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Watkins, Jessica – Cognition and Instruction, 2023
Teachers can play critical roles in challenging or reinscribing dominant narratives about what counts as STEM, who is seen within STEM disciplines, and how these disciplines should be taught. However, teachers have often experienced STEM in limited ways in their own education and are thereby provided with few resources for re-imagining these…
Descriptors: STEM Education, Engineering Education, Elementary School Teachers, Design
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Lo, Chung Kwan; Hew, Khe Foon – Journal of Engineering Education, 2019
Background: The flipped classroom has become more widely used in engineering education. However, a systematic and quantitative assessment of its achievement outcomes has not been conducted to date. Purpose: To address this gap, we examined the findings from comparative articles published between 2008 and 2017 through a meta-analysis to summarize…
Descriptors: Engineering Education, Homework, Video Technology, Program Effectiveness
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Crawford, Christina; Obenland, Carrie; Nichol, Carolyn – Journal of STEM Outreach, 2021
Pre-college engineering education has gained traction in U.S. schools over the past twenty years. This growth is evident with engineering emerging as a crosscutting discipline in the Next Generation Science Standards. However, the scarcity of professional development (PD) for K-12 teachers who want to teach engineering and the few PD opportunities…
Descriptors: Professional Development, Program Length, Program Effectiveness, Inservice Teacher Education
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Mesutoglu, Canan; Baran, Evrim – Research in Science & Technological Education, 2021
Background: Teachers play a prominent role in facilitating the integration of engineering into school instruction. There is an extensive body of literature that has addressed the delivery of engineering teacher professional development programs. A few studies have summarized the features of engineering teacher professional development programs,…
Descriptors: Engineering Education, Elementary Secondary Education, Curriculum Implementation, STEM Education
Fletcher, Trina Lolita – ProQuest LLC, 2017
African American and Black women are twice as likely to enroll in higher education in comparison to Black men. However, when it comes to engineering degrees awarded in 2015, only 24% of the Black recipients were women. A potential solution may be to introduce engineering to pre-college Black female students through extracurricular program. Being…
Descriptors: Females, Engineering Education, Single Sex Schools, Outcomes of Education
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Strobel, Johannes; Mendoza Díaz, Noemi V. – Advances in Engineering Education, 2012
Access to post-secondary education, specifically in the technical, two-year institution area, is a topic of growing interest in the country. Funding agencies, such as NSF, via the Advanced Technological Education Program (ATE), are supporting initiatives and research aimed at increasing the number of technicians and engineers and improving…
Descriptors: Engineering Education, Technology Education, Elementary Secondary Education, Mixed Methods Research
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Yilmaz, M.; Ozcelik, S.; Yilmazer, N.; Nekovei, R. – IEEE Transactions on Education, 2013
This paper presents an innovative two-course, laboratory-based, and design-oriented robotics educational model. The robotics curriculum exposed senior-level undergraduate students to major robotics concepts, and enhanced the student learning experience in hybrid learning environments by incorporating the IEEE Region-5 annual robotics competition…
Descriptors: Robotics, College Curriculum, College Seniors, Elective Courses
Scott, George A. – US Government Accountability Office, 2012
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…
Descriptors: STEM Education, Strategic Planning, Systems Approach, Science Education
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Massiha, G. H. – Tech Directions, 2011
In the United States and elsewhere, there is a dramatic shortage of engineers and technologists. And, unfortunately, these professions often suffer from a lack of awareness among K-12 students. Clearly, educators need to show students the very exciting and lucrative aspects of these fields. Engineering and technology are consistently listed by…
Descriptors: Engineering Education, Elementary Secondary Education, Engineering, Student Attitudes
Bernstein, Hamutal; Martin, Carlos; Eyster, Lauren; Anderson, Theresa; Owen, Stephanie; Martin-Caughey, Amanda – Urban Institute, 2015
The Urban Institute conducted an implementation and participant-outcomes evaluation of the Alaska Native Science & Engineering Program (ANSEP). ANSEP is a multi-stage initiative designed to prepare and support Alaska Native students from middle school through graduate school to succeed in science, technology, engineering, and math (STEM)…
Descriptors: Program Evaluation, Alaska Natives, American Indian Students, STEM Education
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Daugherty, Jenny L.; Custer, Rodney L. – International Journal of Technology and Design Education, 2012
The design of this study was a multiple case study conducted to examine the knowledge, pedagogical principles, and challenges involved in providing engineering-oriented professional development for teachers at the secondary school level. A set of criteria was used to identify five representative projects for analysis in the US. A variety of tools…
Descriptors: Curriculum Development, Focus Groups, Engineering, Case Studies
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Massiha, G. H. – Tech Directions, 2011
In the United States and elsewhere, there is a dramatic shortage of engineers and technologists. And, unfortunately, these professions often suffer from a lack of awareness among K-12 students. Clearly, educators need to show students the very exciting and lucrative aspects of these fields. Engineering and technology are consistently listed by…
Descriptors: Engineering Education, Elementary Secondary Education, Engineering, Career Education
Afterschool Alliance, 2013
This Afterschool Alert Issue Brief explores how afterschool programs are offering innovative, hands-on computing and engineering education opportunities. Both these subjects have emerged as priority areas within the "STEM" fields. Computing is one of the fastest growing industries, and yet current rates of college graduation in computer…
Descriptors: After School Programs, STEM Education, Program Effectiveness, Experiential Learning
Bernstein, Hamutal; Martin, Carlos; Eyster, Lauren; Anderson, Theresa; Owen, Stephanie; Martin-Caughey, Amanda – Urban Institute, 2015
The Urban Institute conducted an implementation and participant-outcomes evaluation of the Alaska Native Science & Engineering Program (ANSEP). ANSEP is a multi-stage initiative designed to prepare and support Alaska Native students from middle school through graduate school to succeed in science, technology, engineering, and math (STEM)…
Descriptors: Program Evaluation, Alaska Natives, American Indian Students, STEM Education
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Nugent, Gwen; Kunz, Gina; Rilett, Larry; Jones, Elizabeth – Technology Teacher, 2010
The United States is facing a crisis in terms of meeting demands for a highly skilled technical workforce. Workforce preparation must begin in primary and secondary educational settings. Teachers are perfectly positioned to increase student awareness of and interest in careers in engineering and technology; unfortunately, they are often not well…
Descriptors: Engineering Education, Engineering, Science Teachers, Professional Development
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