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Resbiantoro, Gaguk; Setiani, Rahyu; Dwikoranto – Journal of Turkish Science Education, 2022
The difference between students' ideas and scientific conceptions, is called misconceptions. Physics learning needs to be designed by teachers to eradicate misconceptions. This paper provides a review of 72 international journal articles on diagnosis methods, causes, and ways of remediating misconceptions that have been published between…
Descriptors: Science Education, Physics, Scientific Concepts, Misconceptions

Golin, Genrikh – Science and Education, 2002
If students are restricted to making educational experiments only, they might acquire incorrect ideas concerning the nature and role of the experimental method because the educational experiment differs greatly from the scientific experiment by its tasks, complexity, number and variability of experiments and devices used, measurements, and…
Descriptors: Concept Formation, Higher Education, Science Experiments, Science Instruction

Thacker, Beth Ann – American Journal of Physics, 2003
Interviews university students in modern physics about their understanding of three fundamental experiments. Explores their development of models of microscopic processes. Uses interactive demonstrations to probe student understanding of modern physics experiments in two high school physics classes. Analyzes the nature of students' models and the…
Descriptors: Cognitive Processes, Concept Formation, Higher Education, Learning Strategies
Kirk, Marla K.; Layman, John W. – 1996
This study investigated perceptions of 56 students in 4 general chemistry labs regarding their understanding of chemical concepts and processes. Conceptual understanding of scientific investigation was the focus. Students using a pre-lab guide for lab preparation were compared with students completing a traditional pre-lab assignment. Data sources…
Descriptors: Chemistry, College Students, Concept Formation, Higher Education

Becu-Robinault, Karine; Tiberghien, Andree – International Journal of Science Education, 1998
Analyzes the evolution of the French physics curricula and experiments from the beginning of the century to the present. Shows the strong coherence of the aspects of energy presented through teaching content and experiments. (DDR)
Descriptors: Concept Formation, Curriculum, Energy, Foreign Countries

Abney, James R.; Scalettar, Bethe A. – Journal of Chemical Education, 1998
Describes absorption spectroscopy experiments that allow students to explore the mechanisms by which sunscreens and sunglasses provide protection from ultraviolet radiation. Exposes students to absorption phenomena in an engaging way. (DDR)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, Concept Formation

Zacharia, Zacharias; Anderson, O. Roger – American Journal of Physics, 2003
Investigates the effects of interactive computer-based simulations presented prior to inquiry-based laboratory experiments on students' conceptual understanding of mechanics, waves/optics, and thermal physics. Uses conceptual tests to assess conceptual understandings of each topic. Indicates that the use of the simulations improved students'…
Descriptors: Computer Simulation, Computer Uses in Education, Concept Formation, Higher Education
van Keulen, Hanno; And Others – 1994
Distillation in the chemistry laboratory is an essential part of a practicing chemists' and a chemistry educators' work. Nevertheless, regardless of the degree of importance in each of the aforementioned professions, few educational studies on teaching and learning distillation exist. In an effort to rectify this oversight, the Department of…
Descriptors: Chemistry, Classroom Research, College Science, Concept Formation

Lacey, Anthony R. – Journal of Chemical Education, 1987
Describes a classroom experiment designed to teach students the fundamentals underlying the normal coordinate analysis procedure of a polyatomic molecule. Uses a reverse procedure from traditional experiments of this type by providing the values for the force field and working backwards. (TW)
Descriptors: Atomic Structure, Chemical Bonding, Chemistry, College Science

Roth, Wolff-Michael – Journal of Science Teacher Education, 1992
Compared the effects of participation in six extra credit activities for teaching the concept of matter on female preservice elementary school teachers (n=9) to a control group (n=8). Pre- and posttests to assess changes in the students' understanding of phenomena associated with matter indicated significant changes in experimental students'…
Descriptors: Atomic Structure, Chemical Reactions, Chemistry, Concept Formation
Parker, Joan – International Journal of Science Education, 2006
Primary teacher preparation courses to need support students in developing not only science content knowledge, but also pedagogical knowledge appropriate to the effective translation and representation of subject matter for learners in classrooms. In the case of the generalist primary trainee, this constitutes a considerable challenge. This study…
Descriptors: Pedagogical Content Knowledge, Knowledge Base for Teaching, Science Experiments, Preservice Teacher Education

McCaughan, J. B. T. – Physics Education, 1987
Uses capillarity as an example of a problem in physics which has been explained mathematically in two different ways. Argues that only one explanation is indeed valid and demonstrates this opinion through experimentation and discussions. Proposes that mathematics should be used in physics as a tool to predict, not to explain. (TW)
Descriptors: College Science, Concept Formation, Epistemology, Higher Education
Physiologist, 1987
Contains abstracts of presented papers which deal with teaching materials and methods in physiology. Includes papers on preconceptual notions in physiology, somatosensory activity recorded in the dorsal root ganglion of the bull frog, and the use of the Apple Macintosh microcomputer in teaching human anatomy and physiology. (TW)
Descriptors: Animals, College Science, Computer Assisted Instruction, Computer Graphics
Reay, Judith, Ed. – 1982
Provided is an annotated bibliography of items of particular interest to science education. Items are arranged alphabetically by author (or in some cases by title) within each of the following sections: (1) techniques in the lab and field; (2) nature and evolution of science; (3) teaching strategies; (4) curriculum and examinations; (5) young…
Descriptors: Cognitive Development, Concept Formation, Curriculum Development, Educational Games