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Bilgin, Betul; Felder, Anthony E.; Darabi, Houshang; Nazempour, Rezvan; Reckinger, Shanon; Revelo, Renata A.; Ozevin, Didem – Advances in Engineering Education, 2022
The matriculation, retention, and graduation of students is a critical and ongoing effort in undergraduate engineering education. Implementing measures is vital in increasing student motivation to continue pursuing engineering and is especially important for individuals from low-income and academically talented students. At the University of…
Descriptors: Engineering Education, Mentors, Undergraduate Students, Student Motivation
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Oh, Michael; Lawson, Finley – School Science Review, 2020
This article proposes an alternative (or additional) place for the use of robotics within the secondary school curriculum. Robotics provides a unique opportunity to engage students in genuinely multidisciplinary learning that challenges their misperceptions about the nature of science/technology and engages them with 'big questions'. After…
Descriptors: Engineering Education, Robotics, STEM Education, Interdisciplinary Approach
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Easter, Jaclyn; Hollister, Erin; Wilcox, Jesse – Science and Children, 2019
Although science, technology, engineering, and mathematics (STEM) initiatives have received increased attention in recent years (Bybee 2011), the focus is often on science and mathematics (Thornburg 2009). Yet, engineering has been referred to as "the glue that holds the other STEM subjects together" (Thornburg 2009). With the release of…
Descriptors: STEM Education, Problem Solving, Elementary School Students, Grade 3
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Salinger, Gerhard L.; Moye, Johnny J. – Technology and Engineering Teacher, 2021
This is the nineteenth in a series of articles entitled "The Legacy Project." The Legacy Project focuses on the lives and actions of leaders who have forged the technology and engineering teaching profession into what it is today. Members of the profession owe a debt of gratitude to these leaders. One simple way to demonstrate that…
Descriptors: Program Descriptions, Technology Education, Engineering Education, Professional Recognition
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Edwards, Cherie D.; Lee, Walter C.; Knight, David B.; Fletcher, Trina; Reid, Karl; Lewis, Racheida – Advances in Engineering Education, 2021
Striving to remain a global leader in innovation, the United States continues prioritizing broadening participation in engineering and other STEM fields. For this reason, STEM outreach programs are increasingly popular and vital. However, few programs offer such outreach experiences at a large, national scale and intentionally situate those…
Descriptors: Summer Programs, Engineering Education, African American Students, Access to Education
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Porter, Teresa; West, Meg E.; Kajfez, Rachel L.; Malone, Kathy L.; Irving, Karen E. – Journal of Pre-College Engineering Education Research, 2019
Increased attention on the implementation of engineering education into elementary school classrooms aims to start preparing students early for potential engineering careers. In order to efficiently and effectively add engineering concepts to the curriculum, appropriate development and facilitation of engineering design challenges are required.…
Descriptors: Faculty Development, Elementary School Teachers, Engineering Education, Teacher Attitudes
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Haigh, Sarah; Bell, Christopher; Ruta, Chris – School Science Review, 2017
This article provides details of a successful educational engineering project run in partnership between a group of ten schools and an international engineering, construction and technical services company. It covers the history and evolution of the project and highlights how the project has significant impact not only on the students involved but…
Descriptors: Partnerships in Education, School Business Relationship, Engineering Education, Construction Industry
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Volk, Kenneth – Journal of Technology Education, 2019
For nearly 40 years, there has been a serious decline in the number of new technology and engineering education teachers and teacher preparation programs in the United States (Akmal, Oaks, & Barker, 2002; Daugherty & Boser, 1993; Edmunds, 1980; Greene, 2016; Moye, 2009; Volk, 1993). Currently, only 15% of the technology and engineering…
Descriptors: Educational Change, Technology Education, Engineering Education, Teacher Education Programs
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Blackley, Susan; Sheffield, Rachel; Maynard, Nicoleta; Koul, Rekha; Walker, Rebecca – Australian Journal of Teacher Education, 2017
The Makerspace phenomenon has morphed into three readily identifiable types characterised by accessibility: dedicated, distributed, and mobile. The research presented in this paper describes a type of Makerspace that is defined by its purpose: to improve the confidence and ability of primary education students in STEM education. This approach is…
Descriptors: Preservice Teachers, STEM Education, Elementary School Students, Faculty Development
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DeJong, Brian P.; Yelamarthi, Kumar; Kaya, Tolga – Journal of STEM Education: Innovations and Research, 2016
The research experiences for teachers program at Central Michigan University was initiated to team in-service and pre-service teachers with undergraduate engineering students and engineering faculty, in an engineering research setting. During the six-week program, teachers learn engineering concepts and develop high-school instructional material…
Descriptors: Secondary School Teachers, Science Teachers, High Schools, Engineering Education
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Cloutier, Aimee; Yew, Guo Zheng; Gupta, Siddhartha; Dissanayake, Kalpani; Monaco, Paula – Journal of Pre-College Engineering Education Research, 2018
The importance of reducing the gender gap in engineering programs by recruiting and retaining female students is well recognized. Although women hold roughly half of all jobs in the United States, only 24% of STEM jobs are occupied by women. The problem is even more pronounced for engineering, where women held about 12% of jobs as of 2013 (Corbett…
Descriptors: Females, High School Students, STEM Education, Summer Programs
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de Melo Bezerra, Juliana; Martins, Cristiane Aparecida; Teles, Lara Kühl; de Oliveira, Neusa Maria Franco; da Silva, Maria Margareth; dos Santos, Leila Ribeiro; Piani, Raquel Caratti – International Association for Development of the Information Society, 2018
The development of transversal competences is essential for the success of engineers, who need to have the ability to adapt to the new and changing demands posed by modern society and scientific advances. It is a challenge for professors to teach and evaluate transversal competences, since such competences are related to attitudes and values. We…
Descriptors: Engineering Education, Competence, STEM Education, Student Motivation
Lehman, James D.; Ertmer, Peggy A.; Bessenbacher, Ann M. – Educational Technology, 2015
Built as one of 60+ hubs on the HUBzero platform, STEMEdhub was developed in 2011 as a resource for research, education, and collaboration in STEM education. The hub currently supports 82 different groups. In this article, the authors describe two specific groups (SLED and AAU) that are taking advantage of numerous communication and resource tools…
Descriptors: STEM Education, Technology Uses in Education, Educational Resources, Science Course Improvement Projects
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Leahy, Keelin; Phelan, Pat – International Journal of Technology and Design Education, 2014
In Ireland, Technology Education's structure and organisation across the levels of education is not delivered or governed in a coherent manner. Technology Education in primary level education, for students between 5 and 12 years of age, does not explicitly exist as a separate subject. In primary level education, Social, Environmental and…
Descriptors: Technology Education, Foreign Countries, Design, Scientific Research
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Cogger, Steven D.; Miley, Daniel H. – Advances in Engineering Education, 2012
This paper proposes that project-based active learning is a key part of engineering education at the middle school level. One project from a comprehensive middle school engineering curriculum developed by the authors is described to show how active learning and state frameworks can coexist. The theoretical basis for learning and assessment in a…
Descriptors: Engineering Education, Middle School Students, Energy, Teaching Methods
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