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Gonzales, Alicia C.; Purington, Stephanie; Robinson, Julie; Nieswandt, Martina – International Journal of Science Education, 2019
Research shows that collaborative work promotes student learning and improves social skills, but teachers are still exploring how to best support problem-solving in a small group context, particularly in the science classroom. This study builds on prior research to characterise teacher interactions with small groups in secondary science and…
Descriptors: Problem Solving, Science Instruction, Biology, Science Teachers
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Keh, Lim Keng; Ismail, Zaleha; Yusof, Yudariah Mohammad – Anatolian Journal of Education, 2016
This paper aims to understand the use of open-ended mathematical problem to stimulate students' ability in problem solving. There were five mechanical engineering participating in this study. Their works were video-taped as to reveal their process of problem solving. Intervention of creative problem solving was used as to help the students to come…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Creativity
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Rogers, Chris – International Journal for Talent Development and Creativity, 2015
As engineering and Science, Technology, Mathematics, and Engineering (STEM) rise in popularity, engineering and STEM standards in some US states as well as the Next Generation Science Standards are starting to emerge. However the ability to engineer is difficult to test with a standardized test. Either the definition of engineering (having…
Descriptors: Toys, STEM Education, Engineering Education, Teaching Methods
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Spelt, Elisabeth Jacoba Hendrika; Luning, Pieternelleke Arianne; van Boekel, Martinus A. J. S.; Mulder, Martin – European Journal of Engineering Education, 2017
Preparing science and engineering students to work in interdisciplinary teams necessitates research on teaching and learning of interdisciplinary thinking. A multidimensional approach was taken to examine student interdisciplinary learning in a master course on food quality management. The collected 615 student experiences were analysed for the…
Descriptors: Science Education, Engineering Education, Interdisciplinary Approach, Student Experience
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Kaya, Erdogan; Newley, Anna; Yesilyurt, Ezgi; Deniz, Hasan – Journal of College Science Teaching, 2020
With the release of the Next Generation Science Standards (NGSS), assessing K-12 science teachers' self-efficacy in Computational Thinking (CT) is an important research gap to study. Bandura defines self-efficacy as awareness of the individual's potential and capabilities to accomplish a goal. Teaching efficacy beliefs is a significant identifier…
Descriptors: Thinking Skills, Computation, Self Efficacy, Preservice Teachers
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Tularam, Gurudeo A.; Machisella, Patrick – International Journal for Mathematics Teaching and Learning, 2018
Traditional teaching approaches are generally teacher-directed, where students are taught in a manner that is conducive to sitting and listening. It is often argued that these approaches may not provide students with valuable learning skills, and rather that non-traditional approaches to teaching and learning might better endow students with such…
Descriptors: Conventional Instruction, Nontraditional Education, Learning Strategies, Foreign Countries
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Joko Siswanto; Endang Susantini; Budi Jatmiko – Journal of Baltic Science Education, 2018
The design of a teaching model must qualify to be applicable or practical and effective, therefore the research aimed to analyze the practicality and effectiveness of the IBMR (Investigation-Based Multiple Representation) teaching model in improving physics problems solving skills of bachelor programs' students. The research was conducted by…
Descriptors: Physics, Problem Solving, Science Instruction, Instructional Design
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Ergün, Aysegül; Kiyici, Gülbin – Pegem Journal of Education and Instruction, 2019
The purpose of this study was to determine the effect of Design Based Science Education (DBSE) applications on the perceptions of science teacher candidates about engineering education and engineers. In the quantitative part of the study in which the mixed method was involved, a semi-experimental design with single group pre-test post-test was…
Descriptors: Design, Preservice Teachers, Engineering Education, Technical Occupations
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Jimenez, Bree A.; Croft, Gemma; Twine, Jennifer; Gorey, Jacqueline – Journal of Special Education, 2021
The "Next Generation Science Standards" framework outlines scientific and engineering practices as a key element of student development. Educators are just beginning to discover effective and meaningful ways to teach science content to students with intellectual disability; however, the literature on teaching science practices is still…
Descriptors: Cognitive Processes, Problem Solving, Intellectual Disability, Students with Disabilities
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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
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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
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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
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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
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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
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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
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