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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
Bertel, Lykke Brogaard; Winther, Maiken; Routhe, Henrik Worm; Kolmos, Anette – International Journal of Sustainability in Higher Education, 2022
Purpose: Problem-based learning (PBL) has been suggested as an approach to education for sustainable development (ESD); however, the integration of interdisciplinarity is continuously challenged as it requires transfer and collaboration across disciplinary boundaries, as well as integration into an often already-overflowing curriculum. Even in…
Descriptors: Sustainable Development, Problem Based Learning, Interdisciplinary Approach, Teaching Methods
Di Biase, Rhonda; Malatesta, Stefano; Schmidt di Friedberg, Marcella – Prospects, 2022
This article explores the critical role of education in promoting sustainable development in the Maldives context. It presents the outcomes of a small-scale project, Playing with Solar, implemented in a small island school in collaboration with the island community. Because of the environmental and educational principles embedded in this project,…
Descriptors: Sustainable Development, Theory Practice Relationship, Climate, Problem Based Learning
Liszka, James; Card, Robert; Clark, Patricia; Coleman, Kimberly J.; Leibensperger, Eric; Mattingly, R. Bruce; McGuire, Mary; Nollenberg, Joshua; VanSlyke-Briggs, Kjersti; Wilson, Leigh – Journal of the Scholarship of Teaching and Learning, 2022
The Common Problems Project (CP2) is an interdisciplinary, problem-based pedagogy that was launched in 2015 by four partner colleges in the State University of New York (SUNY) system (Cortland, Oneonta, Oswego, and Plattsburgh). Since its inception, 100 faculty have participated in CP2 and integrated the pedagogy into 134 courses to implement 47…
Descriptors: Active Learning, Student Projects, Interdisciplinary Approach, Community Involvement
Ying, Albert Liang Tsu – Childhood Education, 2021
Architecture education may be able teach students more about real-life problem-solving than traditional subjects.
Descriptors: Foreign Countries, Architecture, Problem Solving, Creativity
Fieke Sluijs; Sabine G. Uijl; Eelco T. C. Vogt; Bert M. Weckhuysen – Journal of Chemical Education, 2024
Sustainability transitions need professionals with specific skills and attitudes that students often do not develop in their regular chemistry education. To foster sustainability change-maker competencies, we suggest augmenting higher education curricula, e.g., chemical degree programs, with transdisciplinary challenge-based learning combined with…
Descriptors: Sustainability, Higher Education, Design, Foreign Countries
Sánchez-Cambronero, Santos; Lozano-Galant, Jose A.; Castilla, Francisco J.; Poveda, Elisa; Galán, Álvaro; Porras, Rocio; Gallego, Inmaculada; López-Moya, Raul – Journal of Civil Engineering Education, 2021
This article presents the application of the problem-based learning (PBL) methodology for introducing the civil engineering task of bridge design and construction to high school students with a multidisciplinary approach. The materials (toy construction system) and methodology of the workshop are first presented. Then, three examples of arch…
Descriptors: Problem Based Learning, Civil Engineering, Engineering Education, High School Students
Youngerman, Ethan; Culver, K. C. – New Directions for Higher Education, 2019
This chapter considers problem-based learning, where engaging students in the application of knowledge to real-world, ill-structured problems can foster learning, improve communities, and inspire instructors.
Descriptors: Problem Based Learning, Interdisciplinary Approach, Relevance (Education), Problem Solving
van den Beemt, Antoine; van de Watering, Gerard; Bots, Michael – European Journal of Engineering Education, 2023
Increasingly higher education programs are made learner centred and flexible to face societal changes. Challenge-based learning (CBL) is an educational concept shaping these open and flexible programs. This article aims to articulate a framework for analysing CBL characteristics within and between study components in academic curricula. It…
Descriptors: Problem Based Learning, Higher Education, Student Centered Learning, Curriculum Implementation
Maker, C. June; Pease, Randy; Zimmerman, Robert H. – Gifted Education International, 2023
Building on the definition of steamers (a tasty hot milk-infused drink), we defined STEAMMERS as "a blend of diverse talents, going beyond domain-specific to domain-integrated abilities. Like steamers, they have a rich and colorful 'flavor'!" They are passionate about solving problems they and others face by honoring and blending diverse…
Descriptors: Skill Development, Talent Development, Academically Gifted, STEM Education
Mona Jarrah; Bethlehem Girmay; Obidimma Ezezika – Journal of Problem Based Learning in Higher Education, 2023
This case study piloted an interdisciplinary Problem-Based Learning course, utilizing Hung's (2006) 3C3R model. We explain the course design, curriculum, and implementation. We collected qualitative written questionnaires from students who participated in the course to investigate their learning experiences. As a result, students shed light on…
Descriptors: Health Education, Teaching Methods, Interdisciplinary Approach, Problem Based Learning
Anthony Pennes; Keegan Mendez; Nevan Hanumara; Ellen T. Roche; Giovanni Traverso; David Custer; Gim Hom – Biomedical Engineering Education, 2023
Best practices in Biomedical Engineering education seek to connect classroom knowledge to practical applications. MIT's Medical Device Design course is comprised of in-class didactics, individual laboratory assignments, and a semester-long, team- based design and prototyping challenge, based in real unmet biomedical need. Students in the course…
Descriptors: Experiential Learning, Biomedicine, Undergraduate Students, Graduate Students
Joseph M. Furner – International Journal of Education in Mathematics, Science and Technology, 2024
This paper will provide several examples of science and mathematics integration: navigation/map-reading, ecology/ecosystems/population growth, and chemistry/molecular structures. This paper underscores integrating STEM subjects with problem-based learning with technology such as video/computer simulations/programming/coding and the dynamic free…
Descriptors: Problem Based Learning, Mathematics Instruction, Educational Technology, Geometry
Bernstein, Debra; Puttick, Gillian; Wendell, Kristen; Shaw, Fayette; Danahy, Ethan; Cassidy, Michael – Educational Technology Research and Development, 2022
In most middle schools, learning is segregated by discipline. Yet interdisciplinary approaches have been shown to cultivate creative thinking, support problem solving, and develop interest while supporting knowledge gains (NAE & NRC in STEM Integration in K-12 Education: Status, Prospects, and an Agenda for Research. National Academies Press,…
Descriptors: Robotics, Design, Middle School Students, Problem Based Learning
Crichton, Michael; Crichton, Hazel; Colville, Gregor – Journal of Problem Based Learning in Higher Education, 2022
This paper presents findings from a small-scale research study eliciting students' perceptions of benefits and challenges of working in interdisciplinary groups to solve an engineering challenge using problem-based learning. Penultimate and final year undergraduates and postgraduate MSc students in the School of Engineering and Physical Sciences…
Descriptors: Foreign Countries, College Students, Student Attitudes, Problem Based Learning