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Novak, Gordon S., Jr. – 1982
Cognitive processes and knowledge structures used in physics problem-solving at the high school or freshmen college level were investigated by analysis of expert and novice human problem-solving behavior and by development of computer programs which can solve informally-stated physics problems. Computer representations for the information…
Descriptors: Cognitive Processes, Cognitive Structures, College Science, Computer Programs
Novak, Gordon S., Jr. – 1979
The research project described will identify the component skills (cognitive processes and associated knowledge structures) required for effective problem-solving, and identify the kinds of learning which can improve problem-solving ability. These areas will be investigated by means of a computer program which can solve physics problems stated in…
Descriptors: Cognitive Processes, College Science, Computer Programs, High Schools
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Torgerson, John – Physics Teacher, 1975
Descriptors: Earth Science, Experiments, Physics, Problem Solving
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Rosen, Allen I. – Physics Teacher, 1975
Descriptors: Computer Assisted Instruction, Computer Programs, Mathematics Education, Physics
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Ahrens, Fred; Mistry, Rajendra – Journal of STEM Education: Innovations and Research, 2005
In product engineering there often arise design analysis problems for which a commercial software package is either unavailable or cost prohibitive. Further, these calculations often require successive iterations that can be time intensive when performed by hand, thus development of a software application is indicated. This case relates to the…
Descriptors: Engineering Education, Engineering Technology, Manufacturing, Industry
Kortman, Peter; Witt, C. Edwin – 1972
This collection of problems and experiments related to automobile safety belt usage is intended to serve as a supplement to a standard physics course. Its purpose is to convince the students that the use of safety belts to prevent injury or death is firmly supported by the considerations of physical quantities and laws which apply in a collision…
Descriptors: Driver Education, Equipment Utilization, Guides, Instructional Materials
New York Inst. of Tech., Old Westbury. – 1973
Samples of the Self-Paced Physics Course materials are presented in this collection for dissemination purposes. Descriptions are included of course objectives, characteristics, structures, and content. As a two-semester course of study for science and engineering sophomores, most topics are on a level comparable to that of classical physics by…
Descriptors: College Science, Course Descriptions, Course Organization, Curriculum Development
Cohen, Harvey A. – 1975
Several models for problem solving are discussed, and the idea of a heuristic frame is developed. This concept provides a description of the evolution of problem-solving skills in terms of the growth of the number of algorithms available and increased sophistication in their use. The heuristic frame model is applied to two sets of physical…
Descriptors: Artificial Intelligence, Computers, Instruction, Learning Theories
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Woods, Donald R. – Journal of College Science Teaching, 1986
Describes various resources for teaching problem-solving. They include: (1) several books with a problem-solving emphasis; (2) a workshop focusing on the attitudinal components of thinking and problem-solving; and (3) a summary of a study dealing with problem-solving in the context of high school physics. (JN)
Descriptors: Biology, Books, College Science, High Schools
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Maloney, David P. – Journal of Research in Science Teaching, 1985
Investigated methods science and nonscience majors use to make predictions about five situations involving the conservation of mechanical energy. Two findings, among others, show that subjects did not employ identifiable strategies in over 97 percent of the cases and show differences in the way majors and nonmajors worked the problems given.…
Descriptors: College Science, Energy, Energy Conservation, Energy Education
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Risley, John S. – Physics Teacher, 1984
Evaluates two computer programs for Apple II which provide drill and practice in Newton's laws of motion and in work-energy relationships. Student performance is recorded on the diskette allowing the teacher to view the number of questions completed and percentage correct. (JM)
Descriptors: College Science, Computer Programs, Energy, Force
Henderson, Charles; Heller, Kenneth; Heller, Patricia; Kuo, Vince H.; Yerushalmi, Edit – 2001
This paper presents preliminary hypotheses about the relationship between faculty goals for the introductory calculus-based physics course and their beliefs about student learning of problem solving. All faculties have problem solving as a major goal for their courses. There appears to be however, an instructional paradox. When discussing how…
Descriptors: Calculus, Educational Objectives, Higher Education, Interdisciplinary Approach
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Fuller, Robert G. – Physics Today, 1982
Discusses three avenues of problem-solving research: misconceiving natural laws, processing information, and constructing solutions. Suggests that the change in emphasis from problem to problem solver and the key role of "physics" problems are unifying aspects of the research. (JN)
Descriptors: Cognitive Processes, College Science, Concept Formation, Higher Education
Clement, John – Engineering Education, 1981
Presents transcripts of freshmen engineering majors solving elementary physics problems to examine some limitations of formula-centered approaches to problem solving. Although students use formulas successfully, the qualitative conception of the underlying physical situation is weak. Results from written tests indicate that this phenomenon may be…
Descriptors: College Science, Concept Formation, Concept Teaching, Engineering Education
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Larkin, Jill; And Others – Science, 1980
Focuses on human information processes and problem solving. Although a large body of knowledge is prerequisite to acquiring skill, the authors state that knowledge must be indexed by patterns that guide the person in a fraction of a second to relevant parts of the knowledge store. (Author/SA)
Descriptors: Abstract Reasoning, Academic Achievement, Computers, Higher Education
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