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Peer reviewedMonaghan, James M.; Clement, John – International Journal of Science Education, 1999
Presents evidence for students' qualitative and quantitative difficulties with apparently simple one-dimensional relative-motion problems, students' spontaneous visualization of relative-motion problems, the visualizations facilitating solution of these problems, and students' memories of the online computer simulation used as a framework for…
Descriptors: Cognitive Processes, Computer Simulation, Concept Formation, Memory
Peer reviewedVan Heuvelen, Alan; Allen, Leith; Mihas, Pavlos – Physics Teacher, 1999
Gives several sample experiment problems for electricity and magnetism. To solve an experiment problem, students have to do one or more of the following: clarify a poorly defined problem, divide a problem into parts, access the appropriate concept needed to solve each problem part, decide whether approximations are appropriate, design an…
Descriptors: Electricity, Experiments, Higher Education, Learning Activities
Peer reviewedGatt, Suzanne V. – Science Education International, 2000
Presents an historical background of changes in the Maltese science curriculum for boys and girls. Describes the levels of the Maltese educational system and briefly summarizes subject areas and objectives for physics, biology, chemistry, mathematics, and the arts taught in schools from preschool to postsecondary education. (YDS)
Descriptors: Biology, Chemistry, Compulsory Education, Elementary Secondary Education
Peer reviewedYersel, Metin – Physics Teacher, 2000
Describes a simple demonstration of the flow of sand through an orifice at the bottom of a sandbox. Advocates the experiment's use with dimensional analysis for students in an introductory physics course. (WRM)
Descriptors: Graphs, High Schools, Higher Education, Instructional Materials
Peer reviewedBaker, Blane – Physics Teacher, 2000
Describes a physics demonstration that dramatically illustrates the mutual repulsion (attraction) between parallel conductors using insulated copper wire, wooden dowels, a high direct current power supply, electrical tape, and an overhead projector. (WRM)
Descriptors: Demonstrations (Science), Electric Circuits, Electricity, Force
Peer reviewedvan Zee, Emily; Minstrell, Jim – Journal of the Learning Sciences, 1997
Analyzes ways in which an experienced physics teacher uses questioning to guide student thinking during a benchmark discussion on measurement. Proposes that teachers may shift toward more reflective discourse by asking questions that help students clarify their meanings, consider various points of view, and monitor their own thinking. (Author/DKM)
Descriptors: Discourse Analysis, Discussion (Teaching Technique), Elementary Secondary Education, Measurement
Peer reviewedSeroglou, Fanny; Koumaras, Panagiotis; Tselfes, Vassilis – Science and Education, 1998
Addresses two research questions pertaining to the search for students' potential alternate conceptions within the history of science and the possibility of helping students overcome these misconceptions through historical experiments. Contains 19 references. (DDR)
Descriptors: Educational History, Electricity, Higher Education, Knowledge Representation
Peer reviewedKaunda, L.; Ball, D. – South African Journal of Higher Education, 1998
A study of 723 University of Cape Town (South Africa) physics students investigated their prior experience with laboratory procedures and technical report writing. Results suggest that, although students are generally aware of the importance of these elements of learning, school experience with teaching of scientific concepts and skills is often…
Descriptors: College Preparation, College Students, Foreign Countries, Higher Education
Peer reviewedvan Zee, Emily H.; Iwasyk, Marletta; Kurose, Akiko; Simpson, Dorothy; Wild, Judy – Journal of Research in Science Teaching, 2001
Summarizes case studies developed by a group of collaborating educators. Investigates ways of speaking that encourage students to formulate insightful questions about science topics and express their own ideas during reflective discussions. (Contains 68 references.) (Author/YDS)
Descriptors: Classroom Communication, Concept Formation, Elementary Secondary Education, Higher Education
Peer reviewedZuckerman, June T. – American Biology Teacher, 1994
Discusses the scheme and findings of a study designed to identify the conceptual knowledge used by high school students to solve a significant problem related to osmosis. Useful tips are provided to teachers to aid students in developing constructs that maximize understanding. (ZWH)
Descriptors: Biology, Concept Formation, Diffusion (Physics), Misconceptions
Peer reviewedMerek, Edmund A.; And Others – American Biology Teacher, 1994
Although the concept of diffusion is thought to be simple and easily understood by most students, research studies revealed that many misconceptions regarding diffusion exist among secondary education students as well as college freshmen. Describes a study designed to seek out the causes for these misconceptions and to find ways to eliminate them.…
Descriptors: Classroom Research, College Freshmen, Diffusion (Physics), Higher Education
Peer reviewedRussell, Tom – Studies in Continuing Education, 1995
Based on a teacher's experiences with science method undergraduates and grade-12 physics students, it is suggested that teachers listen to their own voices and those of students and consider experience as a source of authority. (SK)
Descriptors: College Faculty, Educational Theories, Higher Education, Methods Courses
Peer reviewedRaw, Andy – School Science Review, 1998
Recommends the use of the Cognitive Acceleration through Science Education (CASE) project which gives thinking skills lessons to students ages 11-13 to increase their general thinking ability. (DDR)
Descriptors: British National Curriculum, Cognitive Processes, Concept Formation, Foreign Countries
Peer reviewedFunkhouser, John; Deslich, Barbara J. – Science Teacher, 2000
Explains the implementation of forensic science in an integrated curriculum and discusses the advantages of this approach. Lists the forensic science course syllabi studied in three high schools. Discusses the unit on polymers in detail. (YDS)
Descriptors: Chemistry, Course Descriptions, Crime, Critical Thinking
Peer reviewedDesouza, Josephine M. Shireen; Jereb, Jill – Science and Children, 2000
Explains the process of teaching about force, inertia, gravity, and friction to kindergarten students using the Reggio Emilia Approach. Incorporates writing, reading, counting, building vocabulary, and developing science and social skills. Addresses the Science as Inquiry Content Standard A and Physical Science Content Standard B of the National…
Descriptors: Early Childhood Education, Force, Gravity (Physics), Inquiry


