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Kaya, Ali – Journal of Pedagogical Research, 2023
This paper is twofold. First, it examines the misconceptions held by students about atoms. Second, it determines the suggestions of the instructors (academics and teachers) to overcome these misconceptions. The study adopted a case study research method. A questionnaire was administered to 288 students and a semi-structured interview was conducted…
Descriptors: Science Education, Scientific Concepts, Misconceptions, Concept Formation
Neidorf, Teresa; Arora, Alka; Erberber, Ebru; Tsokodayi, Yemurai; Mai, Thanh – International Association for the Evaluation of Educational Achievement, 2020
The International Association for the Evaluation of Educational Achievement (IEA) Research for Education series represents a further effort by IEA to capitalize on it's unique datasets, so as to provide powerful information for policymakers and researchers. Each report focuses on a specific topic and is produced by a dedicated team of leading…
Descriptors: Misconceptions, Mathematical Concepts, Scientific Concepts, Mathematics Instruction
Stoeckel, Marta R. – Science Teacher, 2018
Along-standing energy lab involves dropping bouncy balls and measuring their rebound heights on successive bounces. The lab demonstrates a situation in which the mechanical energy of a system is not conserved. Although students enjoyed the lab, the author wanted to deepen their thinking about energy, including the connections to motion, with a new…
Descriptors: Energy, Science Instruction, Scientific Concepts, Misconceptions
Provasnik, Stephen; Malley, Lydia; Neidorf, Teresa; Arora, Alka; Stephens, Maria; Balestreri, Kathryn; Herz, Katie; Perkins, Robert; Tang, Judy H. – National Center for Education Statistics, 2019
"U.S. Performance on the 2015 TIMSS Advanced Mathematics and Physics Assessments: A Closer Look" expands upon the results described in NCES' [National Center for Education Statistics'] initial "Highlights" report on TIMSS Advanced. This new report provides in-depth analyses that (1) examine the demographics, school…
Descriptors: Elementary Secondary Education, Achievement Tests, Mathematics Achievement, Science Achievement
Abraham Motlhabane – Journal of Baltic Science Education, 2016
This phenomenographic case study attempted to determine the alternative and misconceptions of learners in selected concepts in Physics. The research adds another dimension to understanding alternative conception in kinematics by qualitatively determining how learners describe/define a distance of 0m, a displacement of 0m, a speed of 0m/s, a…
Descriptors: Physics, Science Instruction, Misconceptions, Phenomenology
Tural, G. – Science Education International, 2015
Students commonly find the field of physics difficult. Therefore, they generally have learning problems. One of the subjects with which they have difficulties is optics within a physics discipline. This study aims to determine students' conceptual understanding levels at different education levels relating to lenses in geometric optics. A…
Descriptors: Geometric Concepts, Optics, Physics, Concept Formation
Ramnarain, Umesh; van Niekerk, Celeste – African Journal of Research in Mathematics, Science and Technology Education, 2012
This paper reports on an analysis of student conceptions in responses to explanation-type questions in a grade 12 (17-18 years) South African national physics examination. We were guided in our analysis of 921 examination scripts by a framework developed by Dagher and Cossman on types of explanations in science which enabled us to understand the…
Descriptors: Foreign Countries, Grade 12, Secondary School Science, Physics
Gibbs, W. Wayt; Fox, Douglas – Scientific American, 1999
Explains the reasons for low U.S. score results on the Third International Mathematics and Science Study (TIMSS) and compares them with students from other nations. Swedish high schools scored highest on the science test, which is attributed to their curriculum. Suggests that the majority of students are taught science that is irrelevant for their…
Descriptors: Biology, Calculus, Economics, Energy

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