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Kohl, Patrick B.; Finkelstein, Noah D. – Physical Review Special Topics - Physics Education Research, 2006
In a recent study we showed that physics students' problem-solving performance can depend strongly on problem representation, and that giving students a choice of problem representation can have a significant impact on their performance [ P. B. Kohl and N. D. Finklestein, Phys. Rev. ST. Phys. Educ. Res. 1, 010104 (2005) ] In this paper, we…
Descriptors: Physics, Program Effectiveness, Problem Solving, Science Process Skills
Barnes, Tiffany, Ed.; Chi, Min, Ed.; Feng, Mingyu, Ed. – International Educational Data Mining Society, 2016
The 9th International Conference on Educational Data Mining (EDM 2016) is held under the auspices of the International Educational Data Mining Society at the Sheraton Raleigh Hotel, in downtown Raleigh, North Carolina, in the USA. The conference, held June 29-July 2, 2016, follows the eight previous editions (Madrid 2015, London 2014, Memphis…
Descriptors: Data Analysis, Evidence Based Practice, Inquiry, Science Instruction
Moss, Barbara, Ed.; Lapp, Diane, Ed. – Guilford Publications, 2009
Upper-elementary students encounter a sometimes dizzying array of traditional and nontraditional texts both in and outside of the classroom. This practical handbook helps teachers in grades 4-6 harness the instructional potential of fiction, poetry, and plays; informational texts; graphic novels; digital storytelling; Web-based and multimodal…
Descriptors: Reading Comprehension, Protocol Analysis, High Stakes Tests, Cartoons
Chiu, Mei-Hung – 1993
The purpose of this study is to analyze the perceived thought processes of several students as they learn, and then attempt to solve problems about chemical equilibrium. Four tenth grade students in Taipei, Taiwan, were audiotaped as they individually attempted to solve problems. The problems were such that they required more than mere recall or…
Descriptors: Chemical Equilibrium, Chemistry, Constructivism (Learning), Educational Research
Melton, Bob – 1991
The Space Exposed Experiment Developed for Students (SEEDS) Project offered science classes at the 5-12 and college levels the opportunity to conduct experiments involving tomato seeds that had been space-exposed over long periods of time. SEEDS kits were complete packages obtained from the National Aeronautics and Space Administration (NASA) for…
Descriptors: Critical Thinking, Data Collection, Higher Education, Intermediate Grades
Zuckerman, June Trop – 1994
Eighteen high school science students were involved in a study to determine what attributes in the problem statement they need when representing a typical osmosis problem. In order to realize this goal students were asked to solve problems aloud and to explain their answers. Included as a part of the results are the attributes that the students…
Descriptors: Classroom Research, Concept Formation, Constructivism (Learning), Diffusion (Physics)
Clement, John – 1987
This document focuses on evidence from problem solving case studies which indicate that analogy, extreme case analogies, and physical intuition can play an important role as forms of nonformal reasoning in scientific thinking. Two examples of nonformal reasoning are examined in greater detail from 10 case studies of "expert" problem solving.…
Descriptors: Analogy, College Science, Higher Education, Intuition
Staver, John R., Ed. – 1981
The 1982 Yearbook of the Association for the Education of Teachers in Science (AETS) is the second in a series of three AETS yearbooks in which Ralph Tyler's 1949 curriculum rationale is used to analyze science curriculum. This publication is focused on the secondary school science curriculum (the 1981 yearbook was concerned with teaching science…
Descriptors: Attitudes, Curriculum Development, Inservice Teacher Education, Problem Solving
McCloskey, Michael; And Others – 1981
Through everyday experience people acquire knowledge about how moving objects behave. For example, if a rock is thrown up into the air, it will fall back to earth. Research has shown that people's ideas about why moving objects behave as they do are often quite inconsistent with the principles of classical mechanics. In fact, many people hold a…
Descriptors: Cognitive Processes, College Science, College Students, Concept Formation
Green, Bert F.; And Others – 1982
Students have well-formed but incorrect theories of simple motion. As children, they interpret many phenomena related to motion before encountering any formal science education. Since most adults have misconceptions, children's questions are not answered correctly, so the misconceptions persist. Thus, every science teacher must face the prospect…
Descriptors: Cognitive Processes, College Science, College Students, Concept Formation
MacDonald, Dougal; Gustafson, Brenda – Journal of Technology Education, 2004
Many elementary classroom science programs in North America have incorporated what is called design technology, design and technology, technology, technological problem-solving, and/or problem-solving through technology. Design technology involves designing and making products to meet some need, and is directly concerned with the individual's…
Descriptors: Elementary School Science, Design, Technology, Problem Solving
Pilot, A.; And Others – 1981
Gal'perin's instructional theory of problem solving is described. This theory of stage-by-stage formation of mental actions was chosen as a theoretical basis for the construction and evaluation of courses in higher education, particularly in science and technology. A Programme of Actions and Methods (PAM) for problem solving in science,…
Descriptors: College Science, Course Evaluation, Engineering Education, Higher Education
Peer reviewedBreneman, G. L.; Parker, O. J. – Journal of Chemical Education, 1987
Discusses the possibility of having chemistry students do their own computer programing that could then be used to solve problems in general chemistry. Describes such an effort at Eastern Washington University. Provides examples of some of the student programs and printouts. (TW)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Uses in Education
Peer reviewedHoggard, Franklin R. – Journal of Chemical Education, 1987
Suggests a method for solving verbal problems in chemistry using a linguistic algorithm that is partly adapted from two artificial intelligence languages. Provides examples of problems solved using the mental concepts of translation, rotation, mirror image symmetry, superpositioning, disjoininng, and conjoining. (TW)
Descriptors: Algorithms, Artificial Intelligence, Chemical Nomenclature, Chemical Reactions
Peer reviewedPribyl, Jeffrey R.; Bodner, George M. – Journal of Research in Science Teaching, 1987
Reports on a study which examined the relationship between spatial ability and performance in organic chemistry. Results indicated that students with high spatial scores did significantly better on questions requiring problem solving skills, as well as on those requiring the mental manipulation of two-dimensional representations of a molecule. (TW)
Descriptors: Academic Achievement, Algorithms, Chemical Reactions, College Science

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