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Peer reviewedRobertson, I. S. – Physics Education, 1979
Presents a step-by-step approach to be used in solving different forms of physics problems, starting from familiar grounds and finding well known results on the way. Uses the rate of heat flow and the resulting changes of temperature with time of a copper block as an example. (GA)
Descriptors: Calorimeters, College Science, Heat, Higher Education
Peer reviewedRao, Y. K. – Chemical Engineering Education, 1979
Shows that upon incorporating an irreversible step into an otherwise reversible Carnot Cyclic process there results a diminution of thermodynamic efficiency and a simultaneous augmentation of the entropy of the universe. (Author/HM)
Descriptors: College Science, Engineering Education, Engineering Technology, Higher Education
Peer reviewedHoover, William G.; Moran, Bill – American Journal of Physics, 1979
Presented are two problem exercises involving rapid compression and expansion of ideal gases which illustrate the first and second laws of thermodynamics. The first problem involves the conversion of gravitational energy into heat through mechanical work. The second involves the mutual interaction of two gases through an adiabatic piston. (BT)
Descriptors: College Science, Higher Education, Physics, Problem Solving
Peer reviewedPugh, Ava; Groves, Fred – Hoosier Science Teacher, 1996
Presents nine science activities to help students improve their thinking and problem solving skills. Activities cover the science process skills of classifying, ordering, space-time relationships, inferring, predicting, and elaborating. (MKR)
Descriptors: Classification, Elementary Secondary Education, Problem Solving, Science Activities
Peer reviewedScience Activities, 1996
The goal of this activity is to solve problems encountered when preparing food for space flight. Includes student worksheets. (MKR)
Descriptors: Elementary Secondary Education, Food, Foods Instruction, Problem Solving
Peer reviewedCheng, Peter C-H.; Shipstone, David M. – International Journal of Science Education, 2003
Presents results of preliminary trials that suggest that the program devised helped UK Year 12 (A-level) learners develop useful concepts of current and voltage, acquire a more integrated understanding of circuit behavior, and overcome their tendencies towards localized and sequential reasoning. Provides learners with a valuable aid for problem…
Descriptors: Concept Formation, Electric Circuits, Foreign Countries, Learning Strategies
Brewer, Steve – Bioscene, 1996
Describes a research program that provides insight into the nature of phylogenetic problems and problem-solving methods and how these might be applied to teaching evolution. Contains a new description of the nature of phylogenetic problems and factors contributing to their difficulty. (AIM)
Descriptors: Evolution, Genetics, Heredity, Higher Education
Peer reviewedHuffman, Douglas – Journal of Research in Science Teaching, 1997
Investigates the effect of explicit problem-solving instruction on high school students' (N=145) conceptual understanding of physics. Findings indicate that the explicit strategy improved the quality and completeness of students' physics representations more than the textbook strategy. No difference was found between the strategies on match of…
Descriptors: Educational Strategies, High Schools, Physics, Problem Solving
Peer reviewedScott, Robert – Physics Education, 2002
Explains how the moon provides information about the evolution of the solar system and offers scope for physics-based investigations. Uses statistical analysis of real scientific data with which students can predict the diameter and depth of impact craters then compare them with data gathered in institutions or laboratories. (Author/YDS)
Descriptors: Earth Science, Integrated Curriculum, Physics, Problem Solving
Peer reviewedShaw, Mike – Science Scope, 2003
Integrates story telling into a science activity on the density of liquids in order to increase student interest. Shows the relationship between mass and volume ratio and how they determine density. Includes teacher notes. (YDS)
Descriptors: Creativity, Elementary Secondary Education, Inquiry, Misconceptions
Peer reviewedKramers-Pals, H.; Pilot, A. – International Journal of Science Education, 1988
Presents four guidelines for teaching quantitative problem-solving based on research results: analyze difficulties of students, develop a system of heuristics, select and map key relations, and design instruction with proper orientation, exercise, and feedback. Discusses the four guidelines and uses flow charts and diagrams to show how the…
Descriptors: Feedback, Guidelines, Heuristics, Problem Solving
Peer reviewedScott, Bernard – Physics Teacher, 1988
Derives the current in the wire joining two points when n points are joined two by two by wires of equal resistance, and two of them are connected to the electrodes of a battery of electromotive force E and resistance R. (YP)
Descriptors: College Science, Electricity, Electronics, Mathematical Formulas
Peer reviewedCiferno, Thomas M.; And Others – Physics Teacher, 1995
Describes the construction and use of an electrooptic apparatus that can be incorporated into the classroom to test liquid crystal displays (LCDs) and introduce students to experiments of an applied physics nature with very practical implications. Presents experiments that give students hands-on experience with technologies of current interest to…
Descriptors: Hands on Science, Optics, Physics, Problem Solving
Peer reviewedLavoie, Derrick R. – American Biology Teacher, 1995
Descriptors: Biology, High Schools, Problem Solving, Science Instruction
Peer reviewedZuckerman, June Trop – School Science and Mathematics, 1994
Identifies the accurate and inaccurate conceptions about osmosis from interviews of (n=16) outstanding science students. (22 references) (Author/MKR)
Descriptors: Biology, High School Students, Interviews, Problem Solving


