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Tembrevilla, Gerald; Nesbit, Susan; Ellis, Naoko; Ostafichuk, Peter – Journal of Engineering Education, 2023
Background: For engineers who aim to address sustainability challenges, participating in transdisciplinary teams is key. Yet developing transdisciplinary knowledge, including systems thinking, metacognition, and empathic thinking, is not well supported in traditional engineering programs. Purpose: The extent to which selected learning activities…
Descriptors: Interdisciplinary Approach, Engineering Education, College Freshmen, Metacognition
Santos, José; Escórcio, Patrícia – European Journal of Engineering Education, 2022
Building Information Modelling (BIM) has changed the way many civil engineers organise and execute their job in recent years. Many universities around the world have been adapting their curricula to include BIM education. However, this adaptation has been incomplete, occurring only in a small number of subjects. To fill this gap, this paper…
Descriptors: Civil Engineering, Engineering Education, Construction (Process), Construction Management
Handan Ürek; Nilay Korkmaz; Gamze Dolu – Discover Education, 2025
Today, problems such as climate change, drought, food crises, and pandemics have once again brought the effective use of natural resources back on the agenda. With STEM + based activities, an interdisciplinary learning approach, students are expected to design a product that will solve a problem from daily life and add value to it. Based on these…
Descriptors: STEM Education, Sustainable Development, Secondary School Students, Student Attitudes
Quinn, Ethan S.; Sylcott, Brian; Green, Nathaneal T.; Walker, Joi P.; Hughes, Robert M. – Journal of College Science Teaching, 2023
Although undergraduate research experience has proven to have positive effects on student outcomes, such opportunities are not always widely available. Options can be especially limited for early-career engineering students who have limited research experience. One approach to addressing this issue is to partner engineering instructors with active…
Descriptors: Science Equipment, Computer Peripherals, Interdisciplinary Approach, Undergraduate Students
K. P. J. Fortuin; Judith T. M. Gulikers; Nynke C. Post Uiterweer; Carla Oonk; Cassandra W. S. Tho – European Journal of Engineering Education, 2024
The competence to work together and co-create with others outside one's own scientific domain, culture or professional practice is a critical competence for engineers to respond to global challenges. In this context, boundary crossing (BC) competence is crucial. We reflect on a university-wide participatory action research educational innovation…
Descriptors: Learning Trajectories, Engineering Education, Cooperative Learning, Interdisciplinary Approach
Elissa Milto; Chelsea Andrews; Merredith Portsmore; Christopher Wright – Eye on Education, 2025
"Introducing Engineering to K-8 Students" will provide you with the tools you need to incorporate engineering design into your classroom. Rather than prescribing a specific curriculum to follow, this book will help you engage your students with hands-on, open-ended engineering design problems that can be easily integrated into your…
Descriptors: Engineering, Design, Middle School Teachers, Elementary School Teachers
Jeffrey A. Anderson; Bryan B. Nguyen – PRIMUS, 2024
Many students who enroll in a first course in linear algebra major in STEM disciplines other than mathematics. Teachers who serve such students may find it difficult to provide authentic problems from these broader areas that ignite students' interest in linear algebra. In this paper, we highlight an interdisciplinary learning activity that…
Descriptors: Mathematics Instruction, Algebra, Graphs, Majors (Students)
Roham Sadeghi Tabar – Cogent Education, 2024
Technological advancements are pushing new simulation and analytical tools, driving the research fields in design forward. In this environment, for introducing new modeling, simulation, and analytic tools, the pre-training aspect becomes important, presenting the ideas behind the tools and preparing the students to structure their already grasped…
Descriptors: Interdisciplinary Approach, Educational Environment, Computer Assisted Instruction, Engineering
Michael Johnson; Anne Griffin – Journal of Experiential Education, 2024
Background: During the COVID-19 pandemic, restricted access to in-person facilities and traditional experiential learning activities meant that new, online solutions were needed to facilitate student learning/development across the disciplines of Allied Health and Engineering. Purpose: This article describes research conducted as part of an…
Descriptors: Problem Based Learning, Electronic Learning, Interdisciplinary Approach, Dietetics
Bajracharya, Biju; Khan, Mohammad Shoeb – Information Systems Education Journal, 2023
The Autonomous Vehicles (AV) are a self-driving vehicle capable of sensing its environment and operating with minimal or no human intervention converting into a fully or partially automated vehicle. These automated vehicles have great potential to revolutionize the automotive industry and our daily lives. Thus, they are receiving a lot of…
Descriptors: Motor Vehicles, Interdisciplinary Approach, Computer Science Education, Artificial Intelligence
Wanju Huang; Kerrie Douglas; Tiantian Li; Audeen Fentiman – International Journal of Designs for Learning, 2023
This paper discusses the instructional design experiences and processes shared by a multi-disciplinary group--including more than a dozen faculty, staff, and students--while developing a series of online courses on Model-based Systems Engineering (MBSE) for professional engineers, a project sponsored by the National Science Foundation. The team…
Descriptors: Instructional Design, Engineering Education, Pedagogical Content Knowledge, Interdisciplinary Approach
Habib, Maki K.; Nagata, Fusaomi; Watanabe, Keigo – Education Sciences, 2021
The development of experiential learning methodologies is gaining attention, due to its contributions to enhancing education quality. It focuses on developing competencies, and build-up added values, such as creative and critical thinking skills, with the aim of improving the quality of learning. The interdisciplinary mechatronics field…
Descriptors: Experiential Learning, Thinking Skills, Engineering Education, Teaching Methods
Tan, Da Yang – Online Submission, 2021
Applying physical principles is important for designs of various products with tailored performances. However, one of the long-standing issues of the students' design projects (or school's interdisciplinary projects) is the post-hoc imposition of the knowledge learned in their content subjects. This post-hoc imposition significantly diminishes the…
Descriptors: Physics, Science Instruction, Teaching Methods, Design
Robertson, Laura; Dunlap, Eric; Nivens, Ryan; Barnett, Kelli – Science and Children, 2019
This 5E (Engage, Explore, Explain, Elaborate, and Evaluate) learning cycle integrating science and mathematics challenges and engages second-grade students in designing sail cars to solve an engineering problem. Students create and use line plots to organize their data to evaluate the strengths and weakness of their design solutions. Three…
Descriptors: Science Instruction, Mathematics Instruction, Interdisciplinary Approach, Elementary School Students
García-Peñalvo, Francisco José, Ed.; García-Holgado, Alicia, Ed. – Lecture Notes in Educational Technology, 2023
This TEEM 2022 Conference (International Conference on Technological Ecosystems for Enhancing Multiculturality) Proceedings reflects the most outstanding advances, with a multidisciplinary perspective, in the technological ecosystems that support the Knowledge Society building and development. With its learning technology-based focus using a…
Descriptors: Interdisciplinary Approach, Conference Papers, Technology Uses in Education, Information Science

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