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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
Gravel, Brian E.; Svihla, Vanessa – Journal of the Learning Sciences, 2021
Background: Design problems have long attracted researchers' attention for their potential to provide authentic learning opportunities. While we have methods for supporting students to learn through relatively simple engineering and design tasks, supporting students to address complex problems that they find and frame remains poorly understood.…
Descriptors: Engineering Education, Design, Authentic Learning, Educational Environment
Silver, Harvey F.; Boutz, Abigail L.; McTighe, Jay – Educational Leadership, 2022
Infusing five processes into assignments can help students hone the skills they'll need to address complex problems. The world students will enter is full of complex, unpredictable problems--and students will need sophisticated thinking skills to cope. The authors unpack five thinking processes students need to internalize through opportunities in…
Descriptors: Thinking Skills, Cognitive Processes, Inquiry, Design
Ronghuai Huang, Editor; Dejian Liu, Editor; Michael Agyemang Adarkwah, Editor; Huanhuan Wang, Editor; Boulus Shehata, Editor – Lecture Notes in Educational Technology, 2024
This book identifies the educational problems and issues that could be solved by design and discusses how to overcome these challenges by adopting a design thinking approach. The chapters cover topics such as opportunities and challenges for the futures of education, the emerging models of design thinking for education, learning activity design,…
Descriptors: Educational Trends, Futures (of Society), Design, Best Practices
Philip A. Jones – Design and Technology Education, 2024
This study explores the integration of Design Thinking into the Key Stage 3 Design and Technology (D&T) curriculum at a school in North-West England, focusing on fostering 21st-Century Skills alongside subject-specific knowledge. The research draws on a multiple case study approach derived from the 'Solving Genuine Problems for Authentic Users…
Descriptors: Foreign Countries, Design, Thinking Skills, 21st Century Skills
Mayall, Robert M.; Arcellana-Panlilio, Mayi – Papers on Postsecondary Learning and Teaching, 2019
With the ever-increasing push towards authentic learning within post-secondary institutions, many approaches are being explored. One such method with a particular focus on real-world applications has been the International Genetically Engineered Machines (iGEM) competition program. At the University of Calgary, the iGEM program sees teams of…
Descriptors: Authentic Learning, Teacher Workshops, College Faculty, Vignettes
Warr, Melissa; West, Richard E. – Interdisciplinary Journal of Problem-based Learning, 2020
This article describes the implementation of an interdisciplinary design studio as a means to teach creative problem-solving through project-based learning. "Learning and Innovation Skills" has been designated as a core skill that students need to be successful in today's world, and project-based learning is one approach to helping…
Descriptors: Interdisciplinary Approach, Student Projects, Active Learning, Teaching Methods
Johnson, Carla C., Ed.; Walton, Janet B., Ed.; Peters-Burton, Erin E., Ed. – NSTA Press, 2019
What if you could challenge your second graders to design an outdoor STEM classroom with a butterfly garden, birdbath, and sundial? With this volume in the "STEM Road Map Curriculum Series," you can! "Investigating Environmental Changes" outlines a journey that will steer your students toward authentic problem solving while…
Descriptors: STEM Education, Elementary School Students, Teaching Methods, Outdoor Education