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Natacha Souto-Melgar – Chemical Engineering Education, 2025
This paper describes the combination of problem-based learning (PBL) and simulation tools in the chemical engineering unit operation laboratory course, focusing on heat transfer concepts using a shell-and-tube heat exchanger experiment. This approach has significantly enhanced student learning outcomes by bridging theory with practice, fostering a…
Descriptors: Chemical Engineering, Heat, Problem Based Learning, Critical Thinking
Sasha Nikolic; Thomas F. Suesse; Sarah Grundy; Rezwanul Haque; Sarah Lyden; Ghulam M. Hassan; Scott Daniel; Marina Belkina; Sulakshana Lal – European Journal of Engineering Education, 2024
The literature on laboratory objectives in engineering education research is scattered and inconsistent. Systematic literature reviews identified the need for better understanding. This paper ranks the laboratory learning objectives across the cognitive, psychomotor and affective domains to improve scaffolding. It provides an opportunity for…
Descriptors: Engineering Education, Laboratories, Educational Objectives, Cognitive Processes
Biofabrication of Neural Organoids: An Experiential Learning Approach for Instructional Laboratories
Caroline Cvetkovic; Sarah Lindley; Holly Golecki; Robert Krencik – Biomedical Engineering Education, 2024
Biomedical engineering (BME) is a multidisciplinary, constantly advancing field; as such, undergraduate programs in BME must continually adapt. Elective courses provide opportunities for students to select topic areas relevant to their interests or future careers. Specifically, laboratory courses allow experiential learning in specialized topics…
Descriptors: Experiential Learning, Laboratories, Biomedicine, Engineering Education
Tom O'Mahony; Martin Hill; Raul Onet; Marius Neag; Luis de la Torre Cubillo; Dao Zhou – European Journal of Engineering Education, 2024
Research exploring the advantages and limitations of different laboratory modes on student learning is critical so that engineering instructors can design hybrid/blended laboratories to maximise student learning. However, limited research explores the impact of take-home laboratories on student learning. This article documents the impact that the…
Descriptors: Foreign Countries, Universities, College Students, College Science
Faridaddin Vahdatikhaki; Ilona Friso-van den Bos; Sajad Mowlaei; Bas Kollöffel – European Journal of Engineering Education, 2024
Practical laboratory sessions are essential for engineering education, demanding efficient use of limited time. In recent years, Virtual Reality (VR) technologies have introduced Virtual Laboratories (VLs), offering the potential to enhance students' educational experience. Despite their potential, VLs are rarely utilised in civil engineering…
Descriptors: Laboratories, Virtual Classrooms, Gamification, Computer Simulation
Annica Gullberg; Kristina Andersson; Jenny Ivarsson; Henni Söderberg – Journal of Technology Education, 2025
Practical activities are at the core of learning in both engineering and science education programs. Hence, such activities are included as important practical learning experiences in each of these fields. During such learning experiences students are confronted by many different entities, from simple equipment to advanced instrumentation, all of…
Descriptors: Engineering Education, Learning Activities, Psychological Patterns, Learning Processes
Samuel B. Gavitte; Milo D. Koretsky; Jeffrey A. Nason – Journal of Computing in Higher Education, 2025
Laboratory activities are central to undergraduate student learning in science and engineering. With advancements in computer technology, many laboratory activities have shifted from providing students experiments in a physical mode to providing them in a virtual mode. Further, physical and virtual modes can be combined to address a single topic,…
Descriptors: Affordances, Computer Simulation, Science Laboratories, Engineering Education
Ting-Ting Wu; Edi Sarwono; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Virtual laboratories are used to supplement or even replace physical laboratories in engineering education. Although these virtual laboratories allow students to learn foundational experimental skills, they do not provide the learners with the chance to develop higher-order thinking skills (HOTS). Computational thinking (CT) is an…
Descriptors: Computation, Thinking Skills, Computer Simulation, Laboratories
Sumant S. Patankar – Chemical Engineering Education, 2024
The semiconductor industry offers ample employment opportunities for chemical engineers. The CHIPS Act prioritizes workforce training as a key contributor to the success and growth of semiconductor manufacturing. UF ChE teaches semiconductor processing lab modules to both undergraduate and graduate students. At the graduate level UF ChE offers…
Descriptors: Engineering Education, Electronic Equipment, Photography, Design
Kiya Lasater; Natalie J. McDonald; Thang Tran; David Pershing – Chemical Engineering Education, 2025
This paper describes an innovative, new, laboratory experiment conceived as a Senior Capstone Project by the student authors to provide experience with heat pipes for students in our junior-year Process Laboratory course at the University of Utah. Heat pipes can transport energy over long distances with minimal temperature gradients and no moving…
Descriptors: Laboratory Experiments, Science Experiments, Heat, Energy
Suzanne Lightsey; Michele Dill; Madison Temples; Taylor Yeater; Sarah Furtney – Biomedical Engineering Education, 2024
Hands-on laboratory courses seldom appear in biomedical engineering (BME) graduate programs, thus limiting graduate students' ability to acquire wet laboratory skills like cell culturing. At large, BME graduate programs rely on ad hoc training provided by senior graduate students; however, this method cannot be extended to new or non-BME…
Descriptors: Graduate Students, Engineering Education, Biomedicine, Cooperative Learning
Keita Yasuda; Izuru Senaha – Journal of Chemical Education, 2024
Clathrate hydrates are attractive materials for education because they form from water and familiar compounds, such as carbon dioxide, and are relevant to novel technologies. In this study, an attempt to propose a laboratory experiment was summarized, which used carbon dioxide clathrate hydrate as an educational material with carbon capture…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Energy
Radhika Kulkarni; Rajat Harne – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: The study seeks to utilize Augmented Reality (AR) in creating virtual laboratories for engineering education, focusing on enhancing teaching methodologies to facilitate student understanding of intricate and theoretical engineering principles while also assessing engineering students' acceptance of such laboratories. Background: AR, a…
Descriptors: Computer Simulation, Laboratory Experiments, Engineering Education, Educational Technology
Long Teng; Yuk Ming Tang; Raymond P. H. Wu; Gary C. P. Tsui; Yung Po Tsang; Chak Yin Tang – Smart Learning Environments, 2024
In today's world, remote-controlled robots are widely used across various industries due to their ability to enhance working efficiency in various applications. Learning about robot operation and human-computer interaction has emerged as a popular topic in recent times. Indeed, learning robotics can be challenging for many students as it requires…
Descriptors: Cooperative Learning, Robotics, Teaching Methods, Instructional Effectiveness
Carlos J. Landaverde-Alvarado – Chemical Engineering Education, 2024
We redesigned our undergraduate laboratories to create a structured sequence that continuously improves the learning experience of students. We utilized a PBL and PjBL approach in which students are progressively introduced to ill-structured open-ended problems, the development of projects, and the creation of research products. We dynamically…
Descriptors: Student Projects, Active Learning, Problem Based Learning, Undergraduate Students