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Kizilcik, Hasan Sahin; Aygün, Müge; Sahin, Esin; Önder-Çelikkanli, Nuray; Türk, Osman; Taskin, Tugba; Günes, Bilal – Physical Review Physics Education Research, 2021
This study aims to make a thematic classification of possible misconceptions about solid friction by reviewing papers in the literature which include conceptual difficulties about friction; in this way, the study contributes to the literature. The study's scope was limited to the dry friction that occurs with the interaction of two solid objects,…
Descriptors: Misconceptions, Scientific Concepts, Physics, Classification
Santos Silva, Guilherme Paulino; Trindade, Neilo Marcos – Science Education International, 2022
This paper presents a perspective of how the radiation and radioactivity themes have been discussed at the high school level in several locations around the world. In this context, scientific journals, academic journals, theses, dissertations, and media materials were analyzed. Recent research has shown that the concern with the discussion about…
Descriptors: High Schools, Radiation, Scientific Concepts, Science Instruction
van Buuren, Onne; Heck, André; Ellermeijer, Ton – Research in Science Education, 2016
A learning path has been developed on system dynamical graphical modelling, integrated into the Dutch lower secondary physics curriculum. As part of the developmental research for this learning path, students' understanding of the relation structures shown in the diagrams of graphical system dynamics based models has been investigated. One of our…
Descriptors: Foreign Countries, Physics, Secondary School Science, Science Curriculum
Stamenkovski, Sasha; Zajkov, Oliver – European Journal of Physics Education, 2014
This research is conducted among 65 seventh graders (12-14 years old) who attend introductory course on physics. Tests and interviews are used to trace the roots of the students' misconceptions about mass. Results from the research reveal serious weaknesses in students' understanding of concept of mass, and its confusion with concepts of density…
Descriptors: Grade 7, Introductory Courses, Physics, Science Instruction
Gonen, Selahattin; Kocakaya, Serhat – Turkish Online Journal of Distance Education, 2010
Students enter the classrooms with a preexisting knowledge of science concepts. These science concepts sometimes show inconsistency with the accepted ones by the scientists and called as misconceptions. Studies applied science field have to get possession of abilities that not only detect these misconceptions also help to solve these problems.…
Descriptors: Physics, Science Education, Science Curriculum, Misconceptions
Galili, Igal; Zinn, Barbara – Science & Education, 2007
This paper presents and discusses examples of works of art which, if included in science curricula, could prompt an understanding by students of some concepts in optics through a discussion of the context in which they were created. Such discussion would elucidate the meaning of the artworks and, at the same time, challenge students'…
Descriptors: Science Education, Physics, Art Expression, Art
Focusing on the Nature of Causality in a Unit on Pressure: How Does It Affect Student Understanding?
Basca, Belinda B.; Grotzer, Tina A. – 2001
Although pressure forms the basis for understanding topics such as the internal structure of the earth, weather cycles, rock formation, Bernoulli's principle, and plate tectonics, the presence of this concept in the school curriculum is at a minimal level. This paper suggests that the ideas, misconceptions, and perceptions of students have to do…
Descriptors: Concept Formation, Force, Junior High Schools, Misconceptions

Steinberg, Melvin S.; Wainwright, Camille L. – Physics Teacher, 1993
Describes the Capacitor-Aided System for Teaching and Learning Electricity (CASTLE) project which is a high school electricity curriculum developed by high school and college physics teachers. The project is motivated by research on students' conceptual difficulties in electricity. The instructional materials developed allow students to challenge…
Descriptors: Electricity, High Schools, Misconceptions, Models

Millar, Robin; And Others – Physics Education, 1990
Children's ideas about radiation and radioactivity are reviewed and several common areas of misunderstanding are identified. An approach to teaching the topic at the secondary school level which seeks to specifically address known difficulties is outlined. (CW)
Descriptors: Cognitive Structures, High Schools, Misconceptions, Physics

Duit, Reinders; Roth, Wolff-Michael; Komorek, Michael; Wilbers, Jens – International Journal of Science Education, 1998
Illustrates how a well-designed curriculum can lead students to construct an unwanted conception. Concludes that the conceptual-change-cum-discourse perspective has the potential to integrate the affordances of both methodological approaches and past empirical accomplishments. Contains 33 references. (DDR)
Descriptors: Concept Formation, Discourse Analysis, Foreign Countries, High Schools
Roschelle, Jeremy – 1991
The nature of qualitative understanding and associated learning processes in the context of a computer simulation called the "Envisioning Machine" (EM) are investigated. The questions focused on in this paper include the following: What sorts of knowledge do students' construct? What role does prior knowledge play in the construction of…
Descriptors: Computer Assisted Instruction, Computer Simulation, Concept Formation, High Schools

Gamble, Reed – Physics Education, 1989
Discusses pupil misconceptions concerning forces. Summarizes some of Assessment of Performance Unit's findings on meaning of (1) force, (2) force and motion in one dimension and two dimensions, and (3) Newton's second law. (YP)
Descriptors: Force, Foreign Countries, Mechanics (Physics), Misconceptions

Brown, David E. – Physics Education, 1989
Reports various misconceptions of Newton's third law obtained from interviews and written tests of high school students. Suggests putting emphasis on the third law in physics teaching. Ten references are listed. (YP)
Descriptors: Concept Formation, Fundamental Concepts, Mechanics (Physics), Misconceptions

Iona, Mario – Physics Teacher, 1988
Evaluates an elementary textbook (Journeys in Science, volume 3) on thermodynamics. Points out some inadequate expressions and explains the reasons. (YP)
Descriptors: Elementary Education, Elementary School Science, Heat, Misconceptions

Ambrose, Bradley S.; Heron, Paula R. L.; Vokos, Stamatis; McDermott, Lillian C. – American Journal of Physics, 1999
Some serious difficulties that students have in understanding physical optics may be due in part to a lack of understanding of light as an electromagnetic wave. Describes the development and use of tutorials designed to address students' conceptual difficulties. (Contains over 15 references.) (Author/WRM)
Descriptors: Higher Education, Instructional Effectiveness, Instructional Materials, Light