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Craig A. Chin – Advances in Engineering Education, 2025
Differentiated instruction (DI) is a teaching approach in which learning experiences are designed and adapted to meet students' diverse needs to facilitate student success. Advocates of this approach have implemented it in primarily K-12 learning environments with limited investigations into implementing it in college/engineering course…
Descriptors: Individualized Instruction, Readiness, Engineering Education, Learning Modules
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Jessica L. S. Zylla; Alain B. Bomgni; Rajesh K. Sani; Mahadevan Subramaniam; Carol Lushbough; Robb Winter; Venkataramana R. Gadhamshetty; Parvathi Chundi; Etienne Z. Gnimpieba – Biomedical Engineering Education, 2024
Historically, research disciplines have successfully operated independently. However, the emergence of transdisciplinary research has led to convergence methodologies, resulting in groundbreaking discoveries. Despite the benefits, graduate programs face challenges in implementing transdisciplinary research and preparing students for real-world…
Descriptors: Research Methodology, Interdisciplinary Approach, Active Learning, Student Projects
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Md. Yunus Naseri; Caitlin Snyder; Katherine X. Perez-Rivera; Sambridhi Bhandari; Habtamu Alemu Workneh; Niroj Aryal; Gautam Biswas; Erin C. Henrick; Erin R. Hotchkiss; Manoj K. Jha; Steven Jiang; Emily C. Kern; Vinod K. Lohani; Landon T. Marston; Christopher P. Vanags; Kang Xia – IEEE Transactions on Education, 2025
Contribution: This article discusses a research-practice partnership (RPP) where instructors from six undergraduate courses in three universities developed data science modules tailored to the needs of their respective disciplines, academic levels, and pedagogies. Background: STEM disciplines at universities are incorporating data science topics…
Descriptors: Data Science, Courses, Research and Development, Theory Practice Relationship
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Yijia Hao; Yushi Liu; Bo Liu; George Amarantidis; Rami Ghannam – IEEE Transactions on Education, 2025
Contribution: The integration of artificial intelligence (AI) in engineering higher education is becoming increasingly important nowadays. This article contributes to the Scholarship of Integration by providing a comprehensive review of current research on AI integration in engineering higher education and presenting a pilot AI introductory module…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Artificial Intelligence
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Poor, C. J.; Dillon, H. E.; Chabert, A.; Bastida De Jesus, J. – Journal of Civil Engineering Education, 2020
This paper describes a laboratory experiment that was designed to improve engineering education in fluids and hydrology courses. The laboratory module is part of a broader effort to enhance the undergraduate engineering laboratory curriculum to incorporate modern pedagogical methods and to improve a defined set of student outcomes. The…
Descriptors: Laboratory Experiments, Earth Science, Engineering Education, Undergraduate Students
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Chichekian, Tanya; Trudeau, Joel; Jawhar, Tawfiq – Journal of Science Education and Technology, 2022
This study examined the effects of an Arduino microrobot activity on college students' interest in robotics through three specific objectives: (1) determining how students' conceptual understanding regarding the basics of microcomputing and computer programming changes after engaging in an engineering robotics learning module, (2) assessing the…
Descriptors: College Students, Student Interests, Robotics, Engineering Education
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Schettig, Erik J.; Kelly, Daniel P.; Ernst, Jeremy V.; Clark, Aaron C. – Journal of Technology Education, 2022
Success in post-secondary engineering graphics courses in technology and engineering often relies on self-efficacy, academic success, and mental rotation abilities. Using a facilitative instructor model, the Improving Undergraduate STEM Education (IUSE) team applied active learning modules as supplemental material at two post-secondary…
Descriptors: Engineering Education, Undergraduate Study, STEM Education, Active Learning
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Harichandran, Ronald S.; Erdil, Nadiye O.; Carnasciali, Maria-Isabel; Nocito-Gobel, Jean; Li, Cheryl – Advances in Engineering Education, 2018
An innovative approach to develop an entrepreneurial mindset in all undergraduate engineering and computer science students is being developed and implemented. The approach consists of the development of short e-learning modules on 18 entrepreneurial topics and the integration of these modules into regular courses in programs. A flipped classroom…
Descriptors: Entrepreneurship, Engineering Education, Electronic Learning, Computer Science Education
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Palego, Cristiano; Pierce, Iestyn – Education Sciences, 2020
Practical strategies for improving individual engagement and performance within an engineering team project learning environment were applied and evaluated. While methodological refinements were required due to the structural challenges and novelty of the practice, positive outcomes such as a perceived increase in engagement and technical…
Descriptors: Foreign Countries, Learner Engagement, Engineering Education, Academic Achievement
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Merck, Madeline F.; Gallagher, Melissa A.; Habib, Emad; Tarboton, David – International Journal of Research in Undergraduate Mathematics Education, 2021
Engineering students need to spend time engaging in mathematical modeling tasks to reinforce their learning of mathematics through its application to authentic problems and real world design situations. Technological tools and resources can support this kind of learning engagement. We produced an online module that develops students' mathematical…
Descriptors: Engineering Education, Mathematical Models, Mathematics Skills, Skill Development
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Onofrei, George; Ferry, Paul – International Journal of Educational Management, 2020
Purpose: Blended learning is an emerging trend across many educational settings, adopting the purposeful integration of traditional face-to-face and online teaching to establishing an engaging learning experience for the students. Blended learning provides an ideal platform for the implementation of reusable learning objects (RLOs) as a…
Descriptors: Blended Learning, Synchronous Communication, Instructional Effectiveness, College Freshmen
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Marasco, Emily; Behjat, Laleh; Kelly, Robert; Maguire, Shannon – Papers on Postsecondary Learning and Teaching, 2019
The significant global challenges faced in the world today require innovative solutions and creative thinking. In traditional postsecondary education, technical programs such as engineering often focus on technical competencies as opposed to creative thinking. However, as industry demands for creative technical employees continue to increase,…
Descriptors: Engineering Education, Art Education, Interdisciplinary Approach, Postsecondary Education
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Poboroniuc, Marian Silviu; Naaji, Antoanela; Ligusova, Jana; Grout, Ian; Popescu, Dorin; Ward, Tony; Grindei, Laura; Ruseva, Yoana; Bencheva, Nina; Jackson, Noel – World Journal on Educational Technology: Current Issues, 2017
The paper presents some results obtained through the implementation of the Erasmus LLP "SALEIE" (Strategic Alignment of Electrical and Information Engineering in European Higher Education Institutions). The aim of the project was to bring together experts from European universities to enhance the competitiveness of Electrical and…
Descriptors: Information Technology, Information Security, Computer Security, Engineering Education
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Andersson, Magnus; Weurlander, Maria – European Journal of Engineering Education, 2019
Here, we present a module to introduce student peer review of laboratory reports to engineering students. Our findings show that students were positive and felt that they had learnt quite a lot from this experience. The most important part of the module was the classification scheme. The scheme was constructed to mimic the way an expert would…
Descriptors: Peer Evaluation, Engineering Education, Positive Attitudes, Classification
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Moradi, Moein; Liu, Lin; Luchies, Carl; Patterson, Meagan M.; Darban, Behnaz – Education Sciences, 2018
This study explored the effectiveness of online instructional modules for providing supplementary instruction in basic mathematics and physics concepts. The modules were developed in accordance with a cognitive apprenticeship model. Participants (N = 47) were students enrolled in a required Statics course at a midwestern university. Participants…
Descriptors: Mathematics Instruction, Science Instruction, Physics, Learning Modules
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