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David Stroupe; Enrique Suárez; Déana Scipio – Journal of Research in Science Teaching, 2025
Scientists and science educators have argued that learners (students, preservice teachers, and inservice teachers) should understand knowledge construction in science, in addition to figuring out disciplinary core ideas. Given this goal, some science education scholars created a construct called the "Nature of Science" (NOS), which aims…
Descriptors: Epistemology, Justice, Scientific Principles, Science Education
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Sigit Permansah; Abdul Rahman; Dede Rusmana; Cicilia Dyah Sulistyaningrum Indrawati – Journal of Education and Learning (EduLearn), 2025
Despite the abundance of literature discussing Kuhnian views, it is rare to find studies that comprehensively compare the arguments of Kuhnian supporters and skeptics. This study aims to fill the gap by providing a comparative review and synthesis between the two groups of views using the systematic literature review (SLR) analysis technique. The…
Descriptors: Philosophy, Science Education, Scientific Concepts, Scientific Attitudes
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Valeria Edelsztein; Claudio Cormick – Science & Education, 2025
In this article, we tackle the phenomenon of what seems to be a misunderstanding between science education theory and philosophy of science--one which does not seem to have received any attention in the literature. While there seems to be a consensus within the realm of science education on limiting or altogether denying the explanatory role of…
Descriptors: Scientific Principles, Scientific Concepts, Science Education, Epistemology
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Irzik, Gürol; Nola, Robert – Science & Education, 2023
The family resemblance approach to nature of science is receiving increasing attention by science educators since its inception about a decade ago. Many scholars of science education have contributed and continue to contribute to it not only theoretically but also by applying it empirically to a wide range of areas such as curriculum and textbook…
Descriptors: Scientific Principles, Science Education, Scientific Concepts, Observation
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Bingxing Wang; Qi Wang; Yanwei Zhang; Yongcai Zhang; Yuanchao Li; Donglin Zhao – Journal of Chemical Education, 2023
Interfacial, or surface tension, is a significant topic in chemical education. This paper describes the directional motion of gallium-based liquid metal drops, resulting from a difference of interfacial tension across the drop. This demonstration can engage students in discovering the underlying chemical principles. A mechanism for the drop's…
Descriptors: Chemistry, Science Education, Demonstrations (Educational), Science Instruction
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Isabel María Cruz Lorite – International Journal of Designs for Learning, 2025
Historical scientific controversies have great potential to address aspects of the nature of science in context. This paper describes a design case about a novel lesson plan based on the scientific controversy between Karl von Frisch and Carl von Hess on the sight of bees (how they see). This lesson plan allows concepts related to experimentation,…
Descriptors: Lesson Plans, Science Education, Entomology, Scientific Concepts
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Kok-Sing Tang; Grant Cooper – Science & Education, 2025
The introduction of generative artificial intelligence (GenAI) tools like ChatGPT has raised many challenging questions about the nature of teaching, learning, and assessment in every subject area, including science. Unlike other disciplines, natural science is unique because the ontological and epistemological understanding of nature is…
Descriptors: Science Education, Artificial Intelligence, Physical Environment, Realism
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Amy J. Hopper; Angus M. Brown – Advances in Physiology Education, 2024
In this article we analyze the classic Hodgkin and Keynes 1955 paper describing investigations of the independence principle, with the expectation that there is much students and educators can learn from such exercises, most notably how the authors applied their diverse skill set to tackling the numerous obstacles that the study presented. The…
Descriptors: Science Education, Physiology, Scientific Principles, Scientific Concepts
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Rosemary Hipkins – set: Research Information for Teachers, 2024
There is often a steady trajectory of curriculum change under the surface of developments that might seem arbitrary or inconsistent. This article traces the change from key competencies to science capabilities and, most recently, to enduring competencies. All these changes (and names) respond to increasing awareness of the challenges involved in…
Descriptors: Minimum Competencies, Competency Based Education, Foreign Countries, Science Education
Daniel A. Martens Yaverbaum – ProQuest LLC, 2024
This study investigated evidence of how students' mental models of fundamental kinematic relations evolved (i.e., developed cognitively over time) as observed during an introductory course in calculus-based classical mechanics. The core of the curriculum is based on a claim known as Galileo's principle of relativity. The course material comprised…
Descriptors: Schemata (Cognition), Motion, Physics, Science Education
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Garcia-Lladó, Àngela; López, Víctor – Physics Teacher, 2020
Despite the fact that the free-body diagram is the most common method of representing forces in physics education, alternative means have been proposed over the years. Here we present a summary of the proposals found in the literature on physics education. We aim to discuss the pros and cons of these proposals, examine their degree of iconicity,…
Descriptors: Visual Aids, Physics, Science Education, Scientific Principles
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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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Ekkens, Tom – Physics Teacher, 2022
In many introductory physics classes, diffraction of light is introduced first, then more advanced diffraction topics such as x-ray diffraction, Bragg's law, and crystallography are covered. Since using x-rays raises safety concerns and atomic spacing in a crystal is not easy to change, microwaves with macroscopic crystals have been used to study…
Descriptors: Data Collection, Physics, Science Education, Introductory Courses
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Schofield, Lindsay; Takriti, Rachel; Rabbani, Lutfieh; AlAmirah, Iman; Ioannidou, Olga; Alhosani, Najwa; Elhoweris, Hala; Erduran, Sibel – International Journal of Science Education, 2023
Research indicates that teachers lack a sophisticated understanding of Nature of Science (NOS), which in turn, can impact their instructional decisions and students' understanding of NOS. The aim of the study was to investigate United Arab Emirates (UAE) early years' science teacher's (N = 433) perceptions about the NOS. Results obtained from a…
Descriptors: Elementary School Teachers, Teacher Attitudes, Scientific Principles, Foreign Countries
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Khishfe, Rola – Science & Education, 2023
The goal of all reform documents in science education is to target scientific literacy. Toward that end, having students understand the nature of science (NOS) is a critical component. As it turns out, the development of NOS conceptions is a cognitive learning outcome. Therefore, an explicit approach needs to be promoted and emphasized in the…
Descriptors: Educational Improvement, Scientific Principles, Scientific Concepts, Literature Reviews
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