the basis of interest rather than competitive examination. This study examines the central assumption behind these schools--that they provide students from subgroups underrepresented in STEM with experiences that equip them…

  20. Students' Preconceptions and Perceptions of Science-Oriented Studies

    ERIC Educational Resources Information Center

    Korpershoek, Hanke; Kuyper, Hans; Bosker, Roel; van der Werf, Greetje

    2013-01-01

    Do non-science, technology, engineering, and mathematics (STEM) students' views about STEM studies correspond with how STEM students actually perceive these studies? This paper deals with this issue by comparing higher education students' attitudes towards STEM studies between those who actually did a STEM study and those who did not. The…

  1. KUSPACE: Embedding Science Technology and Mathematics Ambassador Activities in the Undergradiuate Engineering Curriculum

    NASA Astrophysics Data System (ADS)

    Welch, C.; Osborne, B.

    The UK national STEM Ambassadors programme provides inspiring role models for school students in science, technology, engineering, mathematics (STEM) subjects. STEMNET, the national body responsible for STEM Ambassa- dors aims to provide more than 27,000 STEM Ambassadors nationwide by the end of 2011. This paper reports on a project at Kingston University to embed STEM Ambassador training and activity in Year 2 of the undergraduate Aerospace Engineering, Astronautics and Space Technology degree. The project, known as KUSPACE (Kingston University Students Providing Amazing Classroom Experiences), was conceived to develop students' communication, planning and presentation skills and build links between different cohort years, while providing a valuable contribution to local primary schools' STEM programmes and simultaneously raising the public engagement profile of the university. This paper describes the pedagogical conception of the KUSPACE, its implementation in the curriculum, the delivery of it in the university and schools and its effect on the undergraduate students, as well as identifying good practice and drawing attention to lessons learned.STEMNET (www.stemnet.org) is the UK's Science, Technol- ogy, Engineering and Mathematics Network. Working with a broad range of UK partners and funded by the UK govern- ment's Department for Business Innovation and Skills, STEMNET plays a significant role in ensuring that five to nineteen year olds and their teachers can experience a wide range of activities and schemes which enhance and enrich the school curriculum [1]. Covering all aspects of Science, Tech- nology, Engineering and Maths (STEM), these activities and schemes are designed both to increase STEM awareness and literacy in the young people and also to encourage more of them to undertake post-16 STEM qualifications and associated careers [2]. STEMNET operates through forty-five local con- tract holders around the UK which help the network deliver its programmes to schools and organisations in their particular areas, mainly through the STEM Ambassador Programme (see below) and the Schools STEM Advisory Network.In support of its vision - `To increase young people's choice and chances through science, technology, engineering, and mathematics ' - STEMNET seeks to be a recognised leader in enabling all young people to achieve their potential in STEM by:

  2. Threading Mathematics through Symbols, Sketches, Software, Silicon, and Wood: Teachers Produce and Maintain Cohesion to Support STEM Integration

    ERIC Educational Resources Information Center

    Nathan, Mitchell J.; Wolfgram, Matthew; Srisurichan, Rachaya; Walkington, Candace; Alibali, Martha W.

    2017-01-01

    This classroom-based investigation sought to document how, in real time, STEM teachers and students attempt to locate the invariant mathematical relations that are threaded through the range of activities and representations in these classes, and how highlighting this common thread influences student participation and learning. The authors…

  3. Mathematics and Science Teachers Professional Development with Local Businesses to Introduce Middle and High School Students to Opportunities in STEM Careers

    ERIC Educational Resources Information Center

    Miles, Rhea; Slagter van Tryon, Patricia J.; Mensah, Felicia Moore

    2015-01-01

    TechMath is a professional development program that forms collaborations among businesses, colleges, and schools for the purpose of promoting Science, Technology, Engineering, and Mathematics (STEM) careers. TechMath has provided strategies for creating highquality professional development by bringing together teachers, students, and business…

  4. Australian Enrolment Trends in Technology and Engineering: Putting the T and E Back into School STEM

    ERIC Educational Resources Information Center

    Kennedy, JohnPaul; Quinn, Frances; Lyons, Terry

    2018-01-01

    There has been much political and educational focus on Science, Technology, Engineering and Mathematics (STEM) in Australian schools in recent years and while there has been significant research examining science and mathematics enrolments in senior high school, little is known about the corresponding trends in Technologies and engineering.…

  5. Women's Leadership in Science, Technology, Engineering and Mathematics: Barriers to Participation

    ERIC Educational Resources Information Center

    McCullough, Laura

    2011-01-01

    Despite gains overall, women are still under-represented in leadership positions in science, technology, engineering, and mathematics (STEM) fields. Data in the US suggest around one-quarter of deans and department heads are women; in science this drops to nearly 1 in 20. Part of this problem of under-representation stems from the population pool:…

  6. Catalysts of Women's Talent Development in STEM: A Systematic Review

    ERIC Educational Resources Information Center

    Mullet, Dianna R.; Rinn, Anne N.; Kettler, Todd

    2017-01-01

    Numbers of women in the physical sciences, mathematics, and engineering are growing, yet women are still far outnumbered by men at upper levels of those fields. The purpose of the study is to review the literature on academic women who develop exceptional talent in science, technology, engineering, and mathematics (STEM). Data sources included 18…

  7. Exploration of the Alignment of State Data and Infrastructure to Mathematics and Science Success Indicators

    ERIC Educational Resources Information Center

    Mandinach, Ellen B.; Hauk, Shandy

    2017-01-01

    A range of education initiatives in the U.S. are focusing on ways to improve curriculum, instruction, teacher development, and student assessment related to science, technology, engineering, and mathematics (STEM) education. Key indicators to monitor the quality of STEM education have been proposed by the National Research Council. This paper is…

  8. STEM Development: A Study of 6th-12th Grade Girls' Interest and Confidence in Mathematics and Science

    ERIC Educational Resources Information Center

    Heaverlo, Carol Ann

    2011-01-01

    Researchers, policymakers, business, and industry have indicated that the United States will experience a shortage of professionals in the Science, Technology, Engineering, and Mathematics (STEM) fields. Several strategies have been suggested to address this shortage, one of which includes increasing the representation of girls and women in the…

  9. Gendered Patterns in High Achievement in Mathematics for Grades 4, 6, and 8

    ERIC Educational Resources Information Center

    Falvey, Laura J.

    2012-01-01

    The issue of underrepresentation of women in science, technology, engineering, and mathematics (STEM) careers is especially important to the future of the United States in current times when STEM careers play an increasingly important role in the global economy (Toulmin & Groome, 2007; United States Department of Labor, 2007). The pool of…

  10. STEM Learning Research through a Funds of Knowledge Lens

    ERIC Educational Resources Information Center

    Civil, Marta

    2016-01-01

    This article examines STEM learning as a cultural process with a focus on non-dominant communities. Building on my work in funds of knowledge and mathematics education, I present three vignettes to raise some questions around connections between in-school and out-of-school mathematics. How do we define competence? How do task and environment…

  11. Missing the Mark: Students Gain Little from Mandating Extra Math and Science Courses. ACT Policy Brief

    ERIC Educational Resources Information Center

    Buddin, Richard; Croft, Michelle

    2014-01-01

    For several decades, policymakers have embraced the goal of preparing students for college and careers, particularly for careers in the area of mathematics and science. The recent emphasis on these STEM (science, technology, engineering, and mathematics) subjects is due to the growth of STEM occupations and the perceived shortage of qualified…

  12. Assessment of Creativity in Arts and STEM Integrated Pedagogy by Pre-Service Elementary Teachers

    ERIC Educational Resources Information Center

    Tillman, Daniel A.; An, Song A.; Boren, Rachel L.

    2015-01-01

    In education, mathematics and science are often taught in a manner that lacks opportunities for students to engage in creativity, and the arts are allotted less time with fewer resources. This study focused on integrating STEM (science, technology, engineering, and mathematics) lessons with arts-themed activities to create interdisciplinary STEAM…

  13. Community, Inquiry, Leadership: Exploring Early Career Opportunities That Support STEM Teacher Growth and Sustainability

    ERIC Educational Resources Information Center

    Galosy, Jodie A.; Gillespie, Nicole M.

    2013-01-01

    Much has been written about the need for high-quality science, technology, engineering, and mathematics (STEM) teachers and their role in U.S. educational reform. In this article we provide evidence that beginning science and mathematics teachers need a blend of three mutually reinforcing learning opportunities for growth and sustainability:…

  14. Middle School Engagement with Mathematics Software and Later Interest and Self-Efficacy for STEM Careers

    ERIC Educational Resources Information Center

    Ocumpaugh, Jaclyn; San Pedro, Maria Ofelia; Lai, Huei-yi; Baker, Ryan S.; Borgen, Fred

    2016-01-01

    Research suggests that trajectories toward careers in science, technology, engineering, and mathematics (STEM) emerge early and are influenced by multiple factors. This paper presents a longitudinal study, which uses data from 76 high school students to explore how a student's vocational self-efficacy and interest are related to his or her middle…

  15. Increasing Access of Female Students in Science Technology, Engineering and Mathematics (STEM), in the University of Malawi (UNIMA)

    ERIC Educational Resources Information Center

    Mbano, Nellie; Nolan, Kathleen

    2017-01-01

    In Malawi, in spite of a number of gender equity policies and initiatives that encourage females to pursue careers within the fields of science, technology, engineering, and mathematics (STEM), research indicates that they are under-represented in these fields. One initiative recommended to address the factors contributing to this…

  16. Listening to their voices: Exploring mathematics-science identity development of African American males in an urban school community

    NASA Astrophysics Data System (ADS)

    Wilson, Kimi Leemar

    National data continues to show an underrepresentation of African American males pursuing science, technology, engineering and mathematics (STEM) majors, careers and professions in the United States. Whites and Asian Americans are continuously positioned as the face of STEM education and participation. And while research has provided ways to support mathematics and science learning for African American males, there still remains a gap in understanding how their formed mathematics-science identities in K-12 public schooling influences STEM participation. The research undertaken in this study explores this gap, and uses an integrative identity framework to understand mathematics-science identity development which goes beyond personal identity, and explores the relational, collective and material components of identity. Specifically, this research seeks to answer the following research questions: What are the shared lived experiences that exist between a group of African American male students developing a mathematics-science identity, and how these shared lived experiences shape their mathematics-science identity development? Therefore, by analyzing African American males lived experiences employing an integrative identity framework fosters a greater understanding of how mathematics-science identity is formed in K-12 public schools, which impacts STEM education and participation. The high school aged youth featured in this study consist of four African American males, who live in a moderate size city in California. Data for this study consists of observations, phenomenological interviews, and policy document analysis that took place over six months. Data has been analyzed to describe and interpret the young men's mathematics and science experiences, as revealed in their K-12 public school education. This inquiry sought to make meaning of how African American males experience mathematics and science teaching and learning within K-12 public schooling and how these experiences impact mathematics-science identity development. The goal of the study seeks to inform educational, psychological and sociological theory about how urban adolescent African American males understand, develop and make use of their mathematics and science knowledge. Finally, this work seeks to inform mathematics and science educational research to include identity theory, beyond a personal or individual identity perspective, but also to include relational, collective, and material identity components to understand how the culture of mathematics and science within and outside of K-12 public schooling impacts African American males in an endeavor to become learners of mathematics and science.

  17. Mathematical Modelling at Secondary School: The MACSI-Clongowes Wood College Experience

    ERIC Educational Resources Information Center

    Charpin, J. P. F.; O'Hara, S.; Mackey, D.

    2013-01-01

    In Ireland, to encourage the study of STEM (science, technology, engineering and mathematics) subjects and particularly mathematics, the Mathematics Applications Consortium for Science and Industry (MACSI) and Clongowes Wood College (County Kildare, Ireland) organized a mathematical modelling workshop for senior cycle secondary school students.…

  18. EPA at the National Science Teachers Association STEM Forum

    EPA Pesticide Factsheets

    EPA staff will be sharing educational resources, materials, information and STEM (Science, Technology, Engineering, and Mathematics) hands-on activities at the National Science Teachers Association's STEM Forum in Philadelphia, PA

  19. Building the biomedical data science workforce.

    PubMed

    Dunn, Michelle C; Bourne, Philip E

    2017-07-01

    This article describes efforts at the National Institutes of Health (NIH) from 2013 to 2016 to train a national workforce in biomedical data science. We provide an analysis of the Big Data to Knowledge (BD2K) training program strengths and weaknesses with an eye toward future directions aimed at any funder and potential funding recipient worldwide. The focus is on extramurally funded programs that have a national or international impact rather than the training of NIH staff, which was addressed by the NIH's internal Data Science Workforce Development Center. From its inception, the major goal of BD2K was to narrow the gap between needed and existing biomedical data science skills. As biomedical research increasingly relies on computational, mathematical, and statistical thinking, supporting the training and education of the workforce of tomorrow requires new emphases on analytical skills. From 2013 to 2016, BD2K jump-started training in this area for all levels, from graduate students to senior researchers.

  20. Building the biomedical data science workforce

    PubMed Central

    Dunn, Michelle C.; Bourne, Philip E.

    2017-01-01

    This article describes efforts at the National Institutes of Health (NIH) from 2013 to 2016 to train a national workforce in biomedical data science. We provide an analysis of the Big Data to Knowledge (BD2K) training program strengths and weaknesses with an eye toward future directions aimed at any funder and potential funding recipient worldwide. The focus is on extramurally funded programs that have a national or international impact rather than the training of NIH staff, which was addressed by the NIH’s internal Data Science Workforce Development Center. From its inception, the major goal of BD2K was to narrow the gap between needed and existing biomedical data science skills. As biomedical research increasingly relies on computational, mathematical, and statistical thinking, supporting the training and education of the workforce of tomorrow requires new emphases on analytical skills. From 2013 to 2016, BD2K jump-started training in this area for all levels, from graduate students to senior researchers. PMID:28715407

  1. Training and Mentoring the Next Generation of Scientists and Engineers to Secure Continuity and Successes of the US DOE's Environmental Remediation Efforts - 13387

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Lagos, L.

    The DOE Office of Environmental Management (DOE-EM) oversees one of the largest and most technically challenging cleanup programs in the world. The mission of DOE-EM is to complete the safe cleanup of the environmental legacy from five decades of nuclear weapons development and government-sponsored nuclear energy research. Since 1995, Florida International University's Applied Research Center (FIU-ARC) has supported the DOE-EM mission and provided unique research capabilities to address some of these highly technical and difficult challenges. This partnership has allowed FIU-ARC to create a unique infrastructure that is critical for the training and mentoring of science, technology, engineering, and mathmore » (STEM) students and has exposed many STEM students to 'hands-on' DOE-EM applied research, supervised by the scientists and engineers at ARC. As a result of this successful partnership between DOE and FIU, DOE requested FIU-ARC to create the DOE-FIU Science and Technology Workforce Development Initiative in 2007. This innovative program was established to create a 'pipeline' of minority STEM students trained and mentored to enter DOE's environmental cleanup workforce. The program was designed to help address DOE's future workforce needs by partnering with academic, government and private companies (DOE contractors) to mentor future minority scientists and engineers in the research, development, and deployment of new technologies and processes addressing DOE's environmental cleanup challenges. Since its inception in 2007, the program has trained and mentored 78 FIU STEM minority students. Although, the program has been in existence for only five years, a total of 75 internships have been conducted at DOE National Laboratories, DOE sites, DOE Headquarters and field offices, and DOE contractors. Over 85 DOE Fellows have participated in the Waste Management Symposia since 2008 with a total of 68 student posters and 7 oral presentations given at WM. The DOE Fellows participation at WM has resulted in three Best Student Poster Awards (WM09, WM10, and WM11) and one Best Professional Poster Award (WM09). DOE Fellows have also presented their research at ANS DD and R and ANS Robotics Topical meetings. Moreover, several of our DOE Fellows have already obtained employment with DOE-EM, other federal agencies, DOE contractors. This paper will discuss how DOE Fellows program is training and mentoring FIU STEM students in Department of Energy's Office of Environmental Management technical challenges and research. This training and mentoring has resulted in the development of well trained and polished young scientists and engineers that will become the future workforce in charge of carrying on DOE-EM's environmental cleanup mission. The paper will showcase FIU's DOE Fellows model and highlight some of the applied research the DOE Fellows have conducted at FIU's Applied Research Center and across the Complex by participating in summer internship assignments. This paper will also present and highlight other Fellowships and internships programs sponsored by National Nuclear Security Agency (NNSA), DOE-EM, NRC, Energy (NE), and other federal agencies targeting workforce development. (authors)« less

  2. Assessing the impact of Native American elders as co-educators for university students in STEM

    NASA Astrophysics Data System (ADS)

    Alkholy, Sarah Omar

    Introduction: Minorities are underrepresented in the science, technology, engineering, and mathematics (STEM) workforce, post-secondary STEM education, and show high academic attrition rates. Academic performance and retention improve when culturally relevant support is provided. The interface of Western Science and Indigenous Science provides an opportunity for bridging this divide. This three parts project is an example of Community-based participatory research (CBPR) that aims to support academic institutions that serve minority students in STEM, and implement educational components (pedagogy) to serve the needs of the underserved community. Method: Part 1: was a cross-sectional used a survey given to participants designed to assess prevalence of natural health products use by students, and to determine how students learn about NHPs. Part 2: was a longitudinal survey pilot study based upon an online STEM course offer at four universities to determine the differences between U.S. vs. Canadian and minority vs. non-minority university students regarding their perceptions of traditional Elders as STEM co-educators, interest in STEM, and science identity by using a pre-and post- course survey. Part 3: was a longitudinal quasi-experiment based upon an online STEM course offered at four universities show what Indigenous science claims regarding: Elders are viewed as valuable STEM co-educators; Elders increase student interest in STEM; students exposed to Indigenous science improve their identity as a scientist; students exposed to Indigenous Science/Elders show improved learning outcomes. Result: We found that Native/Aboriginal students learn information about natural health products from traditional Elders significantly more so than non-Native/Aboriginal students. There were no statistically significant results from the pilot study. Findings from the quasi-experiment show that students taught with Indigenous science Elder co-educators have significantly greater interest in STEM than students not exposed to Elders' teachings. Minority students reported significantly less self-identification as a scientist than did White students at pre-course, but report similar identity as a scientist to White students post-course. Discussion: Future work should investigate the role of Elder traditional educators to convey NHPs information directed specifically to Aboriginal university students. We expect that Elder co-educators may then impact student science identity and interest in STEM. We expect that Elder co-educators may then impact student science identity and interest in STEM. Although there were no statistically significant results from the pilot study, the observed trends suggest that Indigenous science Elder educators merit involvement in novel pedagogical approaches and delivery modalities to reach minority students and to increase students' interest in STEM. From quasi-experiment we attribute these findings to the impact of culturally competent course content to minority students especially, in a post-secondary STEM class. This work establishes the need for convergence of Indigenous science and Western STEM in academia.

  3. Workforce Retention Study in Support of the U.S. Army Aberdeen Test Center Human Capital Management Strategy

    DTIC Science & Technology

    2016-09-01

    Sciences Group 6% 1550s Computer Scientists Group 5% Other 1500s ORSAa, Mathematics, & Statistics Group 3% 1600s Equipment & Facilities Group 4...Employee removal based on misconduct, delinquency , suitability, unsatisfactory performance, or failure to qualify for conversion to a career appointment...average of 10.4% in many areas, but over double the average for the 1550s (Computer Scientists) and other 1500s (ORSA, Mathematics, and Statistics ). Also

  4. Making the Case for GeoSTEM Education

    NASA Astrophysics Data System (ADS)

    Moore, John

    2014-05-01

    As the national Science-Technology-Engineering-Mathematics (STEM) education policy makers in the United States work through reports, findings, forums, workshops, etc., there emerges an opportunity to present the strong case of why and how the role of the Geosciences community can and should be at the forefront of these discussions. Currently existing within the Geosciences scientific and educational community are policies, frameworks, guidance, innovative technology, and unique interdisciplinary Earth System data sets that will establish a pathway to the role of the Geosciences in the classroom, in the 21st Century workforce, and in society. The question may be raised, "Why GeoSTEM?" But the real question should be … "Why not?" Over the past several years the Geosciences have dominated the news cycle in the United States. As we face future natural and human generated hazards and disasters such as the Gulf Oil Spill, not to mention issues confronting society such as Climate Change, Sustainability and Energy, the Geosciences have a critical role in the public awareness, safety, and national security of our nation. In the past year we have experienced volcanic eruptions, earth¬quakes, tsunamis, hurricanes, tornadoes, wildfires, severe drought and flooding, outbreaks of severe weather. Planet Earth will be monitored, observed, and studied as an Earth System, in real or near real time. Policy-makers, decision-makers, scientists, teachers, students, and citizens will not only participate in the process, but come to use such information and data routinely in their daily lives. 3-D data visualizations, virtual field trips, and interactive imagery from space all will contribute to the doing of real science in real time. Policy-Makers have linked Science, Technology, Engineering, and Mathematics (STEM) Education to United States' future economy and national security. The GeoSTEM community can deliver added value through leveraging current and future Geoscience-related resources that monitor our planet and protect the life and property of our citizens. The integration of a Geoscience and Remote Sensing Laboratory into an existing Earth Science program or a new Earth Systems Science course allows students to acquire the necessary rigorous laboratory skills as required by colleges or universities, while developing and becoming proficient in technological skills using industry standard analysis tools. With the accessibility of real-time or near real time data, students in a GeoSTEM driven course can engage in inquiry-based laboratory experiences focusing on real life applications, both local and global. Developing pathways between geoscientists, researchers, teachers, and students, will create an exchange of information, data, observations, and measurements that will lead to authentic science investigations through the monitoring of weather, water quality, sea surface temperature, coral reefs, marine wildlife, earthquakes, tsunamis, wildfires, air quality, land cover, and much more. Satellite, remote sensing, and geospatial technologies can introduce students and society to data that can inform policy makers and society both now and in the future.

  5. STEM Gives Meaning to Mathematics

    ERIC Educational Resources Information Center

    Hefty, Lukas J.

    2015-01-01

    The National Council of Teachers of Mathematics' (NCTM's) "Principles and Standards for School Mathematics" (2000) outlines fi ve Process Standards that are essential for developing deep understanding of mathematics: (1) Problem Solving; (2) Reasoning and Proof; (3) Communication; (4) Connections; and (5) Representation. The Common Core…

  6. Using Aviation to Change Math Attitudes

    ERIC Educational Resources Information Center

    Wood, Jerra

    2013-01-01

    Mathematics teachers are constantly looking for real-world applications of mathematics. Aerospace education provides an incredible context for teaching and learning important STEM concepts, inspiring young people to pursue careers in science, technology, engineering, and mathematics. Teaching mathematics within the context of aerospace generates…

  7. Motivational Pathways to STEM Career Choices: Using Expectancy-Value Perspective to Understand Individual and Gender Differences in STEM Fields.

    PubMed

    Wang, Ming-Te; Degol, Jessica

    2013-12-01

    The United States has made a significant effort and investment in STEM education, yet the size and the composition of the STEM workforce continues to fail to meet demand. It is thus important to understand the barriers and factors that influence individual educational and career choices. In this article, we conduct a literature review of the current knowledge surrounding individual and gender differences in STEM educational and career choices, using expectancy-value theory as a guiding framework. The overarching goal of this paper is to provide both a well-defined theoretical framework and complementary empirical evidence for linking specific sociocultural, contextual, biological, and psychological factors to individual and gender differences in STEM interests and choices. Knowledge gained through this review will eventually guide future research and interventions designed to enhance individual motivation and capacity to pursue STEM careers, particularly for females who are interested in STEM but may be constrained by misinformation or stereotypes.

  8. Motivational Pathways to STEM Career Choices: Using Expectancy-Value Perspective to Understand Individual and Gender Differences in STEM Fields

    PubMed Central

    Wang, Ming-Te; Degol, Jessica

    2013-01-01

    The United States has made a significant effort and investment in STEM education, yet the size and the composition of the STEM workforce continues to fail to meet demand. It is thus important to understand the barriers and factors that influence individual educational and career choices. In this article, we conduct a literature review of the current knowledge surrounding individual and gender differences in STEM educational and career choices, using expectancy-value theory as a guiding framework. The overarching goal of this paper is to provide both a well-defined theoretical framework and complementary empirical evidence for linking specific sociocultural, contextual, biological, and psychological factors to individual and gender differences in STEM interests and choices. Knowledge gained through this review will eventually guide future research and interventions designed to enhance individual motivation and capacity to pursue STEM careers, particularly for females who are interested in STEM but may be constrained by misinformation or stereotypes. PMID:24298199

  9. The National Ocean Sciences Bowl: An Effective Model for Engaging High School Students in Ocean Science

    NASA Astrophysics Data System (ADS)

    Holloway, A. E.

    2016-02-01

    The National Ocean Sciences Bowl (NOSB) is an informal high school education program that engages students in ocean and environmental science and exposes them to the breadth of ocean-related careers. The NOSB strives to train the next generation of interdisciplinary capable scientists and build a STEM-literate society that harnesses the power of ocean and climate science to address environmental, economic, and societal issues. Through the NOSB, students not only learn scientific principles, but also apply them to compelling real-world problems. The NOSB provides a richer STEM education and exposes students to ocean science topics they may not otherwise study through classroom curriculum. A longitudinal study that began in 2007 has shown that NOSB participants have an enhanced interest in ocean-related hobbies and environmental stewardship and an increasing number of these students have remained in the STEM pipeline and workforce.While the NOSB is primarily an academic competition, it has evolved since its creation in 1998 to include a variety of practical and professional development components. One of the program enhancements, the Scientific Expert Briefing (SEB), gives students the opportunity to apply what they have studied and think critically about current and ongoing ocean science challenges. The SEB helps students connect their knowledge of ocean science with current and proposed policy initiatives. Students gain significant research, writing, and presentation skills, while enhancing their ability for collaboration and consensus building, all vital workforce skills. Ultimately, the SEB teaches students how to communicate complex scientific research into digestible information for decision-makers and the general public.This poster will examine the impact of the NOSB and its role in strengthening the workforce pipeline through a combination of independent learning, competition, and opportunities for communication skills development.

  10. Strategies for Success of Women Faculty in Science: The ADVANCE Program at the University of Rhode Island

    NASA Astrophysics Data System (ADS)

    Wishner, K.; Silver, B.; Boudreaux-Bartels, F.; Harlow, L.; Knickle, H.; Mederer, H.; Peckham, J.; Roheim, C.; Trubatch, J.; Webster, K.

    2004-12-01

    The NSF-funded ADVANCE program seeks to increase the recruitment and retention of women faculty in science, technology, engineering, and mathematics (STEM) disciplines as part of a national goal of creating a broad-based scientific workforce able to effectively address societal demands. The University of Rhode Island, a recipient of an Institutional Transformation ADVANCE grant in 2003, has begun a campus-wide initiative. The 5 goals are (1) to increase the numbers of women STEM faculty, (2) to provide faculty development opportunities, (3) to improve networks of professional and social support, (4) to assess the academic work environment for all faculty, and (5) to implement long-term changes throughout the university that promote a supportive work environment for women STEM faculty. Accomplishments during the first year include (1) hiring several ADVANCE Assistant Professors, (2) developing workshops on critical skills for junior faculty (grant writing, negotiations, mentoring), (3) initiating a series of lunch meetings where pertinent topical and work-family issues are discussed informally, (4) awarding small Incentive grants for research and other projects that enhance the careers of women STEM faculty, (5) developing and modifying university policies on family leave and dual career couple recruitment, (6) developing and implementing quantitative and qualitative assessment tools for baseline and ongoing campus-wide work climate surveys within the context of a theoretical model for change, and (7) offering directed self-study workshops for entire departments using a trained facilitator. The ADVANCE Assistant Professor position, unique to URI's program, allows a new hire to spend the first 2-3 years developing a research program without teaching obligations. ADVANCE pays their salary during this time, at which point they transition to a regular faculty position. During this first of five years of NSF funding, the ADVANCE program has been met with campus wide enthusiasm and interest from both faculty and administration. Further, the program has the potential for invigorating not only STEM departments, but also the wider university, in offering innovative and engaging workshops and policies, as well as providing an opportunity for ongoing self-study through bi-annual surveys across the university.

  11. Caminos a la Ciencia: Recruiting and Retaining Latina High School Students in the Geosciences and Other STEM Disciplines through Cohort Learning

    NASA Astrophysics Data System (ADS)

    Michelsen, R. R. H.; Dominguez, R.; Marchetti, A. H.

    2017-12-01

    The Commonwealth of Virginia has a significant and growing Latinx population, however this population is underrepresented in the Science, Technology, Engineering, and Mathematics (STEM) workforce. Hispanic American participation in STEM degrees is low, making up only 4.5% of all Geoscience Bachelor's degrees in 2008. This student population faces challenges including a high poverty rate, lack of family members or mentors who have attended college, and lack of placement in or availability of advanced high school science and math courses. Latina girls face additional challenges such as family responsibilities and overcoming stereotypes about science and math abilities. We have developed a program that is designed to recruit Latina high schoolers, expose them to and engage them in STEM disciplines, and facilitate their matriculation into college. There are two components: a multi-year, week-long summer residential program at Randolph-Macon College (RMC), where the participants live and work together, and special events at our partners during the school year. The residential program consists of science and technology activities with RMC faculty, such as field work focusing on hydrology and space science laboratories. Students also travel to non-profit partners such as the Lewis Ginter Botanical Gardens and connect with Latinx scientists and engineers at local corporate partners such as WestRock, a paper/cardboard packaging company. The girls will return next summer for more in-depth research experiences and receive a college scholarship upon their completion of the program. During the school year, there will be monthly activities at our non-profit partners to keep the girls engaged and strengthen relationships in the cohort. Strengths of our program include 1) attention to engaging high schoolers' families with targeted programming for them on campus the first day of the program, 2) providing all materials in Spanish as well as English, and 3) a team consisting of academic, non-profit, and Fortune-500 corporate stakeholders. Here we report the successes of the first summer program as well as the attitudes of the participants towards STEM before and after the program.

  12. The Relationship between Self-Efficacy and Advanced STEM Coursework in Female Secondary Students

    ERIC Educational Resources Information Center

    Bernasconi, Bethany

    2017-01-01

    Despite years of attention, gender inequity persists in science, technology, engineering, and mathematics (STEM). Female STEM faculty, positive social interactions, and enrollment in advanced STEM secondary coursework are supportive factors in promoting female students' persistence in STEM fields. To address the gap in understanding these factors,…

  13. Confronting Color-Blind STEM Talent Development: Toward a Contextual Model for Black Student STEM Identity

    ERIC Educational Resources Information Center

    Collins, Kristina Henry

    2018-01-01

    What is Black student's science, technology, engineering, and mathematics (STEM) identity? The author addresses this question through a synthesis of the literature that includes studies that explore Black student identity. Background information regarding STEM achievement and persistence followed by empirical studies that explore STEM attitudes…

  14. Characterizing STEM Teacher Education: Affordances and Constraints of Explicit STEM Preparation for Elementary Teachers

    ERIC Educational Resources Information Center

    Rinke, Carol R.; Gladstone-Brown, Wendy; Kinlaw, C. Ryan; Cappiello, Jean

    2016-01-01

    Although science, technology, engineering, and mathematics (STEM) education sits at the center of a national conversation, comparatively little attention has been given to growing need for STEM teacher preparation, particularly at the elementary level. This study analyzes the outcomes of a novel, preservice STEM teacher education model. Building…

  15. Changes in Science Teachers' Conceptions and Connections of STEM Concepts and Earthquake Engineering

    ERIC Educational Resources Information Center

    Cavlazoglu, Baki; Stuessy, Carol

    2017-01-01

    The authors find justification for integrating science, technology, engineering, and mathematics (STEM) in the complex problems that today's students will face as tomorrow's STEM professionals. Teachers with individual subject-area specialties in the STEM content areas have limited experience in integrating STEM. In this study, the authors…

  16. STEM Vocational Socialization and Career Development in Middle Schools

    ERIC Educational Resources Information Center

    Kendall, Katherine A.

    2017-01-01

    Economic forecasts predict an unprecedented shortage of STEM workers in the United States. This study examined the vocational anticipatory socialization factors and classroom stratagems influencing middle school students' science, technology, engineering and mathematics (STEM) career development. Student attitudes towards STEM content areas and…

  17. Enhancing the Psychology STEM Student Journey

    ERIC Educational Resources Information Center

    Hill, Kimberley M.

    2017-01-01

    Psychology is a valuable Science, Technology, Engineering, and Mathematics (STEM) discipline, but one which could do far more at communicating its value to the wider public. This paper discusses how popular initiatives, such as "The University of Northampton's STEM Champions" programme, enhance psychology's STEM membership, while…

  18. STEM--Beyond the Acronym

    ERIC Educational Resources Information Center

    Vasquez, Jo Anne

    2015-01-01

    When most educators think of STEM education, they think of fully integrated projects seamlessly combining all four disciplines--science, technology, engineering, and mathematics. Although such transdisciplinary STEM units are ideal, writes Vasquez, they are not the only way to give students valuable STEM experiences. She gives examples of two…

  19. Science, Technology, Engineering, and Mathematics Education: Strategic Planning Needed to Better Manage Overlapping Programs across Multiple Agencies. Report to Congressional Requesters. GAO-12-108

    ERIC Educational Resources Information Center

    Scott, George A.

    2012-01-01

    Science, technology, engineering, and mathematics (STEM) education programs help to enhance the nation's global competitiveness. Many federal agencies have been involved in administering these programs. Concerns have been raised about the overall effectiveness and efficiency of STEM education programs. GAO examined (1) the number of federal…

  20. Idaho Science, Technology, Engineering and Mathematics Overview

    ScienceCinema

    None

    2017-12-09

    Idaho National Laboratory has been instrumental in establishing the Idaho Science, Technology, Engineering and Mathematics initiative -- i-STEM, which brings together industry, educators, government and other partners to provide K-12 teachers with support, materials and opportunities to improve STEM instruction and increase student interest in technical careers. You can learn more about INL's education programs at http://www.facebook.com/idahonationallaboratory.

  1. Is it Really a Man's World? Black Men in Science, Technology, Engineering, and Mathematics at Historically Black Colleges and Universities

    ERIC Educational Resources Information Center

    Lundy-Wagner, Valerie C.

    2013-01-01

    Efforts to improve the Black science, technology, engineering and mathematics (STEM) pipeline have focused on historically Black colleges and universities (HBCUs); however, this work generally fails to acknowledge men. This article characterized Black male receipts of bachelor's degrees from HBCUs in STEM fields between 1981 and 2009 using a…

  2. Focusing on Challenging Content and Practical Applications in Science, Technology, Engineering and Mathematics (STEM) Studies in Middle Grades Schools, High Schools and Technology Centers.

    ERIC Educational Resources Information Center

    Southern Regional Education Board (SREB), 2012

    2012-01-01

    Schools that give students access to STEM (science, technology, engineering and mathematics) studies are accomplishing several objectives: introducing students to higher-level academic and career studies, expanding project-based learning in the curriculum, enticing students to remain in school until graduation, and preparing students for…

  3. Gender Gap in Science, Technology, Engineering, and Mathematics (STEM): Current Knowledge, Implications for Practice, Policy, and Future Directions

    ERIC Educational Resources Information Center

    Wang, Ming-Te; Degol, Jessica L.

    2017-01-01

    Although the gender gap in math course-taking and performance has narrowed in recent decades, females continue to be underrepresented in math-intensive fields of Science, Technology, Engineering, and Mathematics (STEM). Career pathways encompass the ability to pursue a career as well as the motivation to employ that ability. Individual differences…

  4. Idaho Science, Technology, Engineering and Mathematics Overview

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Hampton, Brandon; Shoushtarian, Joannah; Ledoux, P

    2011-02-11

    Idaho National Laboratory has been instrumental in establishing the Idaho Science, Technology, Engineering and Mathematics initiative -- i-STEM, which brings together industry, educators, government and other partners to provide K-12 teachers with support, materials and opportunities to improve STEM instruction and increase student interest in technical careers. You can learn more about INL's education programs at http://www.facebook.com/idahonationallaboratory.

  5. The Use of Mathematical Modelling for Improving the Tissue Engineering of Organs and Stem Cell Therapy.

    PubMed

    Lemon, Greg; Sjoqvist, Sebastian; Lim, Mei Ling; Feliu, Neus; Firsova, Alexandra B; Amin, Risul; Gustafsson, Ylva; Stuewer, Annika; Gubareva, Elena; Haag, Johannes; Jungebluth, Philipp; Macchiarini, Paolo

    2016-01-01

    Regenerative medicine is a multidisciplinary field where continued progress relies on the incorporation of a diverse set of technologies from a wide range of disciplines within medicine, science and engineering. This review describes how one such technique, mathematical modelling, can be utilised to improve the tissue engineering of organs and stem cell therapy. Several case studies, taken from research carried out by our group, ACTREM, demonstrate the utility of mechanistic mathematical models to help aid the design and optimisation of protocols in regenerative medicine.

  6. Exploring Collective Mathematical Creativity in Elementary School

    ERIC Educational Resources Information Center

    Levenson, Esther

    2011-01-01

    This study combines theories related to collective learning and theories related to mathematical creativity to investigate the notion of collective mathematical creativity in elementary school classrooms. Collective learning takes place when mathematical ideas and actions, initially stemming from an individual, are built upon and reworked,…

  7. Exploring the Disconnect between Mathematics Ability and Mathematics Efficacy among Preservice Agricultural Education Teachers

    ERIC Educational Resources Information Center

    Hilby, Alyssa C.; Stripling, Christopher T.; Stephens, Carrie A.

    2014-01-01

    STEM disciplines will continue to impact school-based agricultural education programs; thus, in order to produce secondary students proficient in science and mathematics, developing preservice agricultural education teachers who are competent in mathematics and teaching mathematics is essential. This study utilized data collected through a focus…

  8. Pathway to a Baccalaureate in STEM Fields: Community Colleges a Viable Route and Does Early STEM Momentum Matter?

    ERIC Educational Resources Information Center

    Wang, Xueli

    2015-01-01

    This study examines the effect of beginning at a community college on baccalaureate success in science, technology, engineering, and mathematics (STEM) fields. In addition, drawing upon a new concept of "STEM momentum," this research explores whether and how STEM baccalaureate success is related to early STEM momentum, as well as whether…

  9. Preparing for Success through Apprenticeship

    ERIC Educational Resources Information Center

    Christman, Scott

    2012-01-01

    The fact that many companies outsource jobs and contracts for manufactured products can be attributed to the shortage of technically trained and skilled workers in America's workforce. Today, business and industry, educators, parents, and students are significantly interested in STEM education and technological literacy. With the majority of…

  10. [Mathematical simulation of stem/cement/bone mechanical interactions for Poldi-Cech, CF-30, MS-30 and PFC femoral components].

    PubMed

    Kovanda, M; Havlícek, V; Hudec, J

    2009-04-01

    PURPOSE OF THE STUDY The mid-term longevity of femoral components varies considerably, with some showing failure due to early aseptic loosening. Since the hip joint is subject to heavy mechanical loads, it can be assumed that the mechanical interaction of the implant, bone cement and femur will play a key role in the resultant reliability of an arthroplasty. This study was designed to examine this mechanical interaction in four femoral components different in construction (Poldi-Cech, CF-30, MS-30 and PFC) using mathematical simulation. MATERIAL AND METHODS Four stem/cement/femur 3-D mathematical models, comparable in quality, infolving the Poldi-Cech, CF-30, MS-30 and PFC stems, respectively, were constructed. A 3-D model for each stem was created according to its real, middle-size femoral component. Each 3-D model of the cement mantle corresponded in shape to the mantle of the appropriate real stem, with its thickness based on the recommended values of 4-7 mm in the proximal and 1-3 mm in the distal part, and with the cement mantle reaching as far as 10 mm distal to the femoral stem tip. For simplicitys sake the outer surface of the cement mantle was simulated as smooth. A 3-D model involving the proximal epiphysis and the metaphysis of a femur was reconstructed, based on a series of CT cross-sections obtained periodically at 10.5-mm and 2.5-mm distances. The sten/cement/femur model with the MS-30 stem also included a centraliser. The mechanical interaction of the stem, bone cement and bone tissue was examined by means of mathematical stimulation using ANSYS 5.7 software based on finite element analysis. RESULTS For the sake of simplicity, only two key parameters are presented, namely, contact stress at the stem-cement interface and equivalent deformation in the stem/cement/femur system. The least satisfactory stress loading was in the CF-30 stem whose sharp edges showed the values of contact stress about six-times higher than on the mid-medial portion of the stem, with the sharp edges behaving as stress concentrators. A satisfactory stress loading was found in Poldi-Cech, MS-30 and PFC stems, in which contact stress was evenly distributed along the whole lenght of the stem and the values at the edges and on the midmedial portion did not differ much. DISCUSSION The distribution of contact stress is one of the most important factors for the long-term longevity of implants. It was found least satisfactory in the CF-30 stem whose sharp edges act as stress condenser adversely affecting not only the stemcement interface, but also the resultant stress distribution within the femur. The most satisfactory results of stress distribution were recorded in the Poldi-Cech and MS-30 stems. The PFC stem also responded satisfactorily to the simulated stress loading. However, on loading whose substantial part would be torsion, the stems circular or oval cross-section could interfere with rotation stability of the implant; but this was impossible to detect by the mathematical simulation used in this study. CONCLUSIONS The results presented here show that, in the Poldi-Cech, CF-30, MS-30 and PFC femoral stems, a good agreement was achieved between the results of their clinical application and those of mathematical modelling of their mechanical properties. It can be concluded that mechanical interaction among the femoral stem, cement mantle and bone tissue plays the key role in the long-term longevity of such an implant. Key words: Poldi-Cech, CF-30, MS-30, PFC, mechanical interaction, contact stress.

  11. A case study of cost-efficient staffing under annualized hours.

    PubMed

    van der Veen, Egbert; Hans, Erwin W; Veltman, Bart; Berrevoets, Leo M; Berden, Hubert J J M

    2015-09-01

    We propose a mathematical programming formulation that incorporates annualized hours and shows to be very flexible with regard to modeling various contract types. The objective of our model is to minimize salary cost, thereby covering workforce demand, and using annualized hours. Our model is able to address various business questions regarding tactical workforce planning problems, e.g., with regard to annualized hours, subcontracting, and vacation planning. In a case study for a Dutch hospital two of these business questions are addressed, and we demonstrate that applying annualized hours potentially saves up to 5.2% in personnel wages annually.

  12. Professionalizing the Role of Peer Leaders in STEM

    ERIC Educational Resources Information Center

    Bowling, Bethany; Doyle, Maureen; Taylor, Jennifer; Antes, Alison

    2015-01-01

    Efforts to improve retention in science, technology, engineering, and mathematics (STEM) majors frequently utilize peer mentors and/or leaders. At Northern Kentucky University, the STEM Ambassador (SA) program involves students in the creation of a STEM community through multifaceted roles as mentors, peer-learning facilitators, and social…

  13. Whose STEM? Disrupting the Gender Crisis within STEM

    ERIC Educational Resources Information Center

    Heybach, Jessica; Pickup, Austin

    2017-01-01

    This article challenges implicit understandings of scientific inquiry and gender within contemporary responses to the underrepresentation of women in science, technology, engineering, and mathematics (STEM). Failing to recognize the gendered history of science, and thus STEM disciplines, we argue that much research and curricular interventions are…

  14. Analysis of a STEM Education Professional Development Conference for Pre-Service Educators

    ERIC Educational Resources Information Center

    Hardrict-Ewing, Gloria

    2017-01-01

    Science, technology, engineering, and mathematics (STEM) disciplines are attracting increased attention in education. The iSTEM 2017 conference was a professional development program designed to acquaint pre-service teachers with interdisciplinary, research-based STEM instructional strategies that can transform traditional classroom instruction…

  15. A State Policymaker's STEM Playbook. Promising Practices

    ERIC Educational Resources Information Center

    Zinth, Jennifer; Goetz, Tami

    2016-01-01

    Science, technology, engineering and mathematics (STEM) has captured the attention of state policymakers who are concerned about equitable access to high-quality educational experiences and preparing and inspiring students to pursue STEM careers. Yet in many states, STEM policymaking efforts have not achieved their intended return on investment…

  16. STEM learning research through a funds of knowledge lens

    NASA Astrophysics Data System (ADS)

    Civil, Marta

    2016-03-01

    This article examines STEM learning as a cultural process with a focus on non-dominant communities. Building on my work in funds of knowledge and mathematics education, I present three vignettes to raise some questions around connections between in-school and out-of-school mathematics. How do we define competence? How do task and environment affect engagement? What is the role of affect, language, and cognition in different settings? These vignettes serve to highlight the complexity of moving across different domains of STEM practice—everyday life, school, and STEM disciplines. Based on findings from occupational interviews I discuss characteristics of learning and engaging in everyday practices and propose several areas for further research, including the nature of everyday STEM practices, valorization of knowledge, language choice, and different forms of engagement.

  17. An Investigation of Faculty Relationships as a Source of Motivation for STEM Undergraduates at a Historically Black University

    NASA Astrophysics Data System (ADS)

    Mitchell, Aquila

    2011-12-01

    The expansion of STEM education and career opportunities among underrepresented populations is a national priority. Therefore, more research is needed that examines the institutional, instructional and individual factors related to African American students' success in these fields. This dissertation study was drawn from a larger mixed-methods longitudinal study (Freeman and Winston, 2007). It utilized a concurrent embedded design of mixed methods (Creswell, 2009), to investigate faculty relationships as a source of motivation for STEM undergraduates at a HBCU. Bandura's (1986) social cognitive theory was the theoretical basis for this study. The following research questions were examined: (a) What is the nature of student-faculty relationships among STEM undergraduates attending an HBCU; (b) How does the nature of faculty student relationships vary by gender and STEM major; (c) How do student-faculty relationships influence students' persistence in STEM, self-concept of ability in mathematics and in science and grade point average; and (d) Does the influence of student-faculty relationships on self-concept of ability in mathematics and in science and grade point average vary by gender and STEM major? Freshman college students (N=167) who had a declared major in STEM fall 2009 were participants in this study. Students were predominately Black/African American (82%) and predominately female (71%). The Student-Professor Interaction Scale (SPIS) was used to measure various dimensions of student-faculty interactions (Cokley, Komarraju, Rosales, et al., 2006). The Experiences with Faculty Scale (Pace & Kuh, 1998) was used to measure the frequency of student's experiences with faculty. Self-Concept of Ability Scales in Mathematics and in Science (Marsh, 1999) was used to measure students' global perception of their abilities. An open-ended question was designed to expand and provide breadth to the quantitative results. Findings indicated that student-faculty relationships had a statistically significant influence on students self concept of ability in mathematics and in science, GPA and persistence. In addition, gender moderated the relationship between respectful interactions and self-concept of ability in mathematics. This study adds to the scholarly body of research by providing a perspective on African American student achievement and success within STEM and the role the HBCU professor plays in their motivation and achievement.

  18. An Intersectional Analysis of Latin@ College Women's Counter-Stories in Mathematics

    ERIC Educational Resources Information Center

    Leyva, Luis A.

    2016-01-01

    In this article, the author discusses the intersectionality of mathematics experiences for two Latin@ college women pursuing mathematics-intensive STEM (science, technology, engineering, and mathematics) majors at a large, predominantly White university. The author employs intersectionality and poststructural theories to explore and make meaning…

  19. Transitioning to Secondary School: The Case of Mathematics

    ERIC Educational Resources Information Center

    Carmichael, Colin

    2015-01-01

    At a time when Australia's international competitiveness is compromised by a shortage of skilled workers in Science, Technology, Engineering and Mathematics (STEM) related careers, reports suggest a decline in Australian secondary school students' performances in international tests of mathematics. This study focuses on the mathematics performance…

  20. Space education in the context of U.S. government multiagency efforts in science and mathematics education

    NASA Technical Reports Server (NTRS)

    Finarelli, Margaret G.; Brown, Robert W.; Owens, Frank C.

    1992-01-01

    The educational activities of NASA which is one of 16 agencies on the Federal Coordinating Council for Science, Engineering and Technology is discussed. NASA's education mission is to utilize its unique facilities and its specialized workforce to conduct and to leverage externally conducted science, mathematics, and technology education programs and activities. These efforts aimed at meeting the national education goals should help to preserve U.S. leadership in aeronautics, space science, and technology.

  1. Student Testing: Issues Related to Voluntary National Mathematics and Reading Tests. Report to the Honorable William F. Goodling, Chairman, Committee on Education and the Workforce, House of Representatives, and the Honorable John Ashcroft, U.S. Senate.

    ERIC Educational Resources Information Center

    General Accounting Office, Washington, DC. Health, Education, and Human Services Div.

    Information was sought about three main issues related to voluntary national tests for fourth-grade reading and eighth-grade mathematics: (1) the relationship between the National Assessment Governing Board and the U.S. Department of Education; (2) costs of developing the national voluntary tests and procedures for hiring contractors; and (3)…

  2. Not lack of ability but more choice: individual and gender differences in choice of careers in science, technology, engineering, and mathematics.

    PubMed

    Wang, Ming-Te; Eccles, Jacquelynne S; Kenny, Sarah

    2013-05-01

    The pattern of gender differences in math and verbal ability may result in females having a wider choice of careers, in both science, technology, engineering, and mathematics (STEM) and non-STEM fields, compared with males. The current study tested whether individuals with high math and high verbal ability in 12th grade were more or less likely to choose STEM occupations than those with high math and moderate verbal ability. The 1,490 subjects participated in two waves of a national longitudinal study; one wave was when the subjects were in 12th grade, and the other was when they were 33 years old. Results revealed that mathematically capable individuals who also had high verbal skills were less likely to pursue STEM careers than were individuals who had high math skills but moderate verbal skills. One notable finding was that the group with high math and high verbal ability included more females than males.

  3. Development and Validation of Scientific Literacy Scale for College Preparedness in STEM with Freshmen from Diverse Institutions

    ERIC Educational Resources Information Center

    Benjamin, Thomas E.; Marks, Bryant; Demetrikopoulos, Melissa K.; Rose, Jordan; Pollard, Ethen; Thomas, Alicia; Muldrow, Lycurgus L.

    2017-01-01

    Although a major goal of Science, Technology, Engineering, and Mathematics (STEM) education is to develop scientific literacy, prior efforts at measuring scientific literacy have not attempted to link scientific literacy with success in STEM fields. The current Scientific Literacy Survey for College Preparedness in STEM (SLSCP-STEM) scale was…

  4. STEM Attrition: College Students' Paths into and out of STEM Fields. Statistical Analysis Report. NCES 2014-001

    ERIC Educational Resources Information Center

    Chen, Xianglei

    2013-01-01

    Producing sufficient numbers of graduates who are prepared for science, technology, engineering, and mathematics (STEM) occupations has become a national priority in the United States. To attain this goal, some policymakers have targeted reducing STEM attrition in college, arguing that retaining more students in STEM fields in college is a…

  5. Building up STEM: An Analysis of Teacher-Developed Engineering Design-Based STEM Integration Curricular Materials

    ERIC Educational Resources Information Center

    Guzey, S. Selcen; Moore, Tamara J.; Harwell, Michael

    2016-01-01

    Improving K-12 Science, Technology, Engineering, and Mathematics (STEM) education has a priority on numerous education reforms in the United States. To that end, developing and sustaining quality programs that focus on integrated STEM education is critical for educators. Successful implementation of any STEM program is related to the curriculum…

  6. Closing the Gaps and Filling the STEM Pipeline: A Multidisciplinary Approach

    ERIC Educational Resources Information Center

    Doerschuk, Peggy; Bahrim, Cristian; Daniel, Jennifer; Kruger, Joseph; Mann, Judith; Martin, Cristopher

    2016-01-01

    There is a growing demand for degreed science, technology, engineering and mathematics (STEM) professionals, but the production of degreed STEM students is not keeping pace. Problems exist at every juncture along the pipeline. Too few students choose to major in STEM disciplines. Many of those who do major in STEM drop out or change majors.…

  7. Supporting the STEM Pipeline: Linking Applied STEM Course-Taking in High School to Declaring a STEM Major in College

    ERIC Educational Resources Information Center

    Gottfried, Michael A.; Bozick, Robert

    2016-01-01

    Recently, through the support from the Obama administration, the traditional STEM curricula (science, technology, engineering, and mathematics) in high schools are being updated with integrated, applied STEM courses (e.g., technology and engineering) in order to enhance the "real world" applicability of scientific fields and ultimately…

  8. A State-By-State Policy Analysis of STEM Education for K-12 Public Schools

    ERIC Educational Resources Information Center

    Carmichael, Courtney C.

    2017-01-01

    For practitioners and policy makers across the nation, STEM education has a vague definition. This study looks at how all 50 states define STEM education in policy, using four models: (a) Disciplinary STEM (Science, Technology, Engineering, Mathematics); (b) Integrated STEM focusing on combining two or more disciplines to produce critical…

  9. Troubling STEM: Making a Case for an Ethics/STEM Partnership

    ERIC Educational Resources Information Center

    Steele, Astrid

    2016-01-01

    Set against the backdrop of a STEM-based (science, technology, engineering and mathematics) activity in a teacher education science methods class, the author examines the need for ethics education to be partnered with STEM education. To make the case, the origin of the STEM initiative, undertaken and strongly supported by both US government and…

  10. Effects of Transferring to STEM-Focused Charter and Magnet Schools on Student Achievement

    ERIC Educational Resources Information Center

    Judson, Eugene

    2014-01-01

    There have been strong calls to action in recent years to promote both school choice and the learning of science, technology, engineering, and mathematics (STEM). This has led to the burgeoning development of STEM-focused schools. Nine STEM-focused charter and 2 STEM-focused magnet schools that serve elementary-aged students were examined to…

  11. Only STEM Can Save Us? Examining Race, Place, and STEM Education as Property

    ERIC Educational Resources Information Center

    Bullock, Erika C.

    2017-01-01

    The rhetoric about science, technology, engineering, and mathematics (STEM) education in urban schools reflects a desire to imagine a new city that is poised to compete in a STEM-centered future. Therefore, STEM has been positioned as a critical part of urban education reform efforts. In various US cities, schools labeled as "failing"…

  12. Re-Imagining Specialized STEM Academies: Igniting and Nurturing "Decidedly Different Minds", by Design

    ERIC Educational Resources Information Center

    Marshall, Stephanie Pace

    2010-01-01

    This article offers a personal vision and conceptual design for reimagining specialized science, technology, engineering, and mathematics (STEM) academies designed to nurture "decidedly different" STEM minds and ignite a new generation of global STEM talent, innovation, and entrepreneurial leadership. This design enables students to engage…

  13. STEM and Technology Education: International State-of-the-Art

    ERIC Educational Resources Information Center

    Ritz, John M.; Fan, Szu-Chun

    2015-01-01

    This paper reports the perceptions of 20 international technology education scholars on their country's involvement in science, technology, engineering, and mathematics (STEM) education. Survey research was used to obtain data. It was found that the concept of STEM education is being discussed differently by nations. Some consider STEM education…

  14. Understanding STEM: Current Perceptions

    ERIC Educational Resources Information Center

    Brown, Ryan; Brown, Joshua; Reardon, Kristin; Merrill, Chris

    2011-01-01

    In many ways, the push for STEM (science, technology, engineering, and mathematics) education appears to have grown from a concern for the low number of future professionals to fill STEM jobs and careers and economic and educational competitiveness. The proponents of STEM education believe that by increasing math and science requirements in…

  15. The Development of the STEM Career Interest Survey (STEM-CIS)

    ERIC Educational Resources Information Center

    Kier, Meredith W.; Blanchard, Margaret R.; Osborne, Jason W.; Albert, Jennifer L.

    2014-01-01

    Internationally, efforts to increase student interest in science, technology, engineering, and mathematics (STEM) careers have been on the rise. It is often the goal of such efforts that increased interest in STEM careers should stimulate economic growth and enhance innovation. Scientific and educational organizations recommend that efforts to…

  16. Learning for STEM Literacy: STEM Literacy for Learning

    ERIC Educational Resources Information Center

    Zollman, Alan

    2012-01-01

    We are in the STEM generation whose comprehensive purpose is to resolve (1) societal needs for new technological and scientific advances; (2) economic needs for national security; and (3) personal needs to become a fulfilled, productive, knowledgeable citizen. STEM specifically refers to science, technology, engineering, and mathematics, but now…

  17. Effective Practices for Evaluating STEM Out-of-School Time Programs

    ERIC Educational Resources Information Center

    Wilkerson, Stephanie B.; Haden, Carol M.

    2014-01-01

    Science, technology, engineering, and mathematics (STEM) programs in out-of-school time (OST) are designed to supplement school work, ignite student interest, and extend STEM learning. From interactive museum exhibits to summer-long science camps, opportunities for informal student engagement in STEM learning abound. The differences these programs…

  18. Comprehensive Cocurricular Support Promotes Persistence of Community College STEM Students

    ERIC Educational Resources Information Center

    Shadduck, Peggy

    2017-01-01

    Despite good career prospects in science, technology, engineering, and mathematics (STEM) fields, persistence of students in STEM fields of study at the community college and transfer to universities to pursue STEM majors is often quite low. Theories of persistence emphasize the importance of engagement, integration, validation, and financial…

  19. STEM Symposium

    NASA Image and Video Library

    2012-02-28

    Lorenzo L. Esters, Vice President, APLU (Association of Public and Land-grant Universities), and Project Director, MMSI (Minority Male STEM Initiative) addresses STEM initiative report findings at the Symposium on Supporting Underrepresented Minority Males in Science, Technology, Engineering and Mathematics (STEM), Tuesday, February 28, 2012 at NASA Headquarters in Washington. Photo Credit: (NASA/Carla Cioffi)

  20. Creative Teaching in STEM

    ERIC Educational Resources Information Center

    Pollard, Vikki; Hains-Wesson, Rachael; Young, Karen

    2018-01-01

    If Science, Technology, Engineering and Mathematics (STEM) disciplines in higher education are to retain students, there needs to be a shift towards teaching in more enriching and interesting ways. Creative teaching needs to become more prominent in STEM. This article presents a study that defines creative teaching in the STEM context and…

  1. Undergraduate Research Experience for STEM Students: Efforts and Outcomes

    ERIC Educational Resources Information Center

    Zhang, Chuanlei; Swaid, Samar

    2017-01-01

    Undergraduate research for STEM students involves students who are attending college or universities pursuing a bachelor's degree, majoring in fields related to Science, Technology, Engineering and Mathematics (STEM). Research experience for STEM undergraduates has been viewed as a positive experience that has several benefits such as developing…

  2. The Perceptions of Elementary STEM Schools in Missouri

    ERIC Educational Resources Information Center

    Alumbaugh, Kelli Michelle

    2015-01-01

    Science, technology, engineering, and mathematics education, or STEM, is an area that is currently growing in popularity with educators (Becker & Park, 2011). A qualitative study consisting of interviews was conducted and data were gathered from three leaders in professional STEM organizations, four principals from elementary STEM schools, and…

  3. Interdependence through Partnerships: Transforming Education.

    ERIC Educational Resources Information Center

    Simone, Beverly S.

    At Wisconsin's Madison Area Technical College (MATC), both external and internal partnerships are a fundamental part of instructional programming. As the need for technological and mathematical competence in the workforce has increased, partnerships between the college and business and industry have become more important and represent an…

  4. NSF Programs That Support Research in the Two-Year College Classroom

    NASA Astrophysics Data System (ADS)

    Carter, V.; Ryan, J. G.; Singer, J.

    2011-12-01

    The National Science Foundation recognizes the significant role provided by two-year institutions in providing high quality STEM courses to large numbers of students. For some students the STEM courses completed while attending a two-year institution represent the only STEM courses a student may take; for others the courses serve as the foundation to continue on into a STEM major at a four-year institution; and some students complete STEM courses that lead directly into the workforce. Several programs in the Division of Undergraduate Research, including the Advanced Technological Education (ATE) program, STEM Talent Expansion Program (STEP), and the Transforming Undergraduate Education in STEM (TUES) program, support the inclusion of student research experiences at two-year institutions. Information about these programs and examples of successful funded projects will be provided. Resources for faculty considering applying for support will be shared with special attention to a faculty development program designed to help faculty learn about funding opportunities and prepare proposals for submission to the TUES and ATE programs.

  5. The Effect of STEM Learning through the Project of Designing Boat Model toward Student STEM Literacy

    NASA Astrophysics Data System (ADS)

    Tati, T.; Firman, H.; Riandi, R.

    2017-09-01

    STEM Learning focusses on development of STEM-literate society, the research about implementation of STEM learning to develope students’ STEM literacy is still limited. This study is aimed to examine the effect of implementation STEM learning through the project of designing boat model on students STEM literacy in energy topic. The method of this study was a quasi-experiment with non-randomized pretest-posttest control group design. There were two classes involved, the experiment class used Project Based Learning with STEM approach and control class used Project-Based Learning without STEM approach. A STEM Literacy test instrument was developed to measure students STEM literacy which consists of science literacy, mathematics literacy, and technology-engineering literacy. The analysis showed that there were significant differences on improvement science literacy, mathematics technology-engineering between experiment class and control class with effect size more than 0.8 (large effect). The difference of improvement of STEM literacy between experiment class and control class is caused by the existence of design engineering activity which required students to apply the knowledge from every field of STEM. The challenge that was faced in STEM learning through design engineering activity was how to give the students practice to integrate STEM field in solving the problems. In additional, most of the students gave positive response toward implementation of STEM learning through design boat model project.

  6. Summary of Funded Race to the Top Applications: Science, Technology, Engineering, and Mathematics Activities in Eleven States and the District of Columbia

    ERIC Educational Resources Information Center

    Mattson, Beverly

    2011-01-01

    One of the competitive priorities of the U.S. Department of Education's Race to the Top applications addressed science, technology, engineering, and mathematics (STEM). States that applied were required to submit plans that addressed rigorous courses of study, cooperative partnerships to prepare and assist teachers in STEM content, and prepare…

  7. Expectancy-Value Models for the STEM Persistence Plans of Ninth-Grade, High-Ability Students: A Comparison between Black, Hispanic, and White Students

    ERIC Educational Resources Information Center

    Andersen, Lori; Ward, Thomas J.

    2014-01-01

    Group differences in the effects of the expectancies and values that high-ability students have for science and mathematics on plans to persist in science, technology, engineering, and mathematics (STEM) were investigated. A nationally representative sample of ninth-grade students, the High School Longitudinal Study of 2009 (HSLS: 2009; n =…

  8. Increasing College Students' Interest and Engagement in STEM: A Comparison of Strategies for Challenging STEM Stereotypes

    ERIC Educational Resources Information Center

    Shin, Jiyun Elizabeth L.

    2016-01-01

    Increasing science, technology, engineering, and mathematics (STEM) graduates has become an important part of the education agenda in the U.S. in recent years. Stereotypes about STEM (i.e., belief that STEM abilities are innate, and that European American men are best suited for STEM) have been identified as one of the critical factors that may…

  9. A Delphi Study: Identifying Strategies That Promote Student Self-Efficacy in the Middle Level Mathematics Classroom

    ERIC Educational Resources Information Center

    Kieschnick, Lauren E.

    2013-01-01

    This dissertation examines the strategies that promote mathematical self-efficacy in the middle level mathematics classroom. The need for more self-efficacious students to pursue mathematics is prevalent in the United States due to the need of workers in the STEM fields. Finding strategies to promote mathematical self-efficacy will provide…

  10. Financial Literacy: Mathematics and Money Improving Student Engagement

    ERIC Educational Resources Information Center

    Attard, Catherine

    2018-01-01

    The low levels of student engagement with mathematics has been of significant concern in Australia for some time (Attard, 2013). This is a particularly important issue in mathematics education given the current attention to science, technology, engineering and mathematics (STEM) education to ensure "the continued prosperity of Australia on…

  11. Exploring an Integrative Lens of Identity for a High School Mathematics Teacher

    ERIC Educational Resources Information Center

    Wilson, Kimi

    2016-01-01

    Driven largely by societal discourse regarding the underrepresentation of African American males pursuing science, technology, engineering and mathematics (STEM) majors, careers and professions, it becomes salient to understand how African American males experience mathematics in K-12 public schools in relation to their mathematics identity…

  12. Students' and Teachers' Conceptual Metaphors for Mathematical Problem Solving

    ERIC Educational Resources Information Center

    Yee, Sean P.

    2017-01-01

    Metaphors are regularly used by mathematics teachers to relate difficult or complex concepts in classrooms. A complex topic of concern in mathematics education, and most STEM-based education classes, is problem solving. This study identified how students and teachers contextualize mathematical problem solving through their choice of metaphors.…

  13. Mathematics, Programming, and STEM

    ERIC Educational Resources Information Center

    Yeh, Andy; Chandra, Vinesh

    2015-01-01

    Learning mathematics is a complex and dynamic process. In this paper, the authors adopt a semiotic framework (Yeh & Nason, 2004) and highlight programming as one of the main aspects of the semiosis or meaning-making for the learning of mathematics. During a 10- week teaching experiment, mathematical meaning-making was enriched when primary…

  14. AccessSTEM: Building Capacity

    ERIC Educational Resources Information Center

    DO-IT, 2009

    2009-01-01

    A series of activities were undertaken to understand the underrepresentation of people with disabilities in science, technology, engineering, and mathematics (STEM) careers and increase their participation in these fields. "AccessSTEM" collaborated with key stakeholders to conduct a "Capacity-Building Institute"…

  15. Recent trends in the U.S. Behavioral and Social Sciences Research (BSSR) workforce

    PubMed Central

    2017-01-01

    While behavioral and social sciences occupations comprise one of the largest portions of the “STEM” workforce, most studies of diversity in STEM overlook this population, focusing instead on fields such as biomedical or physical sciences. This study evaluates major demographic trends and productivity in the behavioral and social sciences research (BSSR) workforce in the United States during the past decade. Our analysis shows that the demographic trends for different BSSR fields vary. In terms of gender balance, there is no single trend across all BSSR fields; rather, the problems are field-specific, and disciplines such as economics and political science continue to have more men than women. We also show that all BSSR fields suffer from a lack of racial and ethnic diversity. The BSSR workforce is, in fact, less representative of racial and ethnic minorities than are biomedical sciences or engineering. Moreover, in many BSSR subfields, minorities are less likely to receive funding. We point to various funding distribution patterns across different demographic groups of BSSR scientists, and discuss several policy implications. PMID:28166252

  16. Mathematical modelling of phenotypic plasticity and conversion to a stem-cell state under hypoxia

    NASA Astrophysics Data System (ADS)

    Dhawan, Andrew; Madani Tonekaboni, Seyed Ali; Taube, Joseph H.; Hu, Stephen; Sphyris, Nathalie; Mani, Sendurai A.; Kohandel, Mohammad

    2016-02-01

    Hypoxia, or oxygen deficiency, is known to be associated with breast tumour progression, resistance to conventional therapies and poor clinical prognosis. The epithelial-mesenchymal transition (EMT) is a process that confers invasive and migratory capabilities as well as stem cell properties to carcinoma cells thus promoting metastatic progression. In this work, we examined the impact of hypoxia on EMT-associated cancer stem cell (CSC) properties, by culturing transformed human mammary epithelial cells under normoxic and hypoxic conditions, and applying in silico mathematical modelling to simulate the impact of hypoxia on the acquisition of CSC attributes and the transitions between differentiated and stem-like states. Our results indicate that both the heterogeneity and the plasticity of the transformed cell population are enhanced by exposure to hypoxia, resulting in a shift towards a more stem-like population with increased EMT features. Our findings are further reinforced by gene expression analyses demonstrating the upregulation of EMT-related genes, as well as genes associated with therapy resistance, in hypoxic cells compared to normoxic counterparts. In conclusion, we demonstrate that mathematical modelling can be used to simulate the role of hypoxia as a key contributor to the plasticity and heterogeneity of transformed human mammary epithelial cells.

  17. Women in the Academy: Female Leadership in STEM Education and the Evolution of a Mentoring Web

    ERIC Educational Resources Information Center

    Gorman, Susan T.; Durmowicz, Meredith C.; Roskes, Ellen M.; Slattery, Susan P.

    2010-01-01

    Women continue to be underrepresented in science, technology, engineering, and mathematics (STEM) fields and in STEM leadership positions. According to the most recent data available from the National Science Foundation, in academia only 31% of full-time STEM faculty and 27% of STEM deans and department heads are women. By comparison at Stevenson…

  18. Setting a Standard for Chemistry Education in the Next Generation: A Retrosynthetic Analysis

    PubMed Central

    2016-01-01

    A diverse and highly qualified chemistry teaching workforce is critical for preparing equally diverse, qualified STEM professionals. Here, we analyze National Center for Education Statistics (NCES) Schools and Staffing Survey (SASS) data to provide a demographic comparison of the U.S. secondary chemistry teaching population in high-needs and non-high-needs public schools as well as private schools during the 2011–2012 academic year. Our analysis reveals that the chemistry teaching workforce is predominantly white and significantly lacks in-field degrees or certification across school types, though high-needs and private schools are most affected by this lack of teacher qualification. Given these results, we attempt to retrosynthetically identify the pathway yielding a qualified chemistry teaching workforce to draw attention to the various steps in this scheme where reform efforts on the part of individual faculty, academic institutions, and organizations can be concentrated. PMID:27924311

  19. Setting a Standard for Chemistry Education in the Next Generation: A Retrosynthetic Analysis.

    PubMed

    Rushton, Gregory T; Dewar, Andrew; Ray, Herman E; Criswell, Brett A; Shah, Lisa

    2016-11-23

    A diverse and highly qualified chemistry teaching workforce is critical for preparing equally diverse, qualified STEM professionals. Here, we analyze National Center for Education Statistics (NCES) Schools and Staffing Survey (SASS) data to provide a demographic comparison of the U.S. secondary chemistry teaching population in high-needs and non-high-needs public schools as well as private schools during the 2011-2012 academic year. Our analysis reveals that the chemistry teaching workforce is predominantly white and significantly lacks in-field degrees or certification across school types, though high-needs and private schools are most affected by this lack of teacher qualification. Given these results, we attempt to retrosynthetically identify the pathway yielding a qualified chemistry teaching workforce to draw attention to the various steps in this scheme where reform efforts on the part of individual faculty, academic institutions, and organizations can be concentrated.

  20. The Power of Partnership

    ERIC Educational Resources Information Center

    Baxter, Barbara

    2008-01-01

    For generations the Arkansas Delta has been a region of poverty, low academic achievement, and low workforce skills. Representing nine counties in the region, four community colleges and a university 300 miles away have joined together to form the Arkansas Delta Science, Technology, Engineering, and Mathematics Talent Expansion Project (ADSTEP).…

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