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Groeneveld, Wouter; Vennekens, Joost; Aerts, Kris – ACM Transactions on Computing Education, 2022
As the importance of non-technical skills in the software engineering industry increases, the skill sets of graduates match less and less with industry expectations. A growing body of research exists that attempts to identify this skill gap. However, only few so far explicitly compare opinions of the industry with what is currently being taught in…
Descriptors: Engineering Education, Computer Software, Job Skills, College Graduates
Mercat, Christian – Open Education Studies, 2022
This introduction presents Active Learning Methodology, surveying its history, main existing tools and supporting evidence, with an emphasis on mathematics and higher education, in particular engineering studies. This work is part of the DrIVE-Math project, developing innovative mathematical teaching strategies in engineering studies.
Descriptors: Active Learning, Classroom Techniques, Engineering Education, Higher Education
Acosta, Diana I.; Haden, Catherine A. – Developmental Psychology, 2023
Providing equitable informal science, technology, engineering, and mathematics (STEM) learning opportunities to young children from diverse backgrounds may be a way to increase access and interest in STEM and can help to address the broader goal of increasing representation. Importantly, these learning experiences must be meaningful and engage…
Descriptors: Hispanic American Students, Engineering, Problem Solving, Object Manipulation
Anchalee Sangarwut; Meena Polsuwan – Higher Education Studies, 2025
The purposes of the current study were to examine the 5C social engineering model-based training program on Surat Thani Rajabhat University students and Khun Thale Subdistrict residents' problem solving and adaptability and to examine the participants' satisfaction learning with the 5C social engineering model-based training program. A training…
Descriptors: Foreign Countries, Curriculum Development, Engineering Education, Competency Based Education
Andrew K. Schulz; Cassie Shriver; Anika Patka; Caroline Greiner; Benjamin Seleb; Rebecca Watts Hull; Carol Subiño Sullivan; Julia M. Sonnenberg-Klein; Roxanne Moore – Advances in Engineering Education, 2025
To address global challenges such as climate change, we must prepare an engineering workforce of sustainability-minded engineers ready to tackle complex socio-technical problems with multiple stakeholders. Frameworks like the United Nations (UN) Sustainable Development Goals (SDGs) have begun to drive structural changes in engineering education,…
Descriptors: Interdisciplinary Approach, Sustainability, Engineering Education, Conservation (Environment)
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
Abebayehu Yohannes; Hsiu-Ling Chen – Education and Information Technologies, 2024
Flipped learning has attracted increasing attention in all grade levels in recent years and becomes an alternative to the traditional model. Even though there is a large body of research on flipped classrooms, they usually ignore the learning theories that were used to construct the curriculum and instead concentrate on the degree to which using…
Descriptors: Flipped Classroom, Mathematics Education, Engineering Education, Conventional Instruction
Mabley, Seren; Ventura-Medina, Esther; Anderson, Anthony – European Journal of Engineering Education, 2020
Future global challenges that engineering graduates face have placed demands on engineering education and how graduates develop competency in collaborative problem-solving. Such demand has seen an increase in the use of pedagogies like problem-based learning (PBL) that provide opportunities for developing collaborative problem-solving skills. PBL…
Descriptors: Teamwork, Problem Based Learning, Engineering Education, Cooperative Learning
Price, Argenta M.; Kim, Candice J.; Burkholder, Eric W.; Fritz, Amy V.; Wieman, Carl E. – CBE - Life Sciences Education, 2021
A primary goal of science and engineering (S&E) education is to produce good problem solvers, but how to best teach and measure the quality of problem solving remains unclear. The process is complex, multifaceted, and not fully characterized. Here, we present a detailed characterization of the S&E problem-solving process as a set of…
Descriptors: Problem Solving, Science Education, Engineering Education, Teaching Methods
Schmidt, Karsten; Winsløw, Carl – International Journal of Research in Undergraduate Mathematics Education, 2021
A central problem in undergraduate mathematics education for future engineers consists in the perceived and actual relevance of the mathematical content. One strategy to strengthen both is to let students experience how that content appears in posing and solving authentic problems from the field of engineering which the students have signed up to…
Descriptors: Authentic Learning, Engineering Education, Mathematics Activities, Undergraduate Students
Zabala-Vargas, Sergio Andres; García-Mora, Lewis; Arciniegas-Hernández, Edgar; Reina-Medrano, Jerson; de Benito-Crosetti, Bárbara; Darder-Mésquida, Antonia – EURASIA Journal of Mathematics, Science and Technology Education, 2022
The development of mathematical skills for future engineers is essential. Game-based learning (GBL) and gamification have been widely used in elementary education, but less applied in higher education. The objective of this article was to evaluate the effect of didactic strategies mediated by games in the teaching of mathematics in first-year…
Descriptors: Didacticism, Game Based Learning, Mathematics Instruction, College Freshmen
Fleer, Marilyn – Research in Science Education, 2022
Preschool environments offer an abundance of opportunities for exploring the physical world where children can learn "engineering concepts" and "principles" (theories or laws). Yet how teachers design motivating conditions for engineering thinking has not been fully investigated. The study reported in this paper examined how…
Descriptors: Preschool Education, Engineering, Preschool Teachers, Preschool Children
Zhu, Jiabin; Liu, Rongrong; Liu, Qunqun; Zheng, Tianyi; Zhang, Zhinan – IEEE Transactions on Education, 2019
Contribution: This paper qualitative research delineates the thinking and behavioral patterns that reflect students' advanced level of epistemological thinking in project-based learning (PBL) activities and the associated impact factors. Background: PBL has been widely adopted in engineering education for its effectiveness in improving students'…
Descriptors: Engineering Education, Epistemology, Models, Active Learning
Mohlin, Alice – Journal of Workplace Learning, 2023
Purpose: The purpose of this paper is twofold: to identify and map contemporary research on advanced technology implementations for problem-solving purposes in the manufacturing industry, and to further understand the organizational learning possibilities of advanced technology problem-solving in the manufacturing industry.…
Descriptors: Manufacturing Industry, Problem Solving, Organizational Learning, Technology Uses in Education

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