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Peer reviewedCottle, Paul D.; Lunsford, Seleste E. – Physics Teacher, 1995
Uses student-formed groups during recitation periods to solve problems and develop concepts. (MVL)
Descriptors: Higher Education, Physics, Problem Solving, Science Education
Peer reviewedKoch, Adina; Eckstein, Shulamith G. – Journal of Research in Science Teaching, 1995
Investigated skills needed for critical reading of physics texts, their separability and hierarchical ranking, and relation to problem solving ability. Reports that skills required to comprehend texts in continuous format and discriminate unreported statements are respectively of higher level than and separable from those required to comprehend a…
Descriptors: Higher Education, Physics, Problem Solving, Reading Comprehension
Peer reviewedNiaz, Mansoor – Journal of College Science Teaching, 1994
Reviews work found in the psychology literature on the nine-dot problem and suggests implications of research on insight problems. Insight problems refer to a heterogeneous group of problems that require "flashes of insight" or "leaps of logic" on the part of the solver. (ZWH)
Descriptors: Higher Education, Literature Reviews, Problem Solving, Psychological Studies
Peer reviewedWoods, Donald R. – Journal of College Science Teaching, 1994
Provide guidelines for teachers to help students develop interpersonal skills. Asserts that an enhancement of these skills will in turn help students develop problem-solving skills. (ZWH)
Descriptors: College Science, Higher Education, Interpersonal Competence, Problem Solving
Peer reviewedde Barros, M. A. R. P. – Physics Teacher, 1991
The use and misuse of the superposition principle to analyze electrical circuits are discussed. (KR)
Descriptors: Electricity, Physics, Problem Solving, Resource Materials
Peer reviewedBarve, Shrish A. – Physics Education, 1991
Perturbation theory is presented as an invaluable tool for solving a majority of physically interesting problems involving both macroscopic and microscopic objects. Its use in Newtonian mechanics is emphasized.. The method is illustrated with three examples. (KR)
Descriptors: Higher Education, Motion, Physics, Problem Solving
Eichinger, John – Humanistic Mathematics Network Journal, 1998
Makes a case for presenting humanistic mathematics and science to elementary school children. Introduces a theoretical yet practical framework for teaching these subjects in K-6 classrooms. Describes components of the humanistic curriculum: interactive/collaborative, holistic/relevant, interdisciplinary, and problem-based. (Contains 43…
Descriptors: Elementary Education, Humanistic Education, Mathematics Curriculum, Problem Solving
Peer reviewedCracolice, Mark S.; Deming, John C. – Science Teacher, 2001
Introduces the Peer-Led Team Learning (PLTL) model as an alternative to traditional cooperative learning. Discusses the difficulties of PLTL based curriculum which include finding the peer leaders, selecting the right materials for implementation, and training techniques for peer leaders. (YDS)
Descriptors: Active Learning, Cooperative Learning, High Schools, Problem Solving
Peer reviewedWhite, H. B. – Biochemistry and Molecular Biology Education, 2000
Calls for more manuscripts on problem-based learning in the biochemical sciences. Includes information on problem-based learning conferences. (SAH)
Descriptors: Biochemistry, Higher Education, Problem Based Learning, Problem Solving
Peer reviewedHampson, Brad – Research in Science Education, 2000
Focuses on teachers' research in their own classrooms and how teachers make sense of what they see and hear during open-ended technology construction projects. Traces aspects of learning trajectory as a teacher researcher in a year 6 classroom and aspects of improved classroom outcomes. (Contains 41 references.) (Author/YDS)
Descriptors: Elementary Education, Energy, Force, Misconceptions
Peer reviewedWong, David; Pugh, Kevin – Journal of Research in Science Teaching, 2001
Discusses Dewey's vision of the scientific mind and analyzes the stereotype of scientific thinking. Explains Dewey's notion of experience and clarifies the difference between ordinary experience and a Deweyan experience. (Contains 27 references.) (YDS)
Descriptors: Epistemology, Experience, Learning, Motivation
Peer reviewedWakeley, Dawn M.; de Grys, Hans – Journal of Chemical Education, 2000
Explains the concept of mole and presents a teaching approach in which students can experiment with atoms and develop an understanding of mass ratios. Presents 10 examples of chemistry problems involving moles and unit conversations. (YDS)
Descriptors: Chemistry, Concept Formation, High Schools, Misconceptions
Peer reviewedLyle, Kenneth S.; Robinson, William R. – Journal of Chemical Education, 2001
Reviews the problem solving approach in chemistry and explains effective instructional methods for teaching problem solving. (YDS)
Descriptors: Chemistry, Epistemology, Higher Education, Learning Processes
Cardellini, Liberato – American Biology Teacher, 2005
A well-known educator and researcher Anton E. Lawson highlights critical points on effective teaching, meaningful learning, and problem solving. He feels that every citizen should know that science is a collective enterprise that seeks to explain nature based on the open generation and test of ideas.
Descriptors: Teacher Effectiveness, Science Instruction, Biology, Science Teachers
Cowens, John – Teaching Pre K-8, 2005
Not only are rubber bands great for binding objects together, but they can be used in a simple science experiment that involves predicting, problem solving, measuring, graphing, and experimenting. In this article, the author describes how rubber bands can be used to teach the force of mass.
Descriptors: Science Experiments, Science Education, Teaching Methods, Physics

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