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Emma Stine; Amy Javernick-Will; Tiera Tanksley – Journal of Civil Engineering Education, 2025
Humanitarian engineering (HE) graduate programs aim to improve environmental and social equity by training engineers to identify and rectify disparities in infrastructure services. While these programs help increase the engineering field's focus on equity, students involved in HE activities have reported questioning their ability to have a social…
Descriptors: Graduate Students, Engineering Education, Career Development, Occupational Aspiration
Thomas Meadowcroft – Chemical Engineering Education, 2025
Most core process control courses teach skills little used in industrial practice. In contrast, learning how process objectives translate to control objectives in the form of continuous feedback controls, continuous and discrete logic, and sequential logic for batch operations is more relevant to practicing chemical engineers. These design and…
Descriptors: Chemical Engineering, Design, Communication Skills, Thinking Skills
Martha Tatiana Pamela Jiménez-Valderrama; Francisco Niño-Rojas; Weimar Muñoz Villate; Oscar Espinel – Mathematics Teaching Research Journal, 2025
In this article, we analyzed the levels of reading comprehension: literal, inferential, and critical, using a diagnostic test about the understanding of the Mean Value Theorem (MVT) in engineering students of the Universidad de La Salle in the Calculus I lecture (Differential Calculus). The objectives of this article are to identify in which of…
Descriptors: Reading Comprehension, Mathematical Logic, Engineering Education, Calculus
Eric Schearer; Cameron LaMack; Hannah LaMack – Biomedical Engineering Education, 2025
Purpose: Measurable results of efforts to teach empathy to engineering students are sparse and somewhat mixed. This study's objectives are (O1) to understand how empathy training affects students' professional development relative to other educational experiences, (O2) to track empathy changes due to training over multiple years, and (O3) to…
Descriptors: Engineering Education, Empathy, Training, Disabilities
Gabrielle Lam; Isgard Hueck; Christian Rivera; Patricia Widder – Biomedical Engineering Education, 2025
Biomedical engineering is a rapidly evolving field, with the pace of evolution spurred by technological advancements, the increasing complexity of human health challenges, and globalization of the workforce. It is timely for biomedical engineering educators to explore afresh the competencies that graduates need at present, but more importantly,…
Descriptors: Biomedicine, Engineering Education, College Graduates, Futures (of Society)
Jennifer L. Leight; Brian P. Helmke; Alyssa C. Taylor; Sabia Z. Abidi – Biomedical Engineering Education, 2025
At the Fifth Biomedical Engineering (BME) Education Summit in 2024, the BME education professional community discussed diversity, equity, and inclusion (DEI) in a series of workshops. The goals were to identify professional competencies related to DEI that support students after graduation, to outline strategies for including DEI principles in…
Descriptors: Inclusion, Educational Environment, Professional Development, Biomedicine
Tiyamike Ngonda; Virginia Ngonda – Education & Training, 2025
Purpose: This article reports on a study that explored how individual factors, such as students' participatory actions and agentic factors, interact with the workplace contextual factors to create workplace learning environments that facilitate or hinder student learning. Design/methodology/approach: The study followed a qualitative approach. It…
Descriptors: Engineering Education, Student Participation, Personal Autonomy, Work Based Learning
Andrea Ferrari; Anna Corinna Cagliano; Giovanni Zenezini; Antonio Carlin; Giulio Mangano – Decision Sciences Journal of Innovative Education, 2025
In recent years, automated warehouses have become increasingly important to meet the rising demand of supply chain operations. Despite their growing relevance to industry, these systems remain largely underrepresented in academic settings, which contributes to a significant gap in student knowledge and preparedness. Traditional educational…
Descriptors: Experiential Learning, Business Education, Undergraduate Students, Graduate Students
Carmen Lewis; Karin Wolff; Bernard Bekker – European Journal of Engineering Education, 2025
Rapidly evolving technological markets in the so-called knowledge economy have resulted in increased pressure on postgraduate (PG) engineering cohorts to produce research outputs that meet the disparate requirements of both Higher Education (HE) and the knowledge economy. The latter expects a product that is not always explicitly linked to the…
Descriptors: Cognitive Development, Graduate Students, Engineering Education, Communities of Practice
Abdullah Konak; Sadan Kulturel-Konak; David R. Schneider; Khanjan Mehta – European Journal of Engineering Education, 2025
Universities have developed various informal learning experiences, such as design challenges, hackathons, startup incubator competitions, and accelerator programs that engage students in real-world challenges and enable environments for creative problem-solving. However, limited studies explain the extent and nature of the impact of student…
Descriptors: Universities, College Students, Informal Education, Engineering Education
Philippa Martin; Shanee Barraclough – European Journal of Engineering Education, 2025
We describe one Academic Dean's experience of redesigning academic warning (AW) processes with first-year engineering students in a New Zealand University, after learning, developing, and applying the concepts and techniques of solution-focused (SF) brief therapy. These AW processes were changed from a deficit and failure orientation to a focus on…
Descriptors: College Freshmen, Engineering Education, Foreign Countries, Academic Advising
Shams El-Adawy; A.?R. Piña; Benjamin M. Zwickl; H. J. Lewandowski – Physical Review Physics Education Research, 2025
As the need for a quantum-ready workforce grows, educators in quantum information science and engineering (QISE) face the challenge of aligning their programs and courses with industry needs. Through a series of interviews with program directors and faculty across 15 different institutions, we identified the considerations that educators are…
Descriptors: Physics, Quantum Mechanics, Engineering Education, Information Science
Amit Paikrao; Jyoti Shaha; Ramkumar Rajendran; Ritayan Mitra – International Association for Development of the Information Society, 2025
Modern electrical grids are becoming increasingly complex, requiring engineers who can adapt, justify their actions, and exercise sound professional judgment. Yet, many graduates struggle to demonstrate these expert traits despite strong academic performance. A key challenge in engineering education is locating where learners fall along the…
Descriptors: Expertise, Engineering Education, Design, Novices
Elizabeth A. Sanders; Molly H. Goldstein; Justin L. Hess – International Journal of Technology and Design Education, 2024
Engineers contribute to large-scale socio-technical challenges, and human-centered design offers a design thinking approach that helps engineers develop a thorough understanding of the socio-technical effects of their design work. Thus, effective strategies for assessing and teaching human-centered design are needed. This study aimed to identify…
Descriptors: Course Content, Human Factors Engineering, Student Experience, Instructional Design
Natalie De Lucca; Jessica Watkins; Rebecca D. Swanson; Merredith Portsmore – Journal of Engineering Education, 2024
Background: Engineering's introduction into K-12 classrooms has been purported to support meaningful and inclusive learning environments. However, teachers must contend with dominant discourses embedded in US schooling that justify inequitable distributions of resources. Purpose: Drawing on Gee's notion of discourses, we examine how teachers…
Descriptors: Engineering, Engineering Education, Elementary School Teachers, Elementary Secondary Education

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