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Showing 1 to 15 of 16 results Save | Export
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Trudel, Louis; Métioui, Abdeljalil – International Baltic Symposium on Science and Technology Education, 2019
The domain of motion or kinematics is important because it forms the basis of mechanics, an important branch of physics. By studying kinematic phenomena in the laboratory, high school students are likely to develop a better understanding of kinematics concepts as well as elements of the scientific approach to study natural and constructed…
Descriptors: Motion, Mechanics (Physics), Physics, Science Instruction
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McLoughlin, Eilish, Ed.; Finlayson, Odilla E., Ed.; Erduran, Sibel, Ed.; Childs, Peter E., Ed. – Contributions from Science Education Research, 2019
This edited volume presents innovative current research in the field of Science Education. The chapter's deal with a wide variety of topics and research approaches, conducted in a range of contexts and settings. Together they make a strong contribution to knowledge on science teaching and learning. The book consists of selected presentations from…
Descriptors: Theory Practice Relationship, Science Education, Teaching Methods, Learning Processes
Fuller, Robert G., Ed.; Campbell, Thomas C., Ed.; Dykstra, Dewey I., Jr., Ed.; Stevens, Scott M., Ed. – IAP - Information Age Publishing, Inc., 2009
This book is intended to offer college faculty members the insights of the development of reasoning movement that enlighten physics educators in the late 1970s and led to a variety of college programs directed at improving the reasoning patterns used by college students. While the original materials were directed at physics concepts, they quickly…
Descriptors: Constructivism (Learning), College Instruction, College Students, Textbooks
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McCarthy, Deborah – Science Scope, 2005
To demonstrate how Newton's first law of motion applies to students' everyday lives, the author developed a learning cycle series of activities on inertia. The discrepant event at the heart of these activities is sure to elicit wide-eyed stares and puzzled looks from students, but also promote critical thinking and help bring an abstract concept…
Descriptors: Learning Processes, Science Instruction, Motion, Physics
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Renner, John W.; And Others – Science Teacher, 1986
Describes a curriculum development project in which the Science Education Center of the University of Oklahoma and the science department of Norman (Oklahoma) High School prepared and classroom tested complete courses in biology, chemistry, and physics using the learning cycle principles of exploration, conceptual invention, and discovery. (JN)
Descriptors: Biology, Chemistry, Curriculum Development, High Schools
Renner, John W.; And Others – 1985
Investigations in Natural Science is a program in secondary school biology, chemistry, and physics based upon the description of science as a quest for knowledge, not the knowledge itself. This teaching guide is designed for use with the 36 physics investigations found in the student manual. These investigations focus on concepts related to:…
Descriptors: High Schools, Learning Processes, Physics, Science Activities
Dufresne, Robert J. – 1988
One approach to the study of cognitive processes highlights the distinctions between expert and novice problem solvers. This approach attempts to discover how experts and novices differ in the way they organize, retain and use domain related knowledge. It appears to some that what is learned from expert-novice research can help teachers to teach…
Descriptors: Cognitive Development, Cognitive Processes, College Science, Higher Education
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Von Aufshnaiter, Stefan; Schwedes, Hannelore – Science Education, 1989
Described is a curriculum project developed in Germany. The importance of playing and gaming for the acquisition of cognitive and social capacities, the relationships among acting, reasoning, and learning in physics instruction, and the spheres of subjective experience are discussed. The framework and evaluation of the curriculum are outlined. (YP)
Descriptors: Class Activities, Foreign Countries, Learning Processes, Physics
Barowy, William; Lochhead, Jack – 1980
Preliminary results from a study of students' conceptions in introductory rotational physics are discussed. Analyses of data from problem solving interviews and written diagnostic tests provided evidence that many students had a poor qualitative understanding of torque. Even among students who answered questions correctly a percentage did so for…
Descriptors: Cognitive Processes, College Science, Higher Education, Interviews
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Gang, Su – Physics Teacher, 1995
Describes a teaching experiment that uses the Learning Cycle to achieve the reorientation of physics' students conceptual frameworks away from commonsense perspectives toward scientifically rigorous outlooks. Uses Archimedes' principle as the content topic while using the Learning Cycle to remove students' nonscientific preconceptions. (JRH)
Descriptors: Constructivism (Learning), Elementary Secondary Education, Foreign Countries, Inquiry
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Blakeslee, Daryl; Walkiewicz, Thomas A. – Physics Teacher, 1991
Presents a motion problem that students in a college physics class are asked to solve and later asked to continue to analyze until they have stopped learning from the problem or the problem itself is finished. (MDH)
Descriptors: Divergent Thinking, High Schools, Learning Processes, Mathematical Applications
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Neuwirth, Erich – Education and Computing, 1988
Discussion of the use of computers in education focuses on ways to teach with limited computer resources. Learning processes with computers are described, the teacher-student relationship is examined, and examples of instruction using only one computer are given, including simulation programs in physics and the use of spreadsheets in mathematics.…
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Simulation, Courseware
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Zollman, Dean – Physics Teacher, 1990
Discusses the design of introductory physics course for elementary education majors and nonscience majors. Describes the learning cycle used for constructing hands-on activities. Provides an example of a week's activity on energy. Presents an evaluation of the course based on examinations and the teacher's impressions. (YP)
Descriptors: College Science, Concept Formation, Course Content, Learning Processes
Clement, John; Brown, David – 1984
In this paper examples of the role of analogical reasoning in expert problem solving are presented. These are intended to show that using an analogy can change an expert's understanding of a problem situation by changing the conceptual model he or she uses to think about the situation. This suggests that using a good analogy may allow students to…
Descriptors: Analogy, Cognitive Structures, College Science, Concept Formation
Clement, John; And Others – 1989
Three purposes of this study were to: (1) propose some organizing theoretical and observational definitions of the anchor construct; (2) present some initial findings from a diagnostic test designed to uncover anchors for high school physics instruction; and (3) provoke an initial discussion of the new methodological issues that arise in this…
Descriptors: Cognitive Structures, Concept Formation, Concept Teaching, Diagnostic Tests
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