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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
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
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
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
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
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
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
Stephen Secules – European Journal of Engineering Education, 2023
This paper examines specific problems of educational practice that I, an undergraduate engineering educator and education researcher, have encountered in creating an interdisciplinary engineering project course. I reveal my process of theorising about problems of practice to position engineering educators' pedagogical theorising as worthy of…
Descriptors: Engineering Education, Undergraduate Study, Interdisciplinary Approach, Problems
Hagvall Svensson, Oskar; Adawi, Tom; Johansson, Anders – Higher Education: The International Journal of Higher Education Research, 2022
Educational authenticity occupies a strong position in higher education research and reform, building on the assumption that correspondence between higher education learning environments and professional settings is a driver of student engagement and transfer of knowledge beyond academia. In this paper, we draw attention to an overlooked aspect of…
Descriptors: Authentic Learning, Higher Education, Educational Environment, Learner Engagement
Jessie Webb – ProQuest LLC, 2023
In 2013, a new set of science standards was introduced for K-12 science education, called the Next Generation Science Standards (NGSS), which focused on three dimensions of science learning that work together: disciplinary core ideas, crosscutting concepts, and science and engineering practices. These standards are novel in their emphasis on…
Descriptors: Educational Practices, Academic Standards, Elementary Secondary Education, Engineering Education
Breen, Kimberly C.; Dotson, Mary Elizabeth; Madonna, Megan C.; Asturias, Gabriela; Pena, Daniela Mariucci; Springate, Hope; Alvarez, Valentina; Ramanujam, Nimmi – Advances in Engineering Education, 2023
Background: Through the human-centered design process (HCD), students, referred to as learners, can use a personal lens to contextualize engineering concepts and solve real-world problems (Goldman and Kabayadondo 2016). The Ignite program, created by the Center for Global Women's Health Technologies (GWHT) at Duke University, integrates the HCD…
Descriptors: Design, Thinking Skills, STEM Education, Intervention
Tina Vo; Rebekah Hammack; Paul Gannon; Nicholas Lux; Blake Wiehe; Miracle Moonga; Brock LaMeres – Journal of Science Teacher Education, 2024
As we prepare teachers to provide students with opportunities within STEM education, authentic experiences should guide the instruction. Unfortunately, due to the novel integration of engineering into national reform documents, there is a dearth of documentation on elementary preservice teachers' engineering ideas as they align with student goals…
Descriptors: Majors (Students), Engineering Education, Authentic Learning, Educational Change
Karim, Azharul; Campbell, Matthew; Hasan, Mahbub – Curriculum Journal, 2020
This paper reflects on the introduction of project-based learning (PBL) into a postgraduate engineering management unit, as a form of work-integrated learning (WIL) extending the practice of students and their engagement with industry. The real life and authentic PBL was designed and implemented in extensive consultation with industry…
Descriptors: Active Learning, Student Projects, Graduate Students, Engineering Education
Aadland, Torgeir; Aaboen, Lise – European Journal of Engineering Education, 2020
The future engineer is labelled an entrepreneurial engineer, having networking, teamwork, opportunity recognition, creativity, risk management, and discipline-specific skills. Therefore, entrepreneurship education is being increasingly introduced in engineering education. The various educational designs used to introduce entrepreneurship education…
Descriptors: Entrepreneurship, Engineering Education, Authentic Learning, 21st Century Skills
Petrovic, Juraj; Pale, Predrag – IEEE Transactions on Education, 2021
Contribution: This article describes and evaluates a novel undergraduate communication skills course for engineering students. The course focuses on improving student communication skills by using interactive lectures and authentic assessment activities in a scalable manner. Background: Published studies and reports suggest communication skills…
Descriptors: Interaction, Communication Skills, Undergraduate Students, Student Attitudes