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Roberto Duran-Novoa; Felipe Torres – Journal of Technology and Science Education, 2024
Problem-solving is at the core of engineering design, being fundamental for systematic innovation. During their education, students are taught numerous methods and tools, despite that literature shows debatable results regarding their real impact. Consequently, this study aims to quantify the relative impact of design methods on undergraduate…
Descriptors: Problem Solving, Undergraduate Students, STEM Education, Engineering Education
Jung Han; Euisuk Sung; Todd Kelley; John Geoffrey Knowles – Canadian Journal of Science, Mathematics and Technology Education, 2023
There is a notable shift towards prioritizing the teaching of engineering design within K-12 education, coupled with a strong recommendation for engineering design-based integrated STEM education. This approach underscores the sharing of science and engineering practices as a means to facilitate the learning of various STEM disciplines.…
Descriptors: STEM Education, Engineering Education, Elementary Schools, Secondary Schools
Vicente Sanjosé; Carlos B. Gómez-Ferragud; Joan Josep Solaz-Portolés – European Journal of Psychology of Education, 2024
This study explores the process itself of comprehension monitoring of worked-out examples in mathematics. A 'reversal error' was embedded in a worked-out example of algebraic nature. Ninety-four engineers in a master's degree program to become secondary teachers of technology were asked to judge the comprehensibility of the statement and the…
Descriptors: Comprehension, Masters Programs, Engineering Education, Teacher Education
Angi Stone-MacDonald; Kristen Wendell; Anne Douglass; Mary Lu Love; Amanda Wiehe Lopes – Brookes Publishing Company, 2024
Boost young children's problem-solving skills and set them up for long-term success with the second edition of this practical guidebook! Enhanced with new lessons and timely topics--including equity and the use of makerspaces--this book will help you get all children ready for kindergarten by teaching them basic practices of engineering design and…
Descriptors: Young Children, Infants, Toddlers, Preschool Children
Kelly Schucker; Mary B. Mcvee; Christopher J. Jarmark; Lynn E. Shanahan – Pedagogies: An International Journal, 2024
Situated in an elementary afterschool Engineering Literacies Club framed around multiliteracies and the engineering design process, this article explores engineering habits of mind and disciplinary literacies. Disciplinary literacies encourage students to read, write, think, and act like historians, mathematicians, scientists, or engineers by…
Descriptors: After School Programs, Elementary School Science, Elementary Schools, Engineering Education
Hsin-Yu Lee; Ting-Ting Wu; Chia-Ju Lin; Wei-Sheng Wang; Yueh-Min Huang – Journal of Educational Computing Research, 2024
Science, Technology, Engineering, and Mathematics (STEM) education is essential for developing future-ready learners in both secondary and higher education levels. However, as students transition to higher education, many encounter challenges with independent learning and research. This can negatively impact their Higher-Order Thinking Skills…
Descriptors: Experiential Learning, STEM Education, Scaffolding (Teaching Technique), Barriers
Ting-Ting Wu; Hsin-Yu Lee; Pei-Hua Chen; Chia-Ju Lin; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Science, Technology, Engineering, and Mathematics (STEM) education in Asian universities struggles to integrate Knowledge, Skills, and Attitudes (KSA) due to large classes and student reluctance. While ChatGPT offers solutions, its conventional use may hinder independent critical thinking. Objectives: This study introduces PA-GPT,…
Descriptors: Peer Evaluation, Artificial Intelligence, Natural Language Processing, Technology Uses in Education
Susanne Engström; Helena Lennholm – International Journal of Technology and Design Education, 2025
In literature, teaching for an authentic learning experience is seen as rewarding and interesting, promoting better understanding of for example sustainable development and fostering students' independence. Some upper secondary schools emphasise authentic teaching and learning on their websites, showcasing how students engage in authentic tasks.…
Descriptors: Secondary School Students, Authentic Learning, Student Attitudes, Technology Education
Solodikhina, ?nna; Solodikhina, ?aria – Education and Information Technologies, 2022
Engineering education must be changed following the change in the labor market. The cult of innovation has led to a demand for innovators who have both the mindset of an inventor who can see a problem and find a way to solve it, and the mindset of an entrepreneur who is ready to bring that solution to life. Thus, teaching a techno-innovator…
Descriptors: Engineering Education, Thinking Skills, Innovation, Skill Development
Nihal Eres; Tugba Ecevit – Journal of Inquiry Based Activities, 2025
This study aimed to design, implement, and evaluate the feasibility of an activity titled "Space Adventure for Little Explorers", integrating the engineering and entrepreneurship design model within the STEM education framework into preschool education. The activity was structured in four stages: (1) Discovery with the Family, (2)…
Descriptors: Engineering Education, Entrepreneurship, Preschool Education, Learning Activities
Christopher Lee Allen – ProQuest LLC, 2022
In the years 2005 to 2019, the number of American women receiving a degree in engineering was below 20 percent. Furthermore, even after receiving a degree in engineering, 40% of those girls do not enter the profession. While the above graduation data is essential for understanding the problem at the end of the educational journey, it doesn't point…
Descriptors: Engineering Education, Females, Womens Education, Technical Occupations
Citrohn, Björn; Stolpe, Karin; Svensson, Maria; Bernhard, Jonte – Design and Technology Education, 2022
This study aims to investigate affordances of models and modelling in design projects in technology education. To learn more about affordances when working with models and modelling, four Swedish technology teachers were interviewed using a narrative approach. Despite a small number of informants data were rich, containing detailed descriptions of…
Descriptors: Foreign Countries, Technology Education, Design, Models
Qing Guo; Junwen Zhen; Fenglin Wu; Yanting He; Cuilan Qiao – Journal of Educational Computing Research, 2025
The rapid development of large language models (LLMs) presented opportunities for the transformation of science and STEM education. Research on LLMs was in the exploratory phase, characterized by discussions and observations rather than empirical investigations. This study presented a framework for incorporating LLMs into Science and Engineering…
Descriptors: STEM Education, Computational Linguistics, Teaching Methods, Educational Change
Zeid, Abe – Athens Journal of Education, 2020
Teaching STEM concepts to today's high school students has been challenging. Span of attention is short. Students are glued to their electronic devices. They cannot appreciate the abstract method of teaching, meaning covering concepts followed by solving problems from a textbook. Research has shown that students become excited and motivated to…
Descriptors: Engineering Education, STEM Education, High School Students, Problem Based Learning
Rowan Nas – Mathematics Education Research Group of Australasia, 2024
Creativity is a task-specific construct that exhibits diverse characteristics depending on the context it operates in. Currently, there is little consensus on how creativity can be defined and taught within STEM education. In this study, mathematics teachers' beliefs about STEM creativity and their pedagogical approaches to teaching creativity…
Descriptors: Mathematics Teachers, Beliefs, Teacher Attitudes, Teaching Methods