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Kaya, Sibel; Yuksel, Dogan; Curle, Samantha – Journal of Engineering Education, 2023
Background: Mindsets are based on two basic assumptions: some people think that their intellectual abilities can be developed through hard work and instruction (i.e., a growth mindset), whereas others believe that nothing can change their level of intellectual ability (i.e., a fixed mindset). The association between mindsets and academic…
Descriptors: Engineering Education, Language of Instruction, English (Second Language), Second Language Learning
Shea, Molly V.; Sandoval, Jose – Science Education, 2020
In this article we studied how community educators' designed for equity in an after school science program. Building from discussions of equity in out-of-school-time (OST) science, this case study offers insight into the role of pedagogy in organizing for dignity and belonging in an after school program. This case study focused on the practices of…
Descriptors: Science Education, Equal Education, Instructional Design, Case Studies
Bartholomew, Scott R.; Zhang, Liwei – Technology and Engineering Teacher, 2019
Although there are over 320,000 health and fitness apps available on major app stores, there is scant evidence that they actually promote a healthier lifestyle, assist users in exercising, or promote weight loss. This article presents a lesson plan using an Arduino for integrating computational thinking and game design with middle school students…
Descriptors: Technology Education, Engineering Education, Relevance (Education), Physical Fitness
Carlone, Heidi B.; Mercier, Alison K.; Metzger, Salem R. – Journal of Pre-College Engineering Education Research, 2021
Primary school practices are often bound by traditions that perpetuate compliance and skills-based, decontextualized, rote memorization activities. These histories of practice, prevalent in schools serving mostly Black and Brown children, make it inordinately difficult for students to author themselves as knowledge builders (i.e., with epistemic…
Descriptors: Urban Schools, Engineering Education, Epistemology, Design
Rennick, Christopher; Hulls, Carol C. W.; McKay, Kenneth N. – IEEE Transactions on Education, 2019
Contribution: A semester-long, open-ended design project was implemented to promote intellectual development of first-year students while reinforcing event-driven/procedural programming principles. This paper describes this approach, and an evaluation strategy using Perry's model for intellectual development. The results show that students can…
Descriptors: Introductory Courses, Engineering Education, Active Learning, Student Projects
Case, Jennifer M. – Journal of College Student Development, 2016
Self-authorship, describing a synthesis of intellectual, intrapersonal, and interpersonal development, remains an evident but elusive goal of college education. I sought to track self-authorship in a racially diverse group of 30 young South African engineering graduates. In discussing their career trajectories, all individuals demonstrated…
Descriptors: Longitudinal Studies, Engineering Education, College Graduates, Minority Groups
Mazereeuw, Marco; Wopereis, Iwan; McKenney, Susan – Educational Research and Evaluation, 2016
Extended Teams (ETs), in which teachers and workplace supervisors are jointly responsible for the quality of education, were established to solve problems concerning school-workplace connections in vocational and professional education. Six ETs were investigated during their 1st year of collaboration. In addition to recordings of ET meetings,…
Descriptors: Vocational Education, Teamwork, Work Environment, School Business Relationship

Fordyce, Derek – Assessment and Evaluation in Higher Education, 1986
Engineering education is viewed as the development of the quality of thinking in students, and the implications of this approach for student assessment are discussed. (MSE)
Descriptors: Cognitive Processes, Educational Objectives, Engineering Education, Higher Education
Waks, S.; Sabag, N. – Journal of Science Education and Technology, 2004
The Project-Based Learning (PBL) approach enables the student to construct knowledge in his/her own way. Piaget, the founder of constructivism, saw the development of intelligence as a process involving the relationship between brain maturity and individual experience. The technology PBL (TPBL) approach confronts the student with a personal…
Descriptors: Problem Based Learning, Technology Education, Laboratory Experiments, Constructivism (Learning)

Pavelich, Michael J.; And Others – New Directions for Teaching and Learning, 1995
In an integrated four-course sequence, Colorado School of Mines engineering and science students work on open-ended, real-world problems prepared by government agencies and private companies that interact as clients with student teams. The program fosters intellectual development, teamwork, and communication skills. (Author/MSE)
Descriptors: College Freshmen, College Instruction, College Science, College Sophomores