Publication Date
In 2025 | 0 |
Since 2024 | 2 |
Since 2021 (last 5 years) | 11 |
Since 2016 (last 10 years) | 33 |
Since 2006 (last 20 years) | 76 |
Descriptor
Source
Author
Castori, Pam | 3 |
St. John, Mark | 3 |
Patton, Madeline | 2 |
Abu-Ageel, A. | 1 |
Alfatlawi, M. | 1 |
Alper, Joe | 1 |
Altman, Joanne D. | 1 |
Aslam, D. M. | 1 |
Aslam, S. K. | 1 |
Barkanic, Steve | 1 |
Batalova, Jeanne | 1 |
More ▼ |
Publication Type
Reports - Descriptive | 76 |
Journal Articles | 22 |
Numerical/Quantitative Data | 11 |
Books | 5 |
Speeches/Meeting Papers | 2 |
Legal/Legislative/Regulatory… | 1 |
Opinion Papers | 1 |
Tests/Questionnaires | 1 |
Education Level
Audience
Administrators | 1 |
Teachers | 1 |
Location
West Virginia | 6 |
Florida | 5 |
Hawaii | 3 |
Washington | 3 |
California | 2 |
Maryland | 2 |
Oklahoma | 2 |
Arizona | 1 |
Australia | 1 |
California (San Diego) | 1 |
Connecticut | 1 |
More ▼ |
Laws, Policies, & Programs
Higher Education Act Title IX | 1 |
No Child Left Behind Act 2001 | 1 |
Assessments and Surveys
Program for the International… | 1 |
Schools and Staffing Survey… | 1 |
What Works Clearinghouse Rating
Deborah Santiago; Emily Labandera; Cassandra Arroyo; Sami Russell Nour – Excelencia in Education, 2024
Although more Latinos are entering the STEM workforce, they continue to be underrepresented in high-salary STEM occupations. To ensure America's future, institutions and STEM employers must both play an active role in preparing, selecting, and sourcing Latino talent for a global economy. Excelencia's research demonstrates that select institutions…
Descriptors: Hispanic Americans, Labor Force, Talent, STEM Education
Whitacre, Paula – National Academies Press, 2023
Domestic and international competition for STEM talent is driving institutions across the research and innovation landscape to consider new policies and partnerships for building and managing STEM knowledge and skills. New levels of investment in human capital to increase U.S. innovation capacity and competitiveness will require coordination and…
Descriptors: Capacity Building, Human Capital, STEM Education, Innovation
Paula Whitacre – National Academies Press, 2024
The CHIPS and Science Act recognized the importance of exposure to innovation and entrepreneurial concepts at the K-12 level by codifying into law the intention of broadening the base of Americans engaged in science, technology, engineering, and mathematics (STEM). The Government-University-Industry Research Roundtable (GUIRR) has long sought ways…
Descriptors: Elementary Secondary Education, STEM Education, Workshops, Innovation
Batalova, Jeanne; Fix, Michael – Migration Policy Institute, 2022
College-educated immigrants in the United States are more likely to have advanced degrees and to major in science, technology, engineering, and math (STEM) fields than their U.S.-born peers with college degrees. But their educational levels have not always translated into occupational gains: They are more likely than U.S.-born workers to be…
Descriptors: Outcomes of Education, College Graduates, Immigrants, STEM Education
Altman, Joanne D.; Chiang, Tsu-Ming; Hamann, Christian S.; Makhluf, Huda; Peterson, Virginia; Orel, Sara E. – Online Submission, 2019
The authors present evidence for the role of undergraduate research in college completion and preparation of a highly skilled workforce, particularly in STEM [science, technology, engineering, and mathematics] fields. [This paper was produced by the Council on Undergraduate Research (CUR).]
Descriptors: Undergraduate Students, Student Research, STEM Education, Labor Force Development
Community College Research Center, Teachers College, Columbia University, 2022
Increasing the number of college students who earn STEM credentials and enter STEM careers remains a national priority, as does the need to diversify the population of STEM workers by race/ethnicity, gender, and socioeconomic background. This fact sheet describes how community colleges hold potential for diversifying the STEM workforce as well as…
Descriptors: Community Colleges, Two Year College Students, STEM Education, Barriers
Knestis, Kirk; Cheng, Joselina; Fontaine, Claire M.; Feng, Rebekah – Journal of Information Systems Education, 2022
This paper has two goals: First, to detail processes through which a project funded under a National Science Foundation workforce development program (Innovative Technology Experiences for Students and Teachers, ITEST) leveraged active partnerships among government agencies, industry firms, and universities to develop and study an innovative,…
Descriptors: Partnerships in Education, STEM Education, Sex Fairness, Government School Relationship
National Science Foundation, 2022
NSF's new Strategic Plan for Fiscal Years 2022-2026 was released on March 28, 2022. To achieve NSF's vision of "A nation that leads the world in science and engineering research and innovation, to the benefit of all, without barriers to participation," the Plan lays out four strategic goals. The first, "Empower STEM talent to fully…
Descriptors: STEM Education, Talent Development, Strategic Planning, National Organizations
West Virginia Department of Education, 2019
STEM is an acronym for the transdisciplinary integration of the four disciplines of Science, Technology, Engineering, and Mathematics. STEM education places a priority on the study of science and math with purposeful integration of technology and the engineering design process. STEM education is an opportunity for students to collaboratively solve…
Descriptors: STEM Education, Art Education, Program Evaluation, Elementary Secondary Education
Business-Higher Education Forum, 2019
This report from a workshop funded by the National Science Foundation recommends how federal agencies can more effectively support STEM workforce needs. Business executives and CEOs, college and university presidents, professional associations, state leaders, and heads of federal agencies recognize that developing a STEM-capable workforce is…
Descriptors: STEM Education, Labor Force Development, Job Skills, Leadership Responsibility
O'Banion, Terry U. – Community College Journal of Research and Practice, 2019
Over its 100-year plus history the community college has struggled to make clear its mission. As a comprehensive community college its mission has bounced around to focus on liberal arts, developmental, workforce, community, and general education. In today's increasingly competitive society with shifting values and changes in power it is likely…
Descriptors: Community Colleges, Institutional Mission, Labor Force Development, Job Training
Nilsson, Melanie R. – Journal of College Science Teaching, 2017
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.
Descriptors: STEM Education, Labor Force Development, Bias, Aggression
Jacksonville Public Education Fund, 2022
This summary is the first in a series of research briefs on student skills for the future. It provides highlights from the full research report, "Initial Findings Report: Student Skills for the Future, Spring 2022. A Landscape Analysis from the Jacksonville Public Education Fund" (ED620417). Given the rate of technological advancement,…
Descriptors: 21st Century Skills, Employer Attitudes, Employment Potential, Career Education
Mew, Lionel – Information Systems Education Journal, 2020
This paper discusses Implementation of a new educational approach to develop competencies for the future STEM workforce, and to build knowledge on success factors for educating a non-traditional target population in data competencies. It is widely accepted that a data capable workforce is critical to science and industry. The literature suggests…
Descriptors: Program Design, Undergraduate Students, Nontraditional Students, Data Analysis
Timms, Michael; Moyle, Kathryn; Weldon, Paul R.; Mitchell, Pru – Australian Council for Educational Research, 2018
Australian STEM education seems caught in a whirlpool of problems that are contributing to one another. Student engagement and performance in STEM are declining, but we do not have the supply of qualified teachers we need to improve learning. The STEM curriculum is unbalanced and fragmented, leading to less interest among students. It is not…
Descriptors: Foreign Countries, STEM Education, Educational Policy, Outcomes of Education