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Showing 1 to 15 of 49 results Save | Export
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Susanne Hilger; Angela Schmitz – IEEE Transactions on Education, 2024
Contribution: The article describes an innovative concept to create authentic application examples for mathematics courses in an engineering degree program in order to illustrate the relevance of mathematics for engineering. Background: It can be difficult and time consuming for mathematics instructors to find and understand authentic…
Descriptors: Mathematics Education, Engineering Education, Interdisciplinary Approach, College Students
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Katrien Van Poeck; Ellen Vandenplas; Leif Östman – Environmental Education Research, 2024
Knowledge about sustainability problems as it is typically taught does not "per se" lead to action for tackling these problems. Environmental and sustainability education researchers have argued for teaching more action-oriented knowledge. This article addresses the 'didactical work' required for teachers to do so, both in preparing and…
Descriptors: Environmental Education, Sustainability, Teaching Methods, Instructional Development
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Cecilia Madero-Gonzalez; Jesus Vazquez-Hernandez; Fernando Gonzalez Aleu – Quality Assurance in Education: An International Perspective, 2025
Purpose: This study aims to examine the impact of gamification on the five dimensions of meaningful learning (i.e. cooperative, active, authentic, constructive and intentional learning) and undergraduate student performance taking online lessons. Design/methodology/approach: Therefore, the authors conducted an experiment among undergraduate…
Descriptors: Gamification, Undergraduate Students, Online Courses, Engineering Education
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Diana Adela Martin; Gunter Bombaerts – European Journal of Engineering Education, 2025
Challenge Based Learning (CBL) is an educational approach that has gained popularity in response to the need for authentic learning environments. While the CBL literature is predominantly focused on cases of pedagogical implementations, the actual processes by which students develop CBL projects remain under-investigated. This shortitudinal study…
Descriptors: Student Projects, Active Learning, Difficulty Level, Student Behavior
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Boettcher, K.; Terkowsky, C.; Schade, M.; Brandner, D.; Grünendahl, S.; Pasaliu, B. – European Journal of Engineering Education, 2023
A newly-developed online laboratory experiment in immersive virtual reality (VR) is used for process engineering students. A digital twin (DT) of a jet pump was realised using the game engine Unreal Engine 4. The chance was taken for an instructional redesign deviating from the conventional cookbook-experiment to better integrate the changing…
Descriptors: Computer Simulation, Laboratories, Engineering Education, Problem Solving
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Andrew Olewnik – IEEE Transactions on Education, 2024
Contribution: The experiences of three students in a co-curricular project-based design experience are explored. The objective is to characterize authentic and inauthentic (performative) forms of engagement and its potential impact on learning within an authentic experience. We consider these cases in supporting an argument for extensive…
Descriptors: Engineering Education, Learner Engagement, Student Experience, Extracurricular Activities
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Destenie Nock; Laura Pottmeyer; Alexana Cranmer – INFORMS Transactions on Education, 2025
Multiple studies call for engineering education to integrate social justice into classroom instruction. Yet, there is uncertainty regarding whether integrating these social topics into engineering curriculum will support or detract from the learning of technical concepts. This study focuses on evaluating how reframing technical assessments to…
Descriptors: Graduate Students, Engineering Education, Social Justice, Instructional Development
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Cook, Emily – International Journal of Research in Undergraduate Mathematics Education, 2021
A practice-based engineering degree, in which students worked on real-world, team-based projects from day one and throughout their course, was designed to address the need for employability skills in a rapidly changing world. Teaching mathematics in this way required a very different approach to the lecture-exam based model prevalent in most…
Descriptors: Engineering Education, Competence, Mathematics Achievement, Credentials
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David P. Reid; Timothy D. Drysdale – IEEE Transactions on Learning Technologies, 2024
The designs of many student-facing learning analytics (SFLA) dashboards are insufficiently informed by educational research and lack rigorous evaluation in authentic learning contexts, including during remote laboratory practical work. In this article, we present and evaluate an SFLA dashboard designed using the principles of formative assessment…
Descriptors: Learning Analytics, Laboratory Experiments, Electronic Learning, Feedback (Response)
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Burkholder, Eric; Hwang, Lisa; Wieman, Carl – Chemical Engineering Education, 2021
We have developed an assessment of authentic problem-solving in chemical engineering, which we used to measure students' problem-solving at the beginning and end of a cornerstone design course. We measured how much problem-solving students learned, and how these students compared with data collected from seniors at the beginning of the capstone…
Descriptors: Authentic Learning, Problem Solving, Chemical Engineering, Student Evaluation
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Nutwell, Emily; Stein, David – Journal of Continuing Higher Education, 2022
This study describes the experiences of four engineers participating in a 7-week long, asynchronous online continuing professional education (CPE) course addressing computational engineering techniques. The online learning environment combined with the virtual nature of computational engineering methods presents a novel environment for these…
Descriptors: Professional Continuing Education, Engineering Education, Online Courses, Workplace Learning
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Schmidt, Karsten; Winsløw, Carl – International Journal of Research in Undergraduate Mathematics Education, 2021
A central problem in undergraduate mathematics education for future engineers consists in the perceived and actual relevance of the mathematical content. One strategy to strengthen both is to let students experience how that content appears in posing and solving authentic problems from the field of engineering which the students have signed up to…
Descriptors: Authentic Learning, Engineering Education, Mathematics Activities, Undergraduate Students
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Gravel, Brian E.; Svihla, Vanessa – Journal of the Learning Sciences, 2021
Background: Design problems have long attracted researchers' attention for their potential to provide authentic learning opportunities. While we have methods for supporting students to learn through relatively simple engineering and design tasks, supporting students to address complex problems that they find and frame remains poorly understood.…
Descriptors: Engineering Education, Design, Authentic Learning, Educational Environment
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Feille, Kelly; Wildes, Annie N. – International Electronic Journal of Elementary Education, 2021
Incorporating authentic engineering practices into educative experiences in elementary school has the potential to positively impact student consideration of STEM careers and increase student self-efficacy in later engineering study. Additionally, as students move from primary to secondary grades, their interest in STEM topics tends to decline. To…
Descriptors: Independent Study, Engineering Education, Student Projects, Student Attitudes
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Susanne Engström; Helena Lennholm – International Journal of Technology and Design Education, 2025
In literature, teaching for an authentic learning experience is seen as rewarding and interesting, promoting better understanding of for example sustainable development and fostering students' independence. Some upper secondary schools emphasise authentic teaching and learning on their websites, showcasing how students engage in authentic tasks.…
Descriptors: Secondary School Students, Authentic Learning, Student Attitudes, Technology Education
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