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Jean Bosco Bugingo; Lakhan Lal Yadav; Innocent Sebasaza Mugisha; K. K. Mashood – Science & Education, 2024
The paper aims to provide a review of literature that emphasizes students' and teachers' views on the nature of science (NOS) and associated instructional approaches to develop adequate understanding of the NOS that have been employed in different contexts. One hundred and seventy-two (172) studies were selected from ResearchGate, Academia, Google…
Descriptors: Foreign Countries, Science Education, Scientific Principles, Students
Hull, Michael M.; Jansky, Alexandra; Hopf, Martin – Studies in Science Education, 2021
In this literature review, we survey student naïve ideas (frequently referred to as 'misconceptions') that plausibly relate, at least in part, to difficulty in understanding probability. We collected diverse naïve ideas from a range of topics in physics: Non-linear Dynamics; Cosmology; Thermal Physics; Atomic, Nuclear, and Particle Physics;…
Descriptors: Probability, Science Instruction, Physics, Misconceptions
Sevgi Aydin Gunbatar; Betul Ekiz Kiran; Yezdan Boz; Elif Selcan Oztay – Chemistry Education Research and Practice, 2025
This study reviewed the green and sustainable chemistry education (GSCE) research that provided training at the tertiary level from 2000 to 2024. The Web of Science and ERIC databases were screened using title and abstract review. In total, 49 studies were analysed. The analysis instrument has two main parts, namely, general characteristics of the…
Descriptors: Chemistry, Training, Science Education, Science Teachers
Wong, Chee Leong; Chu, Hye-Eun; Yap, Kueh Chin – International Journal of Science and Mathematics Education, 2016
Currently, there is no agreement among scientists and science educators on whether heat should be defined as a "process of energy transfer" or "form of energy." For example, students may conceive of heat as "molecular kinetic energy," but the interpretation of this alternative conception is dependent on educational…
Descriptors: Research Methodology, Definitions, Scientific Concepts, Scientific Principles
Greca, Ileana M.; Freire, Olival, Jr. – Chemistry Education Research and Practice, 2014
Finding the best ways to introduce quantum physics to undergraduate students in all scientific areas, in particular for chemistry students, is a pressing, but hardly a simple task. In this paper, we discuss the relevance of taking into account lessons from the history of the discipline and the ongoing controversy over its interpretations and…
Descriptors: Introductory Courses, Quantum Mechanics, Physics, Chemistry
Abd-El-Khalick, Fouad; Waters, Mindy; Le, An-Phong – Journal of Research in Science Teaching, 2008
This study assessed the representations of nature of science (NOS) in high school chemistry textbooks and the extent to which these representations have changed during the past four decades. Analyses focused on the empirical, tentative, inferential, creative, theory-driven, and social NOS, in addition to the myth of "The Scientific Method," the…
Descriptors: Secondary School Science, Textbooks, Scientific Methodology, Scientific Principles

Alters, Brian J. – American Biology Teacher, 1999
There are significant variances in both the religious and non-religious beliefs for rejecting evolution, and likewise diversity in the extent to which various creationists reject evolution. Describes the anti-evolution stances of literalists, progressives, and theists and addresses teaching concerns relative to anti-evolution positions. Contains…
Descriptors: Biology, Creationism, Elementary Secondary Education, Evolution

Abd-El-Khalick, Foyad; Lederman, Norman G. – International Journal of Science Education, 2000
Reviews and assesses the effectiveness of the attempts undertaken to improve prospective and practicing science teachers' conceptions of the nature of science (NOS). Categorizes reviews as implicit or explicit. Indicates that the explicit approach was more effective in enhancing teachers' views. Assumes that developing an understanding of NOS is…
Descriptors: Concept Formation, Elementary Secondary Education, Higher Education, Inquiry

Lombardi, Olimpia – Science and Education, 1999
In science teaching, Aristotelian physics is often presented in a fragmentary and oversimplified way which distorts the true meaning of Aristotelian concepts. Discusses some mistakes that originate from a partial reading of Aristotle's work. Contains 32 references. (Author/WRM)
Descriptors: Astronomy, Concept Formation, Higher Education, Mathematical Concepts

Tsai, Chin-Chung – Science Educator, 1999
Argues that science students often perceive physical events, the nature of scientific knowledge, and the nature of learning processes in different ways from science teachers and scientists, and that science teachers need to account for these differences in planning their science teaching. Contains 40 references. (WRM)
Descriptors: Cognitive Processes, Concept Formation, Educational Research, Elementary Secondary Education