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Phelan, Julia; Egger, Jeffrey; Kim, Junok; Choi, Kilchan; Keum, Eunhee; Chung, Gregory K. W. K.; Baker, Eva L. – National Center for Research on Evaluation, Standards, and Student Testing (CRESST), 2021
The National Math + Science Initiative (NMSI) is a nonprofit organization committed to improving educational outcomes that traces its roots back to the early 1990s. NMSI's College Readiness Program (CRP) is a long-standing program with the goal of promoting STEM education in high schools to improve students' preparation for college. The three-year…
Descriptors: College Readiness, Nonprofit Organizations, Program Evaluation, STEM Education
Patton, Madeline – Community College Journal, 2015
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…
Descriptors: Community Colleges, Technical Education, STEM Education, Mentors
Spillane, Nancy K.; Lynch, Sharon J.; Ford, Michael R. – Phi Delta Kappan, 2016
The authors report on a study of eight inclusive STEM high schools that are designed to increase the numbers of students in demographic groups underrepresented in STEM. As STEM schools, they have had broader and deeper STEM coursework (taken by all students) than required by their respective states and school districts; they also had outcome…
Descriptors: STEM Education, High School Students, Disproportionate Representation, Access to Education
Tyszko, Jason A.; Sheets, Robert G. – New Directions for Community Colleges, 2012
There is a growing consensus that the United States and its regions, including the Midwest region, will increasingly compete on innovation. This also is widely recognized in the business world. There is also growing consensus that innovation talent--the human talent to drive and support innovation--will be a major key. Despite this consensus,…
Descriptors: Talent, Technological Advancement, Schools, Educational Innovation
McLurkin, J.; Rykowski, J.; John, M.; Kaseman, Q.; Lynch, A. J. – IEEE Transactions on Education, 2013
This paper describes the experiences of using an advanced, low-cost robot in science, technology, engineering, and mathematics (STEM) education. It presents three innovations: It is a powerful, cheap, robust, and small advanced personal robot; it forms the foundation of a problem-based learning curriculum; and it enables a novel multi-robot…
Descriptors: Robotics, STEM Education, Engineering Education, Problem Based Learning
Atkinson, Robert D.; Mayo, Merrilea – Information Technology and Innovation Foundation, 2010
Is the United States getting it wrong when it comes to educating tomorrow's innovators in critical fields? It has been known for years that the only way to compete globally in information technology, engineering, nanotechnology, robotics and other fields is to give students the best educational opportunities possible. But do individuals have a…
Descriptors: Educational Opportunities, STEM Education, Educational Innovation, Economic Progress