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Thi-Huyen, Nguyen; Xuan-Lam, Pham; Thanh Tu, Nguyen Thi – Eurasian Journal of Educational Research, 2021
Purpose: In this study, we presented the Design Thinking model called DITC (Design Thinking in Class) and conducted an experiment during one month with 197 engineering students at Hanoi University of Technology (HUST) to determine how this model could aid in the growth of problem solving and teamwork mindset in a flipped classroom. Method: A…
Descriptors: Thinking Skills, Design, Problem Solving, Teamwork
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Anith Khairunnisa Ghazali; Nor Azlina Ab. Aziz; Kamarulzaman Ab. Aziz; Neo Tse Kian – Cogent Education, 2024
The state of virtual reality (VR) development is mature enough to be explored for application in various fields including higher education teaching, research, and training including engineering education. Traditionally, engineering education relied on diagrams and images to describe various systems and objects, sometimes accompanied by laboratory…
Descriptors: Computer Simulation, Technology Uses in Education, Engineering Education, Visual Aids
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Mueller, Jenna L.; Dotson, Mary Elizabeth; Dietzel, Jennifer; Peters, Jenna; Asturias, Gabriela; Cheatham, Amelia; Krieger, Marlee; Taylor, Baishakhi; Broverman, Sherryl; Ramanujam, Nirmala – Advances in Engineering Education, 2020
Background: Engineering design is widely recognized as a field that can generate key innovations for complex problems, such as those elucidated in the Sustainable Development Goals (SDGs). However, engineering design training is not widely accessible to the global community, particularly to people experiencing the challenges that the SDGs are…
Descriptors: Design, Human Factors Engineering, Engineering Education, Sustainable Development
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Brown, Shane; Lutz, Ben; Perova-Mello, Natasha; Ha, Oai – Journal of Engineering Education, 2019
Background: Conceptual understanding is critical to both engineering education and practice. In fact, many undergraduate courses focus on developing students' knowledge and understanding of core engineering concepts. At the same time, a growing body of literature points to substantial gaps across educational and professional practice contexts,…
Descriptors: Scores, Concept Formation, Engineering Education, Undergraduate Students
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González, José Antonio; Giuliano, Mónica; Pérez, Silvia N. – Education and Information Technologies, 2022
Research on impact in student achievement of online homework systems compared to traditional methods is ambivalent. Methodological issues in the study design, besides of technological diversity, can account for this uncertainty. Hypothesis: This study aims to estimate the effect size of homework practice with exercises automatically provided by…
Descriptors: Undergraduate Students, Engineering Education, Electronic Learning, Problem Solving
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Stout, Jody; Rouse, Rob; Malesic, Jonathan; Krummeck, Katie – Science and Children, 2022
Design thinking--a human-centered approach to problem solving--is a process by which K-12 teachers engage students in solving relevant issues that occur in their schools. In this article, the authors describe a project in which fourth-graders used design thinking to solve an unexpected issue related to a much-anticipated class project. The project…
Descriptors: Grade 4, Elementary School Students, Design, Animals
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Baligar, Preethi; Mallibhat, Kaushik; Kavale, Sanjeev; Joshi, Gopalkrishna – IEEE Transactions on Education, 2022
Contribution: This study identifies the attributes of complexity that can be incorporated into engineering design problems at first-year undergraduate engineering projects. The findings are compiled as a set of guidelines to aid engineering educators in crafting design problems. Background: Engineering professionals solve complex problems like…
Descriptors: Engineering Education, Design, Problem Solving, College Freshmen
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Kozlova, Mariia; Yeomans, Julian Scott – INFORMS Transactions on Education, 2022
Monte Carlo (MC) simulation is widely used in many different disciplines in order to analyze problems that involve uncertainty. Simulation decomposition has recently provided a simple, but powerful, advancement to the standard Monte Carlo approach. Its value for better informing decision making has been previously shown in the investment-analysis…
Descriptors: Monte Carlo Methods, Interdisciplinary Approach, Problem Solving, Geology
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Hechter, J.; Stols, G.; Combrinck, C. – African Journal of Research in Mathematics, Science and Technology Education, 2022
The literature describes different stances concerning the focus on how mathematics should be taught, with some preferring a conceptual knowledge approach and others a procedural knowledge approach. The current study investigated the relationship between students' conceptual and procedural knowledge in a calculus context. To better understand the…
Descriptors: Calculus, Mathematics Instruction, Teaching Methods, Problem Solving
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Hurtado, Orlando Garcia; Camargo, Julian; Díaz, Miguel – Journal of Language and Linguistic Studies, 2022
This article shows results on the simulation of partial differential equations such as the heat equation, the Laplace equation and the wave equation in a course called mathematical methods at a university in Bogotá Colombia. In this course, the concept of partial differential equations and different solution methods were explained to them, both in…
Descriptors: Mathematics Instruction, Teaching Methods, Calculus, Equations (Mathematics)
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Routhe, Henrik Worm; Holgaard, Jette Egelund; Kolmos, Anette – IEEE Transactions on Education, 2023
Contribution: This research paper contributes to engineering education research with a framework for interdisciplinary learning outcomes based on students' experiences from participation in an interdisciplinary project for engineering students. A theoretical frame of reference is developed to analyze students' experience with interdisciplinary…
Descriptors: Outcomes of Education, Student Projects, Interdisciplinary Approach, Case Studies
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Quadir, Benazir; Mostafa, Kazi; Yang, Jie Chi; Shen, Juming; Akter, Rokaya – Education and Information Technologies, 2023
This study used the ARCS approach to investigate the effects of university students' motivation, including attention, relevance, confidence, and satisfaction, to use the Programming Teaching Assistant (PTA) on their Programming Problem-Solving Skills (PPSS). Previous studies have shown that PTA features enhance learners' programming performance,…
Descriptors: Programming Languages, Computer Science Education, Problem Solving, Student Motivation
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Desha, Cheryl; Caldera, Savindi; Hutchinson, Deanna – International Journal of Sustainability in Higher Education, 2021
Purpose: This study aims to explore the role of planned, sudden shifts in lived experiences, in influencing learner capabilities towards improved problem-solving for sustainable development outcomes. The authors responded to employers of engineering and built environment graduates observing limited "real-life" problem-solving skills,…
Descriptors: Context Effect, Sustainable Development, Problem Solving, Engineering
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Quan, Gina M.; Gupta, Ayush – Journal of Engineering Education, 2020
Background: Tinkering, an ad hoc approach to solving a problem, involves manipulating objects to characterize and build knowledge about a particular system in an exploratory way, often with the goal of getting some product/idea to produce desired behavior. Tinkering contrasts more deliberate activity toward understanding how a phenomenon works.…
Descriptors: Design, Problem Solving, Object Manipulation, Productivity
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Quelhas, Osvaldo Luiz Gonçalves; Lima, Gilson Brito Alves; Ludolf, Nicholas Van-Erven; Meiriño, Marcelo Jasmim; Abreu, Chrystyane; Anholon, Rosley; Vieira Neto, Julio; Rodrigues, Leandro Silva Goulart – International Journal of Sustainability in Higher Education, 2019
Purpose: This paper aims to deal with the skills for sustainable development in engineering courses. The main objective is to identify which competences should be developed in these courses to contribute to the resolution of conflicts related to sustainability, as well as the means used by universities for their development.…
Descriptors: Engineering Education, Sustainability, Competency Based Education, Specialists
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