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Boesdorfer, Sarah; Greenhalgh, Scott – Science Teacher, 2014
The "Next Generation Science Standards" (NGSS Lead States 2013) urge science teachers to include engineering practices and ideas in their already full science curriculum, but many teachers do not know where to start. Only 7% of high school science teachers report feeling "very well prepared" to teach engineering. The…
Descriptors: Science Curriculum, Science Instruction, Science Teachers, Engineering
Kim, Mijung; Roth, Wolff-Michael – Cultural Studies of Science Education, 2016
In (science) education, primacy is given to agency, the human capability to act and, in this, to learn. However, phenomenological philosophers and societal-historical psychologists point out that agency, the purposeful (intentional) engagement with the world, is only the effect of a much more profound capacity: passibility, the capacity to be…
Descriptors: Problem Solving, Children, Individual Power, Learning
Leung, Siu Ling; Hargrove, Brianne A.; Marsh, Eric R.; Gregg, Andrea R.; Thole, Karen A. – Advances in Engineering Education, 2020
Today's engineering laboratory education often lacks opportunities for students to practice critical thinking through real-world problems. This particular objective is even harder to achieve through online laboratory experiments. In this article, we summarize our innovation in using a real-world challenge, analyze big data, to empower student data…
Descriptors: COVID-19, Pandemics, Educational Change, Engineering Education
Liu, Yu-Cheng; Liang, Chaoyun – International Journal of Educational Psychology, 2020
Differences exist between engineering and liberal arts students because of their educational backgrounds. Therefore, they solve problems differently. This study examined the brain activation of these two groups of students when they responded to 12 questions of verbal, numerical, or spatial intelligence. A total of 25 engineering and 25 liberal…
Descriptors: Problem Solving, Engineering Education, Spatial Ability, Liberal Arts
Passow, Honor J.; Passow, Christian H. – Journal of Engineering Education, 2017
Background: Under Washington Accord or ABET accreditation requirements, faculty must envision, collectively articulate, and prioritize the competencies that students should gain from their educational program to prepare for life and myriad career paths. Purpose: When faculty create specifications for designing a curriculum, they need to answer…
Descriptors: Competency Based Education, Engineering Education, Undergraduate Study, Teamwork
Rønning, Frode – Teaching Mathematics and Its Applications, 2017
This paper is based on an on-going project for modernizing the basic education in mathematics for engineers at the Norwegian University of Science and Technology. One of the components in the project is using a computer-aided assessment system (Maple T.A.) for handling students' weekly hand-ins. Successful completion of a certain number of problem…
Descriptors: Foreign Countries, Computer Assisted Testing, Mathematics Tests, Mathematics Education
Hodgson, Dan; Cloran, Peter; Johnson, Rory – Primary Science, 2017
Engineering Habits of Mind (EHoMs) were first introduced to a target group of Year 9 (age 14) students who the authors felt were disengaged with science, technology, and computing. These students were invited to take part in an engineering challenge with a school in Qatar. This involved making a bridge and rolling a marble over the bridge. The…
Descriptors: Early Adolescents, Competition, Engineering Education, Parent School Relationship
Holder, Lauren N.; Scherer, Hannah H.; Herbert, Bruce E. – Journal of Geoscience Education, 2017
Engaging students in problem-solving concerning environmental issues in near-surface complex Earth systems involves developing student conceptualization of the Earth as a system and applying that scientific knowledge to the problems using practices that model those used by professionals. In this article, we review geoscience education research…
Descriptors: Earth Science, Science Instruction, Problem Solving, Models
Zou, Tracy X. P.; Mickleborough, Neil C. – Innovations in Education and Teaching International, 2015
The ability to solve problems with people of diverse backgrounds is essential for engineering graduates. A course on engineering grand challenges was designed to promote collaborative problem-solving (CPS) skills. One unique component is that students need to work both within their own team and collaborate with the other team to tackle engineering…
Descriptors: Cooperative Learning, Problem Solving, Engineering, Engineering Education
Malkiewich, Laura J.; Chase, Catherine C. – International Journal of Science Education, 2019
Transfer is an important outcome of science and engineering education, but little work has explored factors that facilitate transfer of science concepts from engineering tasks. The transfer literature suggests that noticing deep structure is critical for transfer, but students often fail to do so in engineering tasks. This case study investigates…
Descriptors: Transfer of Training, Scientific Concepts, Physics, High School Students
Lönngren, Johanna; Adawi, Tom; Svanström, Magdalena – European Journal of Engineering Education, 2019
In recent years, there has been increasing interest within the engineering education research community to prepare engineering students to address wicked problems (WPs) such as climate change, resource scarcity and violent conflict. Previous research suggests that engineering students are able to address WPs if they are given adequate support, but…
Descriptors: Engineering Education, Problem Solving, Intervention, Scoring Rubrics
Peters, Anne-Kathrin – ACM Transactions on Computing Education, 2019
This article concludes a longitudinal study with the broader aim to explore learner development as a long-term, social process. One goal has been to inform the endeavours of improving student engagement, retention, as well as under-representation of certain demographics in computing. Students of two computer science-related study programmes…
Descriptors: Computer Science Education, Engineering Education, Undergraduate Students, Student Participation
Marra, Rose M.; Steege, Linsey; Tsai, Chia-Lin; Tang, Nai-En – International Journal of STEM Education, 2016
Background: Working effectively in a collaborative team is not only an outcome required by ABET but also one that scholars and practitioners recognize as necessary for being a successful professional engineer. Technology-based solutions hold promise for supporting collaboration; however, research has shown that technology alone is not sufficient…
Descriptors: Engineering Education, Teamwork, Cooperative Learning, Problem Solving
Reddy, Gudur Raghavendra; McDonagh, Deana; Harris, Maurita T.; Rogers, Wendy A. – Design and Technology Education, 2021
There is an increasing interest in design and creative thinking processes in the Sciences, Technology, Engineering, and Mathematics (STEM) and health education disciplines. Many new degree programs are integrating design thinking into their syllabi, with the intention of bringing creative problem-solving methods to these disciplines. In reality,…
Descriptors: Design, Thinking Skills, Creative Thinking, Problem Solving
Sharma, Payal; Pandher, Jagwinder Singh – Journal of Workplace Learning, 2018
Purpose: This study aims to identify various teachers' professional activities (TPAs) and classify these TPAs according to their relative importance for the professional development of teachers. Design/methodology/approach: The systematic review of the literature had been conducted to identify various TPAs in the institutions. Later, an empirical…
Descriptors: Foreign Countries, Faculty Development, College Faculty, Engineering Education

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