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Courtney A. Pfluger; Jennifer R. Weiser; Kristine Horvat – Chemical Engineering Education, 2024
As understanding of STEM education pedagogy deepens, traditional lecture-based courses evolve to include new philosophies, such as active learning, project-based learning, and inquiry-based learning (IBL). Additionally, hands-on educational experiences at the early stages of an undergraduate program are seminal in propelling students into the…
Descriptors: Experiential Learning, Active Learning, Inquiry, Teaching Methods
Maria Giulia Ballatore – Springer, 2025
This book highlights the pivotal role that engineering education researchers can play at technical universities. By delving into both theoretical and practical aspects, it showcases the transformative potential of integrating rigorous educational research into technical education. The book begins by outlining the current landscape of engineering…
Descriptors: Engineering Education, Educational Practices, Technical Institutes, Transformative Learning
Falconer, John L.; Hendren, Neil – Chemical Engineering Education, 2021
A virtual catalytic reactor laboratory (VCRL) experiment, which can be used in most browsers, is described. Students select feed conditions and use the VCRL to take data for a gas-phase catalytic reaction and fit kinetic parameters to a Langmuir-Hinshelwood rate expression. The VCRL contains instructions, equipment descriptions, an animated…
Descriptors: Science Instruction, Computer Simulation, Laboratory Experiments, Laboratory Equipment
Sevgi Aydin-Günbatar; Gillian H. Roehrig – Science & Education, 2025
With the release of Framework for K-12 Science Education (National Research Council, 2012) and Next Generation Science Standards (2013) documents, engineering was integrated into science teaching. With that emphasis, teachers require to incorporate engineering practices and nature of engineering into their practice. Most of the attention has been…
Descriptors: Science Education, Elementary Secondary Education, Engineering, Academic Standards
Sinan Onal; Derya Kulavuz-Onal – Journal of Educational Technology Systems, 2024
This paper examines the potential uses of ChatGPT in generating assessment tasks that can be used across different disciplines in higher education. To illustrate this, we provide examples from three courses in the disciplines of industrial engineering and applied linguistics: Project Analysis and Control, Manufacturing Processes, and Introduction…
Descriptors: Teaching Methods, Higher Education, Artificial Intelligence, Synchronous Communication
Max Chen; Yichen Li; Hilson Shrestha; Noe¨lle Rakotondravony; Andrew Teixeira; Lane Harrison; Robert E. Dempski – Journal of Chemical Education, 2024
Industrial and academic laboratories are undergoing a paradigm shift in process technology from batch to modular flow. Implementation of modular flow processes can enable more efficient operation with superior throughput, scalability, and safety factors owing to superior transport and reaction kinetics. However, both fine chemical and…
Descriptors: Chemical Engineering, Chemistry, Undergraduate Students, Science Instruction
Zeynep Gül Dertli; Bahadir Yildiz – Journal of Inquiry Based Activities, 2025
In STEM education, the engineering design process serves as a pedagogical strategy to connect science and mathematics concepts. While STEM approaches are increasingly favored in science courses, the role of mathematics in integrated STEM activities is often overlooked, despite its foundational importance across STEM disciplines. This manuscript…
Descriptors: Mathematics Instruction, Teaching Methods, Scientific Concepts, Mathematical Concepts
Cantero-Chinchilla, F. N.; Díaz-Martín, C.; García-Marín, A. P.; Estévez, J. – Technology, Knowledge and Learning, 2020
Performance of engineering degree students often becomes an important concern for lectures. Using classical teaching methodologies in practical lectures may be behind the problem. The present work develops a couple of innovative student-response-system based methodologies designed to be implemented during engineering practical lessons in higher…
Descriptors: Instructional Innovation, Audience Response Systems, Engineering Education, Civil Engineering
Clay, John D.; Collins, Eric – Chemical Engineering Education, 2020
Generating a problem that addresses multiple course learning objectives can be a challenging, but worthwhile exercise for a professor. These types of problems are particularly useful late in a course to help students tie together seemingly disparate concepts to solve an integrated problem that requires them to review concepts mastered throughout…
Descriptors: Smoking, Electronic Equipment, Educational Objectives, Teaching Methods
Kari D. Weaver; Kate Mercer; Stephanie Mutch – Issues in Science and Technology Librarianship, 2024
This paper explores the connection between critical theory, information evaluation, and the instructional practice of critique for STEM students and librarian instructors. Using an emerging theory and instructional method, the authors examine how to more deeply include voices that have historically been excluded from STEM information critique. The…
Descriptors: Information Literacy, STEM Education, Critical Theory, Teaching Methods
Ji, Tianjian; Bell, Adrian; Wu, Yue – European Journal of Engineering Education, 2021
Structural concepts are fundamentals of civil engineering for students to learn, for lecturers to teach and for engineers to use. Many students however find it difficult to understand structural concepts due to their abstract nature. "Seeing and Touching Structural Concepts" has been developed as an approach to help civil engineering…
Descriptors: Educational Philosophy, Engineering Education, Theory Practice Relationship, Web Sites
Norström, Per; Hallström, Jonas – International Journal of Technology and Design Education, 2023
The common purpose of models is to provide simplified representations of other phenomena. Depending on type, they are suitable for communication, documentation, prognostication, problem solving, and more. Various types of models, such as drawings, mock-ups, flow charts, and mathematical formulae, are important tools in engineering work. An…
Descriptors: Secondary School Students, Engineering Education, Technology Education, Models
Jomeh, Sayyed Mahdi Emami; Tabatabei, Sayyed Mehran – Interchange: A Quarterly Review of Education, 2022
Mulla Sadra's philosophy has an ontological approach. However, his explicit texts or philosophical foundations in social issues such as education and especially the curriculum and its relationship with learning methods can be extracted. Mulla Sadra's different approach to learning has distinguished his educational system from other educational…
Descriptors: Learning Processes, Educational Philosophy, Social Problems, Teaching Methods
Meagan E. Ita; Gönül Z. Kaletunç; Katelyn E. Swindle-Reilly – Biomedical Engineering Education, 2023
Entrepreneurial minded learning (EML) is a pedagogical technique that gives students the tools to identify opportunities, focus on impact, and to create value through their solutions. The entrepreneurial mindset builds upon three key elements: curiosity, connections, and creating value (3 Cs). A biomedical engineering course was developed using…
Descriptors: Entrepreneurship, Student Attitudes, Biomedicine, Engineering Education
Wang, Li; Violet, Camille; DuChanois, Ryan M.; Elimelech, Menachem – Journal of Chemical Education, 2020
Minimizing the energy consumption of desalination processes is an important goal for augmenting freshwater production and mitigating water scarcity. Chemical, civil, mechanical, and environmental engineering students can derive and analyze the energy consumption of desalination processes by applying engineering fundamentals such as thermodynamics,…
Descriptors: Energy, Chemistry, Science Instruction, Engineering Education