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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
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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
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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
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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
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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
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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
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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
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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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Parekh, Priyanka; Gee, Elisabeth R. – Interdisciplinary Journal of Problem-based Learning, 2018
The Maker Movement has been received by the field of K--12 education with great enthusiasm as a way of teaching STEM content to children. We call attention to and identify learning opportunities in children's projects created in a playful, informal environment with easily available materials. In keeping with research in the field of maker…
Descriptors: STEM Education, Teaching Methods, Scientific Concepts, Problem Solving
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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
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Jen, Tessaly; Morales, Christina; Greenwald, Eric; Montgomery, Ryan; Loper, Suzanna; Barber, Jacqueline – International Journal of Science Education, 2020
The United States' Next Generation Science Standards (NGSS) elevate engineering design to the same stature as scientific inquiry, calling on science teachers to engage students in engineering practices to solve real-world problems. In response, researchers and curriculum developers designed and studied Virtual Engineering Internships (VEIs) to…
Descriptors: Science Education, Standards, Engineering Education, Learner Engagement
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McNeill, Nathan J.; Douglas, Elliot P.; Koro-Ljungberg, Mirka; Therriault, David J.; Krause, Ilana – Journal of Engineering Education, 2016
Background: Problem solving is considered to be a central activity of engineering practice. While some studies have shown how various beliefs affect students' abilities to solve problems, studies are needed that explicitly examine the beliefs and assumptions students bring to the problem-solving process. Purpose/Hypothesis: The purpose of this…
Descriptors: Problem Solving, Engineering Education, Student Attitudes, Grounded Theory
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Immethun, Cheryl M.; Daher, Tareq; Saha, Rajib – Chemical Engineering Education, 2019
The use of active learning techniques in engineering classrooms has been limited despite substantial evidence supporting their efficacy in helping students construct problem-solving expertise. A blended classroom, which combines online and in-class learning, was employed in a Chemical Engineering Computation class to address instructional…
Descriptors: Science Instruction, Teaching Methods, Chemical Engineering, Blended Learning
Jalinus, Nizwardi; Syahril; Nabawi, Rahmat Azis – Online Submission, 2019
Each learning model has different pattern and approach that will affect the learning outcomes. Thus, a study is required focused on the effect of implementing the learning model so that it can become a reference for teachers. The study aimed to compare the students' problem-solving skills using Project Based Learning (PjBL) model and…
Descriptors: Problem Solving, Problem Based Learning, Active Learning, Student Projects
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Hagge, Mathew; Amin-Naseri, Mostafa; Jackman, John; Guo, Enruo; Gilbert, Stephen B.; Starns, Gloria; Faidley, Leann – Advances in Engineering Education, 2017
Students learn when they connect new information to existing understanding or when they modify existing understanding to accept new information. Most current teaching methods focus on trying to get students to solve problems in a manner identical to that of an expert. This study investigates the effectiveness of assessing student understanding…
Descriptors: Intelligent Tutoring Systems, Thermodynamics, Problem Solving, Decision Making
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