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Cross, Rod – Physics Teacher, 2021
A common procedure when conducting physics experiments is to repeat a measurement several times to calculate the mean and standard deviation. That might be the only instruction we give to students as a means to minimize random errors. However, that technique does not guarantee that the answer will be correct. It might give the same wrong answer…
Descriptors: Physics, Science Experiments, Computation, Error of Measurement
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Kirsty Dunnett; Anders Mattias Lundmark – International Journal of Science Education, 2024
'A lack of prior knowledge in the other discipline' is often given by geoscience instructors to explain why students struggle to apply knowledge from other disciplines to the Earth. We examine this assumption by considering the disciplinary crossing of buoyancy (physics) to isostasy (geoscience). We investigate the teachers' perspective through…
Descriptors: Science Instruction, Earth Science, Interdisciplinary Approach, Physics
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Zur, Amir; Applebaum, Isaac; Nardo, Jocelyn Elizabeth; DeWeese, Dory; Sundrani, Sameer; Salehi, Shima – International Educational Data Mining Society, 2023
Detailed learning objectives foster an effective and equitable learning environment by clarifying what instructors expect students to learn, rather than requiring students to use prior knowledge to infer these expectations. When questions are labeled with relevant learning goals, students understand which skills are tested by those questions.…
Descriptors: Equal Education, Prior Learning, Educational Objectives, Chemistry
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Tobin, R. G.; Lacy, Sara J.; Crissman, Sally – Physical Review Physics Education Research, 2023
Kinetic energy is usually the entry point for the study of energy in physics and is often perceived as unproblematic. We present evidence, however, that some learners who seem to have accepted the concept, from elementary school students to college physics majors and in-service teachers, nevertheless do not consistently attribute kinetic energy to…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
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Wheatley, Christopher; Wells, James; Pritchard, David E.; Stewart, John – Physical Review Physics Education Research, 2022
The Force Concept Inventory (FCI) is a popular multiple-choice instrument used to measure a student's conceptual understanding of Newtonian mechanics. Recently, a network analytic technique called module analysis has been used to identify responses to the FCI and other conceptual instruments that are preferentially selected together by students;…
Descriptors: Physics, Science Instruction, Concept Formation, Scientific Concepts
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Werth, Alexandra; Oliver, Kristin; West, Colin G.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Over the last decade, course-based undergraduate research experiences (CUREs) have been recognized as a way to improve undergraduate science, technology, engineering, and mathematics education by engaging students in authentic research…
Descriptors: Undergraduate Students, Student Research, Teamwork, Science Instruction
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Fotou, Nikolaos; Abrahams, Ian – Physics Teacher, 2020
Research in physics teaching has supported the use of analogies as an effective instructional tool that can be used to facilitate students' understanding of physics concepts. The effectiveness of analogies lies in that they allow students to form cognitive links between what they already know and what they are learning, harmoniously integrating,…
Descriptors: Physics, Science Instruction, Teaching Methods, Logical Thinking
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Janis, Allen I. – Physics Teacher, 2018
The frequently used analogy of a massive ball distorting an elastic sheet, which is used to illustrate why mass causes spacetime curvature and gravitational attraction, is criticized in this article. A different analogy that draws on the students' previous knowledge of spacetime diagrams in special relativity is suggested.
Descriptors: Science Instruction, Physics, Scientific Concepts, Prior Learning
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Krijtenburg-Lewerissa, Kim; Pol, Henk; Brinkman, Alexander; van Joolingen, Wouter – Physics Education, 2022
Quantum mechanics (QM) has become part of many secondary school curricula. These curricula often do not include the mathematical tools for a formal, mathematical introduction of QM. QM therefore needs to be taught at a more conceptual level, but making secondary school students understand counterintuitive QM concepts without introducing…
Descriptors: Prior Learning, Physics, Science Instruction, Intervention
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Bogdanovic, Ivana Z.; Stanisavljevic, Jelena D.; Rodic, Dušica D.; Roncevic, Tamara N.; Zouhor, Zekri A. M. – South African Journal of Education, 2022
To make it easier for students to learn the contents of physics and increase their motivation to learn, physics teachers need to apply different teaching strategies. With this study we aimed to examine the impact of the modified Know-Want-Learn (mKWL) strategy in physics teaching on elementary school students' metacognition. The pedagogical…
Descriptors: Science Instruction, Physics, Teaching Methods, Elementary School Teachers
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Walldén, Robert – Classroom Discourse, 2022
This article concerns the relationship between general literacy skills and engagement with subject-specific content in classroom practice. The aim is to contribute knowledge about how enactment of reading strategies impacts classroom discussions about science texts. For 10 weeks, the researcher conducted observations and audio recordings of…
Descriptors: Reading Strategies, Science Instruction, Grade 4, Elementary School Students
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Koma, Sechaba; Mokuku, Ts'epo; Makatjane, Tiisetso J.; Balck, Christel; Sermeus, Jan – African Journal of Research in Mathematics, Science and Technology Education, 2021
This study investigated the extent to which the proposed Factory of Ideas (FOI) teaching approach impacted on students' understanding of energy based on their prior knowledge. The FOI is a didactic approach that, unlike the classic cognitive conflict approach, employs a variety of activities to offer students a scientific conception for comparison…
Descriptors: Teaching Methods, Science Instruction, Energy, Scientific Concepts
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Jannis Weber; Thomas Wilhelm – Physical Review Physics Education Research, 2024
Students experience many difficulties learning the fundamental relationships in Newtonian mechanics, partly due to preexisting mental models that originate from their everyday lives. These preconceptions often persist even after instruction in mechanics and lead to a supposed incompatibility between physics lessons in school and personal…
Descriptors: Physics, Science Instruction, Scientific Concepts, Mechanics (Physics)
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Haldolaarachchige, Neel; Hettiarachchilage, Kalani – Physics Education, 2022
Physics educators keep adding many skill developments to science and engineering students during their education as individuals and groups including critical thinking, conceptual understanding, problem-solving, mathematical implementation, computational implementation, etc. Here, we are discussing how to reach and analyse students' outcomes within…
Descriptors: Physics, Science Instruction, Calculus, In Person Learning
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D'Eon, Marcel; Yasinian, Maryam – Higher Education Research and Development, 2022
In this article, we propose a new model of student workload. We conducted an extensive literature review of student workload, its impact on students' lives, factors influencing student workload, objective and subjective measurements. The previous conceptualizations of student workload conflate student work and course workload, two related but…
Descriptors: Physics, Science Instruction, Learning Processes, Barriers
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