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Hwang, Yohan; Ko, Yeonjoo; Shim, Sungok Serena; Ok, Seung-Yong; Lee, Hyunju – International Journal of STEM Education, 2023
Despite increasing awareness of the importance of promoting the social responsibility of science, technology, engineering, and mathematics (STEM) professionals, few intervention programs have been developed to enhance the social responsibility of college students or adults in the STEM fields. In this paper, we introduced a new instructional…
Descriptors: Engineering Education, Social Responsibility, Intervention, Program Descriptions
Han, Yen-Lin; Turns, Jennifer; Cook, Kathleen E.; Mason, Gregory S.; Shuman, Teodora Rutar – IEEE Transactions on Education, 2022
Contribution: This article presents an innovative course sequence to integrate Electrical Engineering (EE) Fundamentals into the Mechanical Engineering (ME) Instrumentation and Data Acquisition (DAQ) course and reports students' experience relevant to the sequence's intended outcomes of helping students learn and connect EE concepts with ME…
Descriptors: Engineering Education, Universities, Program Descriptions, Student Experience
Binder, P.-M.; Collins, Topaz P.; Blacksmith, Kristal – Physics Teacher, 2020
The purpose of this paper is to describe a three-year limited-run offer of an energy science certificate in the University of Hawaii at Hilo campus, along with lessons learned that can be of use to other institutions considering comparable programs. Energy science is a loosely defined discipline that traditionally straddles physics and mechanical,…
Descriptors: Physics, Energy, Science Instruction, Science Curriculum
Cruz, Cristiano Cordeiro – European Journal of Engineering Education, 2021
Engineering and technology have a central role in shaping our reality that frequently goes unnoticed or not critically analyzed by engineers and engineering faculty and curricula. In so doing, the engineering that is taught, investigated (and improved), and practiced can unwittingly foster an ethical-political reality with which many engineers and…
Descriptors: Foreign Countries, Engineering Education, Ethics, Political Attitudes
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
Warner, Scott A.; Shearer, Korbin L.; Heidt, Garreth; Shoemaker, Korbin – Technology and Engineering Teacher, 2021
For as long as the profession of technology and engineering education (TEE) has existed (the addition of engineering to the professional title marks the official beginning of the profession, and that occurred in 2010), there has been a struggle. Arguably, this struggle's roots go back to the beginning of public education in the U.S. The struggle,…
Descriptors: Technology Education, Engineering Education, Technological Literacy, Educational Objectives
Cosgrove, Thomas; O'Reilly, John – European Journal of Engineering Education, 2020
Engineering education is appropriately concerned with technical problem solving. However, the philosophical tradition has periodically asserted that technical rationality is but one mode of rationality. Informed by experience in both design practice and engineering education the authors agree with Donald Schön that professional artistry is an…
Descriptors: Epistemology, Engineering Education, Outcomes of Education, Creativity
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
Arasaratnam-Smith, Lily A. – Research in Comparative and International Education, 2020
Developing intercultural communication competence (ICC) is a pursuit that has captured the interest of researchers in several disciplines for a number of decades. The urgency and interest to produce graduates who are ready for the global marketplace has never been more prevalent amongst educators as it is today. This article outlines strategies…
Descriptors: Teaching Methods, Intercultural Communication, Communicative Competence (Languages), Curriculum Development
Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela – European Journal of Engineering Education, 2021
Many traditional engineering schools are struggling to balance the calls to provide an innovative engineering education that meet the demands of graduates and their employers with the constraints and momentum of their existing curriculum. In this paper we present the conceptual design behind a framework that integrates existing discipline-specific…
Descriptors: Research Universities, Problem Based Learning, Engineering Education, Teaching Methods
Adams, Robin S.; Brightman, Andrew O.; DeBoer, Jennifer; Jamieson, Leah H.; Oakes, William C.; Riley, Donna M.; Rudin, Paige – Advances in Engineering Education, 2021
Purdue University's commitments as a public land grant institution that purposefully integrates education, research, and service has enabled the university to develop as a site of innovation and impact at scale, making strategic investments and taking bold risks that produce benefits within wider social, political, and economic systems. We present…
Descriptors: Engineering Education, Access to Education, Organizational Culture, Institutional Mission
Coblentz, Dori; Realff, Mary Lynn; Alemdar, Meltem – Advances in Engineering Education, 2021
The Effective Team Dynamics (ETD) Initiative at Georgia Tech developed curriculum to improve function of student teams. ETD uses the language of CliftonStrengths® to help students identify the areas in which they are the strongest and to apply those strengths to interpersonal contexts. ETD has developed curriculum for five "Touchpoints,"…
Descriptors: Teamwork, Engineering Education, Teaching Methods, Minority Group Students
Chiu, Jennifer L.; Fick, Sarah J.; McElhaney, Kevin W.; Alozie, Nonye; Fujii, Reina – Journal of Pre-College Engineering Education Research, 2021
This paper addresses an important consideration for promoting equitable engineering instruction: understanding how teachers contextualize curricular materials to draw upon student and community resources. We present a descriptive case study of two 5th grade teachers who co-designed a Next Generation Science Standards (NGSS)-aligned curricular unit…
Descriptors: Engineering Education, Teaching Methods, Grade 5, Elementary School Students
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
Randles, Sally; Dewick, Paul; Hannan, Eleanor; Nicholson, Dawn Theresa; Rietbergen, Martijn; Taylor, Christopher; Vargas, Valeria Ruiz; Wadham, Helen; Withycombe Keeler, Lauren – Journal of International Education in Business, 2022
Purpose: This study aims to present theory, practice and original research findings to support the proposition that broad enquiry and problem-based learning (EPBL) approaches provide an appropriate pedagogical lens for sustainability educators to develop the knowledge and skills needed to work effectively within mission-oriented innovation policy…
Descriptors: Teaching Methods, Learning Processes, Problem Based Learning, Undergraduate Students