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Yi Ding; Guangtian Zhu; Qiuxin Bian; Lei Bao – Physical Review Physics Education Research, 2024
The purpose of this study is to examine how students may hold coexisting and competing conceptual ideas and how students' uses of such ideas may evolve during the process of conceptual change by combining two complementary methods including model analysis and the conceptual framework model of knowledge integration. Conceptual change is fundamental…
Descriptors: Student Attitudes, Attitude Change, Concept Formation, Science Education
Caramaschi, Martina; Cullinane, Alison; Levrini, Olivia; Erduran, Sibel – International Journal of Science Education, 2022
The article describes the analysis of the Italian physics curriculum documents in terms of the coverage of nature of science (NOS). NOS is not explicitly presented as part of the Italian high-school physics curriculum. The article focuses on analysing the implicit aspects of the curriculum documents. The Family Resemblance Approach (FRA) to NOS…
Descriptors: Foreign Countries, Physics, Scientific Principles, Secondary School Science
Balta, Nuri; Japashov, Nursultan; Abdulbakioglu, Mustafa; Oliveira, Alandeom W. – Physics Education, 2020
Student cognition in response to intuitive and counterintuitive stimuli in the school science curriculum is not well understood. To address this issue, this study examines high school students' cognitive responses to three counterintuitive physics problems. Our analysis reveals that student success in arriving at counter-intuitive physical…
Descriptors: High School Students, Science Instruction, Secondary School Science, Physics
Jackson, Luke M. – ProQuest LLC, 2017
This mixed method study was aimed at examining the influence of dual processing (Type 1 and Type 2 thinking) on the development of high school students' nature of science (NOS) views. Type 1 thinking is intuitive, experiential, and heuristic. Type 2 thinking is rational, analytical, and explicit. Three research questions were asked: (1) Do the…
Descriptors: Mixed Methods Research, High School Students, Scientific Principles, Science Instruction
Taber, Keith S.; Garcia-Franco, Alejandra – Journal of the Learning Sciences, 2010
This article explores 11- to 16-year-old students' explanations for phenomena commonly studied in school chemistry from an inclusive cognitive resources or knowledge-in-pieces perspective that considers that student utterances may reflect the activation of knowledge elements at a range of levels of explicitness. We report 5 themes in student…
Descriptors: Physics, Chemistry, Learning Processes, Intuition
The Effect of Sociocognitive Conflict on Students' Dialogic Argumentation about Floating and Sinking
Skoumios, Michael – International Journal of Environmental and Science Education, 2009
Sociocognitive conflict has been used as a teaching strategy which may contribute to change students' conceptions about science concepts. The present paper aims at investigating the structure of the dialogic argumentation developed by students, when they are involved in science teaching sequence that have been designed to change their conceptions…
Descriptors: Persuasive Discourse, Conflict, Scientific Concepts, Teaching Methods
Dumas-Carre, Andree; Caillot, Michel – 1989
Most physics problem-solving studies provide data that indicate problem representation is different between experts and novices. This paper presents "cognitive aids" guiding the process of elaboration of a problem representation through intermediate representations. Intermediate means that the representation is situated somewhere between…
Descriptors: Cognitive Processes, Foreign Countries, Mechanics (Physics), Physics
Lowery, Bennie R. – 1985
A "Xenograde system" is an imaginary science system. As an imaginary science, it contains a set of concepts and principles which mimic many of the concepts and principles found in physics and other physical sciences. Xenograde is a highly complex closed system which simulates the movement of satellites orbiting a nucleus and some small particles…
Descriptors: Cognitive Processes, Computer Oriented Programs, Concept Formation, Research Tools
Yerushalmi, Edit; Magen, Esther – Physics Education, 2006
Students frequently misconceive the process of problem-solving, expecting the linear process required for solving an exercise, rather than the convoluted search process required to solve a genuine problem. In this paper we present an activity designed to foster in students realization and appreciation of the nature of the problem-solving process,…
Descriptors: Problem Solving, Cognitive Processes, Learning Processes, Physics

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