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Sharon Tettegah; Ebenezer Larnyo; Charles Terry; Jessica Young; Dave Vallett; Alan B. Craig; Yingtao Jiang – Schools: Studies in Education, 2024
Increasing diversity and broadening participation in engineering programs has been a persistent challenge due to various factors. Despite efforts to enhance engineering education, we have not seen a significant increase in matriculation, retention, and graduation rates in certain engineering fields. For decades, academic institutions have received…
Descriptors: Engineering Education, Disproportionate Representation, Access to Education, Minority Group Students
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Steven Higbee; Devany Harrell; Anthony Chase; Sharon Miller – Biomedical Engineering Education, 2025
Purpose: Engineering students gain confidence and competency through continual practice of key skills. The social cognitive theory construct of self-efficacy provides a useful measure to assess students' beliefs in their ability to succeed or perform tasks. Research focused on the impacts of curricular engineering design experiences on student…
Descriptors: Biomedicine, Engineering Education, Undergraduate Students, Self Efficacy
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Manpreet Kaur; Sonia Chawla – Innovations in Education and Teaching International, 2025
This study seeks to examine the impact of curriculum support (CS) and extracurricular support (ECS) on students' entrepreneurial intentions (EI) along with the mediating impact of entrepreneurial attitude (EA) and entrepreneurial self-efficacy (ESE) on the relationship. An electronic questionnaire was used to collect data from 561 final year…
Descriptors: Curriculum, Extracurricular Activities, Entrepreneurship, Intention
Olaniba, Oyetunji Steven – ProQuest LLC, 2023
This research investigated Lean and Industry 4.0 competencies required by the manufacturing industry and taught in Applied Engineering, Technology, Technology Management, Manufacturing, and Related (AETTMMR) program curricula. The aim was to identify the misalignment between the manufacturing industry competency need and the AETTMMR academic…
Descriptors: Manufacturing Industry, Engineering Education, Competence, Curriculum
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Christina Ioanna Pappa; Despoina Georgiou; Daniel Pittich – International Journal of Technology and Design Education, 2024
This study reports on a systematic review of the current status of technology education in primary schools and the terminology used in the fields of technology and engineering education. Additionally, this review highlights crucial aspects of teaching and learning that must not be overlooked when outlining the current state of technology and…
Descriptors: Technology Education, Engineering Education, Elementary Schools, Educational Research
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Annie Kelly; Chris Cooper; Vladimir Miskovic – New Directions for Student Services, 2023
Appreciative Advising is applied in the creation and delivery of an "Appreciative Mentorship" course for University of Cincinnati undergraduate peer mentors. The article explores course content, learning activities, and assignments. A former peer mentor shares examples of applying the phases when mentoring pre-professional engineering…
Descriptors: Undergraduate Students, Mentors, Peer Relationship, Engineering Education
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Mariza Tsakalerou; Asma Perveen; Alibek Ayapbergenov; Dinara Dikhanbayeva; Yevgeniy Lukhmanov – IEEE Transactions on Education, 2025
Contribution: This research examines undergraduate students' perceptions in engineering disciplines toward gender inclusivity in course curricula, focusing on three essential pillars of curricular design: course content, teaching methodology, and course assessment. Background: The shortage of women representation in STEM fields, particularly in…
Descriptors: Undergraduate Students, Student Attitudes, Engineering Education, STEM Education
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Meng, Jie; He, Gaofa; Li, Xiang; Ren, Liancheng; Dong, Chaoqun; Liu, Min – Innovations in Education and Teaching International, 2022
This paper regards the mechanical curriculum teaching as a design problem and uses environment-based design (EBD) method to solve it. First, environment components and their relations of the mechanical curriculum are found out by recursive object model (ROM). Then, conflicts in the teaching process are identified by analysing the above relations.…
Descriptors: Engineering, Manufacturing, Engineering Education, Foreign Countries
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Yimin Zhu; Amirhosein Jafari; Amir H. Behzadan; Raja R. A. Issa – Journal of Civil Engineering Education, 2024
The architecture, engineering, and construction (AEC) education communities are increasingly facing challenges caused by social, technological, economic, environmental, and political changes. Addressing these issues requires AEC educators and practitioners to systematically rethink and reform many of their current practices. Anecdotal evidence in…
Descriptors: Architectural Education, Engineering Education, Vocational Education, Construction Industry
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Lalantha Senevirathna; Karthika KrishnaPillai; Jim Morgan; Shara Cameron – European Journal of Engineering Education, 2023
Presented here is a novel engineering degree initiative established at Charles Sturt University (CSU), Australia. This program embodies emerging trends and prospects in engineering education, aspiring to nurture adept engineers well-prepared for practical application. Furthermore, this paper delves into the application of this program for training…
Descriptors: Engineering Education, Curriculum, Employment Qualifications, Water
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Sonia Bansal; Aaron M. Kyle; Andrew O. Brightman; Jennifer R. Amos – Biomedical Engineering Education, 2023
The lack of diversity in engineering is a persistent problem with few signs of pending improvement. Efforts to promote diversity in engineering schools have produced modest gains. Based on a commitment to be a change leader and fueled by recent updates in ABET criteria to include diversity, equity, inclusion, and justice (DEI-J) as tenets of…
Descriptors: Engineering Education, Student Diversity, Biomedicine, Inclusion
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Per Norström; Susanne Engström; Birgit Fahrman – Design and Technology Education, 2024
What pupils learn in school should ideally be useful throughout their whole lives. It should help them in further studies, in working life, and when acting as responsible citizens in democratic society. This is challenging for all subjects, including technology. Technology develops fast. It is most likely that wheels, wedges, and inclined planes…
Descriptors: Relevance (Education), Engineering Education, Basic Skills, Information Technology
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Loveland, Thomas; Love, Tyler S.; Wilkerson, Trena; Simmons, Patricia – Technology and Engineering Teacher, 2020
In 1981, twenty-one industrial arts educators convened at Jackson's Mill, WV to develop an agreed-upon rationale and direction for the future of industrial arts. However, the route to achieve this goal was not as clear, as they had to "live the challenge of inquiry, assimilation, compromise, and consensus" (Snyder & Hales, 1981, p.…
Descriptors: Industrial Arts, Curriculum, Standards, Educational History
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Dedi Liu – Discover Education, 2022
Graduate teaching assistants (GTAs) play important roles in engineering education at the undergraduate level. Since there are lots of technological content knowledge (TCK) in engineering curriculums, the improvements of GTAs' teaching skills on TCK will help the teaching effectiveness of the curriculums. As the instructor's knowledge about…
Descriptors: Graduate Students, Teaching Assistants, Technological Literacy, Pedagogical Content Knowledge
Barilka, Marisa – ProQuest LLC, 2023
Students who are not proficient in math are more likely to face negative long-term effects. In addition to adults with a lack of math skills facing a range of potential economic and mental health issues, the nation is also negatively impacted by a society of individuals who cannot contribute to the technological infrastructure. Project-based…
Descriptors: High School Students, Engineering Education, Curriculum, STEM Education
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