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Vo, Tina; Hammack, Rebekah – Journal of Science Teacher Education, 2022
National reform documents and shifts in educational standards have continued to highlight the importance of engineering and engineering practices within science literacy. High-quality engineering opportunities must be present in formal education due to their association with problem-solving and critical thinking. Given this directive to reach…
Descriptors: Academic Standards, Engineering, Scientific Literacy, Educational Quality
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Kotoka, Love; Kriek, Jeanne – Journal of Baltic Science Education, 2022
Learners underperform in stoichiometry as they lack conceptual reasoning of the underlying concepts and the ability to solve stoichiometric problems. Therefore, it was necessary to determine if there is a statistical correlation between problem-solving skills and conceptual reasoning in stoichiometry and if so, whether one can significantly…
Descriptors: Prediction, Correlation, Science Instruction, Chemistry
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Abdullah, Helmi – Asia-Pacific Forum on Science Learning and Teaching, 2018
One of the fundamental problems for the college students is not being able to solve the multi-concept physics problems. The reason is that the problem solving strategies is limited to known-asked strategy (traditional strategy).Though this strategy can only be used to solve the problems of mono-concept physics. Therefore, this research on the use…
Descriptors: Problem Solving, College Students, Physics, Science Instruction
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Margulieux, Lauren E.; Catrambone, Richard; Schaeffer, Laura M. – Instructional Science: An International Journal of the Learning Sciences, 2018
Originally intended as a replication study, this study discusses differences in problem solving performance among different domains caused by the same instructional intervention. The learning sciences acknowledges similarities in the learners' cognitive architecture that allow interventions to apply across domains, but it also argues that each…
Descriptors: Problem Solving, Intervention, Instructional Design, Programming
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Bansal, Garima – International Journal of Science Education, 2018
This research investigates various purposes of teacher discourse moves essential to orchestrate dialogic discourse in secondary science classrooms. Data collected includes classroom observations and teacher interviews of two teachers teaching in an Indian school setting, whose classroom practices subscribed to a dialogic framework. A discursive…
Descriptors: Science Instruction, Secondary School Science, Discussion (Teaching Technique), Science Teachers
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Magaji, Adewale – International Journal of Instruction, 2021
This research was informed by a constructivist approach to learning, with a focus on answering the research question: what skills can science teachers promote and encourage among students through designing and implementing problem-based learning in their classrooms? The research was carried out in a co-education secondary school in England and…
Descriptors: Secondary School Science, Secondary School Students, Science Instruction, Problem Solving
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Margulieux, Lauren; Yadav, Aman – Journal of Computers in Mathematics and Science Teaching, 2021
We explored how preservice teachers in a middle school science methods course learned and applied computational thinking (CT) concepts and activities during a month-long intervention. In the intervention, preservice teachers learned about CT concepts through an hour-long lecture in their methods class, practiced a computing-integration activity…
Descriptors: Preservice Teachers, Science Instruction, Methods Courses, Intervention
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Zhu, Wenfeng; Yang, Wenjing; Qiu, Jiang; Tian, Fang; Chen, Qunlin; Cao, Guikang; Zhang, Qinglin; Ming, Dan – Creativity Research Journal, 2019
Evidence from a range of fields shows that representation-connection (RC) is the key step towards the solution of a real-world insight problem. However, no study has focused on the inter-individual variability in RC, and little is known about whether structural and resting-state functional signals can account for inter-individual differences in…
Descriptors: Individual Differences, Brain, Brain Hemisphere Functions, Problem Solving
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Wilson, Sarah Beth; Varma-Nelson, Pratibha – Journal of Chemical Education, 2019
The purpose of this parallel convergent mixed methods study was to characterize organic chemistry students' expression of electron-pushing formalism skills who had participated in peer-led team learning (PLTL) and cyber peer-led team learning (cPLTL), a synchronous online version of peer-led team learning (PLTL) workshops. A new electron-pushing…
Descriptors: Science Instruction, Organic Chemistry, College Science, Undergraduate Study
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Perry, Anthony; Estabrooks, Leigh – Science Teacher, 2019
The "Next Generation Science Standards" ("NGSS") emphasize integrating engineering design into the science classroom (NGSS Lead States 2013). Inventing is an authentic and relevant classroom approach, regardless of content area, located at one end of a design continuum opposite from routine problem solving. Invention, at the…
Descriptors: Intellectual Property, Problem Solving, Learner Engagement, Natural Disasters
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Shultz, Ginger V.; Zemke, Jennifer M. – Journal of Chemical Education, 2019
The development of expertise in chemical information literacy requires practicing these skills in the context of chemistry work. The integration of information literacy in problem-based learning is an instructional strategy that can be used to situate skill development in the chemistry classroom. This work describes a mixed-methods approach to…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Problem Solving
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Hartigan, Campbell; Hademenos, George – Physics Teacher, 2019
One way that STEM (science, technology, engineering, and math) initiatives are being utilized is to encourage schools and teachers to integrate key science-based concepts into daily instruction. The reason is simple: it is more than just an instructional improvement or curricular enhancement; it is a research-based strategy that addresses the…
Descriptors: Science Instruction, Physics, STEM Education, Robotics
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Bryce, Samantha; Heath, Kevin N.; Issi, Luca; Ryder, Elizabeth F.; Rao, Reeta – Biochemistry and Molecular Biology Education, 2020
The COVID-19 pandemic has led to an urgent need for engaging computational alternatives to traditional laboratory exercises. Here we introduce a customizable and flexible workflow, designed with the SARS CoV-2 virus that causes COVID-19 in mind, as a means of reinforcing fundamental biology concepts using bioinformatics approaches. This workflow…
Descriptors: COVID-19, Pandemics, Distance Education, Science Instruction
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Hut, R. W.; Pols, C. F. J.; Verschuur, D. J. – Physics Education, 2020
Teaching a hands- and minds-on course, in which feedback is essential in order to learn, is difficult, especially in times of COVID-19 where student progression cannot be monitored directly. During the lockdown period, the workshops of an undergraduate Design Engineering course had to be transferred to the home situation, which required a redesign…
Descriptors: Physics, Hands on Science, Workshops, Teaching Methods
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Hutchins, Nicole M.; Biswas, Gautam; Maróti, Miklós; Lédeczi, Ákos; Grover, Shuchi; Wolf, Rachel; Blair, Kristen Pilner; Chin, Doris; Conlin, Luke; Basu, Satabdi; McElhaney, Kevin – Journal of Science Education and Technology, 2020
Synergistic learning combining computational thinking (CT) and STEM has proven to be an effective method for advancing learning and understanding in a number of STEM domains and simultaneously helping students develop important CT concepts and practices. We adopt a design-based approach to develop, evaluate, and refine our Collaborative,…
Descriptors: Physics, Science Instruction, STEM Education, Thinking Skills
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