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Showing 1 to 15 of 43 results Save | Export
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Siantuba, Jackson; Nkhata, Leonard; de Jong, Ton – Smart Learning Environments, 2023
This study sought to develop and evaluate an online module based on inquiry learning with digital laboratories, which was intended to address students' misconceptions in a science domain. In a quasi-experimental design, 171 first-year students in a higher education introductory physics course on circular motion were as their existing groups…
Descriptors: College Freshmen, College Science, Introductory Courses, Physics
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Yanrou Wen; Jiabei Lin; Yue Ming; Junpeng Zhang; Xianqiu Wu; Lei Bao; Keke Yu; Yang Xiao – Physical Review Physics Education Research, 2024
Misconceptions coexisting with scientific understanding pose significant challenges in physics education. Inhibitory control may enable individuals to overcome interference from misconceptions. However, discerning the role of inhibitory control becomes intricate when the saliency of scientific- and misconception-related features varies in a…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Motion
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Schäfle, Claudia; Kautz, Christian – Physical Review Physics Education Research, 2021
We report on an investigation of student thinking about steady-state pipe flow of an incompressible fluid. About 250 undergraduate engineering students were given a test consisting of two hydrodynamics questions, combining multiple-choice format with subsequent open-ended explanations. There is substantial evidence that students have difficulty…
Descriptors: Science Instruction, College Science, Undergraduate Students, Scientific Principles
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Lu Ding; Tong Li; Shiyan Jiang; Albert Gapud – International Journal of Educational Technology in Higher Education, 2023
The latest development of Generative Artificial Intelligence (GenAI), particularly ChatGPT, has drawn the attention of educational researchers and practitioners. We have witnessed many innovative uses of ChatGPT in STEM classrooms. However, studies regarding students' perceptions of ChatGPT as a virtual tutoring tool in STEM education are rare.…
Descriptors: Technology Uses in Education, Artificial Intelligence, Introductory Courses, College Science
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Degirmenci, Salih – Journal of Educational Issues, 2022
The aim of this research is to examine the effect of subject matter knowledge education (SMKE) on the pre-service science teachers' approach to error about plane mirrors. This study was conducted using developmental research and phenomenology designs, which are qualitative research methods. In the study, the data were analyzed with the descriptive…
Descriptors: Preservice Teachers, Science Teachers, Science Instruction, Pedagogical Content Knowledge
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Balta, Nuri; Japashov, Nursultan; Glamocic, Džana Salibašic; Mešic, Vanes – Journal of Turkish Science Education, 2022
In this paper, we described the development of the High School Wave Optics Test (HSWOT). Firstly, 56 conceptual, multiple-choice items with a single correct answer and three distractors were created. Next, we conducted an initial review of the items which resulted in reducing the item pool to 44 highest quality items. Validity evidence and…
Descriptors: Test Construction, Multiple Choice Tests, Test Items, High School Students
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Dahlkemper, Merten Nikolay; Lahme, Simon Zacharias; Klein, Pascal – Physical Review Physics Education Research, 2023
This study aimed at evaluating how students perceive the linguistic quality and scientific accuracy of ChatGPT responses to physics comprehension questions. A total of 102 first- and second-year physics students were confronted with three questions of progressing difficulty from introductory mechanics (rolling motion, waves, and fluid dynamics).…
Descriptors: Physics, Science Instruction, Artificial Intelligence, Computer Software
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Widayoko, Agus; Femilia, Praptika Septi; Lesmono, Albertus Djoko; Sudjatmi, Heri; Prastiwi, Vicki Dian; Munfarikha, Ninik – Anatolian Journal of Education, 2019
Scientific literacy is one of the basic competencies that must be possessed in the XXI century. These competencies include explaining scientific phenomena, designing and evaluating scientific investigations, and interpreting scientific data and facts. These three competency indicators must be embedded in students to help them to solve problems and…
Descriptors: Scientific Literacy, Scientific Concepts, High School Students, Foreign Countries
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Alanazi, Fayadh Hamed – Journal of Turkish Science Education, 2020
This study sought to examine the impacts of the application of the McCarthy Model (4MAT) teaching approach in enhancing seventh-grade female students' conceptions of electricity in physics. The study sample comprised a total of 41 female students, who were selected from two schools located in the Kingdom of Saudi Arabia's city of Aljouf. The…
Descriptors: Foreign Countries, Instructional Effectiveness, Teaching Methods, Scientific Concepts
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Schizas, Dimitrios; Psillos, Dimitris – Electronic Journal of Science Education, 2019
The present study elaborates on a domain-specific approach to NOS (Nature Of Science) and employs a NOTSs (Nature Of The Sciences) agenda to investigate how Greek in-service physics teachers understand the unique features of school physics and biology. Our theoretical framework focuses on the notion of worldview and important differences that…
Descriptors: Foreign Countries, Scientific Literacy, Knowledge Level, Pedagogical Content Knowledge
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Saracoglu, Hanife; Kol, Özge – Asia-Pacific Forum on Science Learning and Teaching, 2018
In this study, it is aimed to reveal math teachers' knowledge level and misconceptions about vectors. The study was conducted with the participation of 66 teacher candidates in different nine universities. As for data collection tool, a questionnaire of 6 open-ended questions was used, related to basic knowledge about vector magnitude, addition,…
Descriptors: Preservice Teachers, Mathematics Teachers, Algebra, Geometric Concepts
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Safadi, Rafi'; Ababsy, Ranin – Physics Education, 2020
Research indicates that troubleshooting activities that require students to reflect on pre-prepared erroneous examples, i.e. erroneous solutions to problems that correspond to common naïve ideas, impact their learning positively. These include asking students to diagnose erroneous examples; in other words, detect the conceptual errors and then…
Descriptors: Troubleshooting, Error Correction, Demonstrations (Educational), Physics
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Borgerding, Lisa Ann; Kaya, Fatma; Librea-Carden, Mila Rosa; Pantuso, Davida; Maybin, Jaren – Electronic Journal of Science Education, 2017
Physics and physical science content are essential for many professional fields, and they are an important component of scientific literacy. Yet, students are commonly less engaged in physics learning at all levels. Funds of knowledge approaches to science instruction build upon learners' real-world experiences and interests in order to make…
Descriptors: Physics, Science Instruction, College Science, Undergraduate Students
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Crogman, Horace; Peters, Raul; TrebeauCrogman, Maryam – European Journal of Physics Education, 2018
Concept inventory (CI) tests are typically used to measure students' general knowledge before and after instruction. We find issue with the current format of these tests, which some researchers claim, measure students' misconceptions, since the answers choices given to students do not consider their prior knowledge. We particularly analyze Force…
Descriptors: Physics, Science Instruction, Scientific Concepts, Misconceptions
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Küchemann, Stefan; Malone, Sarah; Edelsbrunner, Peter; Lichtenberger, Andreas; Stern, Elsbeth; Schumacher, Ralph; Brünken, Roland; Vaterlaus, Andreas; Kuhn, Jochen – Physical Review Physics Education Research, 2021
Representational competence is essential for the acquisition of conceptual understanding in physics. It enables the interpretation of diagrams, graphs, and mathematical equations, and relating these to one another as well as to observations and experimental outcomes. In this study, we present the initial validation of a newly developed…
Descriptors: Physics, Science Instruction, Teaching Methods, Concept Formation
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