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Missingham, Dorothy; Shah, Siddarth; Sabir, Fizza – Journal of University Teaching and Learning Practice, 2018
Problem solving and researching are connected activities in the engineering profession and across education. The empirical research presented in this paper considered the effectiveness for teaching and learning of a model that was based on this connection and derived from the parameters of the Research Skill Development framework. The model,…
Descriptors: Problem Solving, Research Skills, Engineering Education, Undergraduate Students
Hagge, Mathew; Amin-Naseri, Mostafa; Jackman, John; Guo, Enruo; Gilbert, Stephen B.; Starns, Gloria; Faidley, Leann – Advances in Engineering Education, 2017
Students learn when they connect new information to existing understanding or when they modify existing understanding to accept new information. Most current teaching methods focus on trying to get students to solve problems in a manner identical to that of an expert. This study investigates the effectiveness of assessing student understanding…
Descriptors: Intelligent Tutoring Systems, Thermodynamics, Problem Solving, Decision Making
Clark, Renee M.; Mahboobin, Arash – IEEE Transactions on Education, 2018
Background: Engineering programs must equip students to solve open-ended workplace problems. However, the literature points to actual or potential difficulties faced by students in solving open-ended or complex problems. During Fall 2014, the authors' students experienced difficulties in solving open-ended bio-signals laboratory problems of…
Descriptors: Scaffolding (Teaching Technique), Problem Solving, Case Studies, Biotechnology
Makransky, Guido; Borre-Gude, Stefan; Mayer, Richard E. – Journal of Computer Assisted Learning, 2019
The main objective of this study was to examine the effectiveness of immersive virtual reality (VR) as a medium for delivering laboratory safety training. We specifically compare an immersive VR simulation, a desktop VR simulation, and a conventional safety manual. The sample included 105 first year undergraduate engineering students (56 females).…
Descriptors: Computer Simulation, Self Efficacy, Learning Motivation, Comparative Analysis
Eren-Sisman, E. N.; Cigdemoglu, C.; Geban, O. – Chemistry Education Research and Practice, 2018
This study aims to compare the effectiveness of a Peer-Led Team Learning (PLTL) model with that of traditional college instruction (TCI) in enhancing the conceptual understanding and reducing both the state anxiety and social anxiety of undergraduate engineering students in a general chemistry course in a quasi-experimental design. 128 engineering…
Descriptors: Undergraduate Students, Anxiety, Engineering Education, Quasiexperimental Design
Van Meter, Peggy N.; Firetto, Carla M.; Turns, Stephen R.; Litzinger, Thomas A.; Cameron, Chelsea E.; Shaw, Charlyn W. – Journal of Engineering Education, 2016
Background: We tested the effects of an intervention on the learning of introductory thermodynamics principles. This intervention, OEM-Thermo, is designed to prompt the cognitive operations of meaningful learning: organization, elaboration, and monitoring. We also sought evidence to show that execution of these operations was associated with…
Descriptors: Thermodynamics, Teaching Methods, Intervention, Prompting
Baytiyeh, Hoda; Naja, Mohamad K. – European Journal of Engineering Education, 2017
The flipped classroom model is an innovative educational trend that has been widely adopted in the social sciences but not engineering education. In this model, an active instructional approach shifts the educational strategy from a teacher- to a student-centred approach. The purpose of this study is to compare the learning outcomes of engineering…
Descriptors: Case Studies, Engineering Education, Student Attitudes, Teaching Models
Torres-Crespo, Marisel N.; Kraatz, Emily; Pallansch, Lindsey – SRATE Journal, 2014
The article describes the process of developing and implementing a STEM Summer Camp that allowed Preschoolers to experiment and investigate with materials while learning basic concepts of science, technology, engineering, and mathematics (STEM) through play as part of the educational process. The participants were presented with problems that they…
Descriptors: STEM Education, Play, Summer Programs, Problem Solving
Johnson, Amy M.; Butcher, Kirsten R.; Ozogul, Gamze; Reisslein, Martin – IEEE Transactions on Education, 2014
Novice learners are typically unfamiliar with abstract engineering symbols. They are also often unaccustomed to instructional materials consisting of a combination of text, diagrams, and equations. This raises the question of whether instruction on elementary electrical circuit analysis for novice learners should employ contextualized…
Descriptors: Electronics, Equipment, Engineering Education, Visual Aids
Marra, Rose M.; Steege, Linsey; Tsai, Chia-Lin; Tang, Nai-En – International Journal of STEM Education, 2016
Background: Working effectively in a collaborative team is not only an outcome required by ABET but also one that scholars and practitioners recognize as necessary for being a successful professional engineer. Technology-based solutions hold promise for supporting collaboration; however, research has shown that technology alone is not sufficient…
Descriptors: Engineering Education, Teamwork, Cooperative Learning, Problem Solving
Balta, Nuri; Awedh, Mohammad Hamza – European Journal of Educational Research, 2017
Advanced technology helps educational institutes to improve student learning performance and outcomes. In this study, our aim is to measure and assess student engagement and collaborative learning in engineering classes when using online technology in solving physics problems. The interactive response system used in this study is a collaborative…
Descriptors: Cooperative Learning, Physics, Problem Solving, Engineering Education
Martin, Taylor; Peacock, Stephanie Baker; Ko, Pat; Rudolph, Jennifer J. – Journal of Pre-College Engineering Education Research, 2015
Although the consensus seems to be that high-school-level introductory engineering courses should focus on design, this creates a problem for teacher training. Traditionally, math and science teachers are trained to teach and assess factual knowledge and closed-ended problem-solving techniques specific to a particular discipline, which is unsuited…
Descriptors: Teacher Education, Faculty Development, Engineering, Engineering Education
Pizzolato, Nicola; Fazio, Claudio; Sperandeo Mineo, Rosa Maria; Persano Adorno, Dominique – Physical Review Special Topics - Physics Education Research, 2014
This paper addresses the efficacy of an open-inquiry approach that allows students to build on traditionally received knowledge. A sample of thirty engineering undergraduates, having already attended traditional university physics instruction, was selected for this study. The students were involved in a six-week long learning experience of…
Descriptors: Inquiry, Active Learning, Undergraduate Students, Engineering Education
Kollöffel, Bas; de Jong, Ton – Interactive Learning Environments, 2016
Feedback indicating how well students are performing during a learning task can be very stimulating. In this study with a pre- and post-test design, the effects of two types of performance feedback on learning results were compared: feedback during a learning task was either stated in terms of how well the students were performing relative to…
Descriptors: Foreign Countries, Secondary School Students, Vocational Education, Engineering Education
Starling, A. Leyf Peirce; Lo, Ya-Yu; Rivera, Christopher J. – Journal of the American Academy of Special Education Professionals, 2015
This study evaluated the differential effects of three different science teaching methods, namely engineering teaching kit (ETK), explicit instruction (EI), and a combination of the two methods (ETK+EI), in two sixth-grade science classrooms. Twelve students with learning disabilities (LD) and/or attention deficit hyperactivity disorder (ADHD)…
Descriptors: Science Education, Middle School Students, Problem Solving, Tests
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