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Showing 1 to 15 of 112 results Save | Export
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Annisa Ulfa Yana; Supriyono Koes-Handayanto; Sahal Fawaiz; Fauzul Rizal – Journal of Learning for Development, 2025
Procedural and conceptual e-scaffolding has been shown to be effective for assisting novice learners in understanding new concepts. Its integration with modelling instructions (E-MI) raises expectations for improving scientific reasoning (SR) in students whose level is still a concern in Indonesia. A quasi-experimental study was conducted to find…
Descriptors: Science Process Skills, Thinking Skills, Abstract Reasoning, Physics
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González-Espada, Wilson J.; Gallenstein, Kathryn; Collins, Katelyn – Physics Teacher, 2022
The use of analogies is a well-known teaching strategy to bridge unfamiliar and familiar concepts. However, analogies may become ineffective if the familiar concept is not familiar anymore. For example, this may occur when we describe rotational sense as clockwise and counterclockwise, assuming students know how to read a clock with hour and…
Descriptors: Students, Logical Thinking, Learning Strategies, Concept Formation
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Lauren C. Bauman; Trà Hu?nh; Amy D. Robertson – Physical Review Physics Education Research, 2024
Literature on student ideas about circuits largely focuses on misunderstandings and difficulties, with seminal papers framing student thinking as stable, difficult to change, and connected to incorrect ontological categorizations of current as a thing rather than a process. In this paper, we analyzed 417 student responses to a conceptual question…
Descriptors: Physics, Sequential Learning, Abstract Reasoning, Electronic Equipment
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Iwuanyanwu, Paul Nnanyereugo – Research in Science Education, 2023
Effective science education draws on many different ways of teaching science. The literature on science education documents some potential benefits of argumentation instruction as a powerful tool for learning science and maintaining wonder and curiosity in the classroom. Unlike expository teaching, which relies on a teacher-driven pedagogy in…
Descriptors: Student Teachers, Science Instruction, Teaching Methods, Undergraduate Students
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Ayça K. Fackler; Daniel K. Capps – International Journal of Science Education, 2024
The literature on scientific modelling practices in science education has provided a fruitful discussion on how learners tend to view models vs. how and what they should think about them. One approach is to teach students that models are abstractions so that they do not view them as a copy of phenomena they represent. Although teaching students…
Descriptors: Science Education, Scientific Concepts, Models, Science Instruction
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Haskel-Ittah, Michal – Journal of Research in Science Teaching, 2023
Many studies have characterized students' difficulties in understanding and reasoning about scientific mechanisms. Some of those studies have drawn implications on teaching mechanisms and how to guide students while reasoning mechanistically. In this theoretical article, I claim that one component that has not garnered much attention in the…
Descriptors: Abstract Reasoning, Science Process Skills, Scientific Concepts, Science Instruction
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Megan Shiroda; Jennifer H. Doherty; Emily E. Scott; Kevin C. Haudek – Advances in Physiology Education, 2023
Mass balance (MB) reasoning offers a rich topic for examination of students' scientific thinking and skills, as it requires students to account for multiple inputs and outputs within a system and apply covariational reasoning. Using previously validated constructed response prompts for MB, we examined 1,920 student-constructed responses (CRs)…
Descriptors: Physiology, Science Instruction, Thinking Skills, Abstract Reasoning
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Ebba Koerfer; Bor Gregorcic – Physical Review Physics Education Research, 2024
Statistical mechanics has received limited attention in physics education research and remains a relatively underrepresented topic even in research on upper-division physics courses. The purpose of this study was to explore potential challenges that physics students encounter when they solve statistical mechanics problems in groups. Adopting a…
Descriptors: Physics, Science Instruction, Mechanics (Physics), Barriers
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Alistair McInerny; Andrew Boudreaux; Mila Kryjevskaia – Physical Review Physics Education Research, 2025
This article reports on a controlled study to investigate the efficacy of incorporating explicit discussions about the duality of human reasoning and its implications for learning in physics instruction. The central goal is to probe to what extent, if at all, such discussions improve student performance on tasks that tend to elicit intuitively…
Descriptors: Discussion (Teaching Technique), Physics, Science Instruction, Science Achievement
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Kasprowiak, Amaury; Moitessier, Cle´mence; Cazier-Dennin, Francine; Danjou, Pierre-Edouard – Journal of Chemical Education, 2021
Fractional distillation is part of the essential experimental techniques taught to first-year chemistry students, especially during practical organic chemistry work. The characterization of the distillate generally involves measuring the boiling temperature, the refractive index, or the infrared spectrum. In this paper, an unknown mixture composed…
Descriptors: Spectroscopy, Science Instruction, Undergraduate Students, Abstract Reasoning
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Zac Patterson; Lin Ding – Physical Review Physics Education Research, 2025
Conceptual approaches to contemporary physics topics pose many learning challenges. One factor influencing knowledge integration is a student's epistemic framing. Epistemic frames provide a context within which a particular situation is perceived, interpreted, and judged. The objective of this study is to explore secondary students' framings…
Descriptors: Secondary School Students, Physics, Science Instruction, Quantum Mechanics
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Ahmad Fauzi Hendratmoko; Madlazim Madlazim; Wahono Widodo; Suyono Suyono; Zainful Arifin Imam Supardi – International Journal of Education in Mathematics, Science and Technology, 2024
Scientific argumentation skills are a key component of science learning practices needed by students in the 21st century. Where the essence of scientific argumentation is to support the argument with evidence and reasoning and then refute the claims and evidence of the opponent's argument. Supporting arguments with evidence and reasoning can be…
Descriptors: Science Instruction, Skill Development, Persuasive Discourse, Evidence
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Hyde, Jeffrey M. – Physics Teacher, 2021
Popular accounts of exciting discoveries often draw students to physics and astronomy, but at the introductory level it is challenging to connect with these in a meaningful way. The use of real astronomical data in the classroom can help bridge this gap and build valuable quantitative and scientific reasoning skills. This paper presents a strategy…
Descriptors: Astronomy, Physics, Science Instruction, Introductory Courses
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Doherty, Jennifer H.; Cerchiara, Jack A.; Scott, Emily E.; Jescovitch, Lauren N.; McFarland, Jenny L.; Haudek, Kevin C.; Wenderoth, Mary Pat – Advances in Physiology Education, 2023
The Physiology Core Concept of flow down gradients is a major concept in physiology, as pressure gradients are the key driving force for the bulk flow of fluids in biology. However, students struggle to understand that this principle is foundational to the mechanisms governing bulk flow across diverse physiological systems (e.g., blood flow,…
Descriptors: Physiology, Science Instruction, Teaching Methods, Concept Formation
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Mayarni, M.; Nopiyanti, Eva – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2021
Critical and analytical thinking skills are included in higher-order thinking skills which become the focus of educational goals in recent era. This study aimed to determine the relationship between critical and analytical thinking skills in ecology learning at senior high school in East Jakarta. This research was conducted from March to June…
Descriptors: Critical Thinking, Thinking Skills, Abstract Reasoning, Correlation
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