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Duschl, Richard A.; Grandy, Richard – Science & Education, 2013
Our focus is on the effects that dated ideas about the nature of science (NOS) have on curriculum, instruction and assessments. First we examine historical developments in teaching about NOS, beginning with the seminal ideas of James Conant. Next we provide an overview of recent developments in philosophy and cognitive sciences that have shifted…
Descriptors: Scientific Principles, Direct Instruction, Science Instruction, Educational History
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Windschitl, Mark; Thompson, Jessica; Braaten, Melissa – Cognition and Instruction, 2008
To test whether epistemically unproblematic ways of thinking and talking about science could be transformed during preservice teacher training, we designed a system of learning activities based on a set of "heuristics for progressive disciplinary discourse" (HPDD). The HPDD outline six design principles of learning environments where the aim is to…
Descriptors: Preservice Teachers, Practicums, Science Teachers, Teaching Methods
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Jackson, David; And Others – Journal of Research in Science Teaching, 1995
Describes a heuristic inquiry process attempting to better understand and appreciate a major aspect of religion influenced culture in the southern United States which has an impact on science education. Examines the intellectual and emotional viewpoints of scientists, science educators, and science teachers regarding the relationship between their…
Descriptors: Beliefs, Biology, Evolution, Heuristics
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Anamuah-Mensah, J. – Journal of Research in Science Teaching, 1986
Describes an investigation of the strategies used by 47 high school students in solving volumetric analysis problems in chemistry. Reports that students in the high ability group mainly used the "formula" approach, while those in the low ability group tended to use the "proportional" approach to problem solving. (TW)
Descriptors: Chemistry, Cognitive Ability, Cognitive Development, Concept Formation
Nye, Gloria T. – 1991
The Knowledge Engineering for Young Scholars (KEYS) Program was a National Science Foundation (NSF) program conducted at Louisiana State University during 1989 and 1990. The program's goals were to increase 8th-12th grade students' exposure to science, acquaint them with university research, stimulate interest in science, and build their…
Descriptors: Artificial Intelligence, Career Awareness, Computers, Decision Making
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Stewart, Jim – Science Education, 1988
Examines various types of problems that researchers have used to demonstrate problem solving. Focuses on genetics problems. Discusses classes of learning outcomes, conceptual knowledge gains, content-independent heuristics, content-specific procedures, understanding the nature of science and a typology of genetics problems. (CW)
Descriptors: Biological Sciences, Cognitive Ability, College Science, Genetics
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Hafner, Robert; Stewart, Jim – Science Education, 1995
Examines how problem solving in the domain of Mendelian genetics proceeds in situations where solvers' mental models are insufficient to solve problems at hand (model-revising problem solving). The study addressed the heuristics characteristic of successful model-revising problem solving and other aspects of student model use. (LZ)
Descriptors: Concept Formation, Genetics, Heuristics, High Schools
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Hulland, C.; Munby, H. – Science Education, 1994
Posner's theory of conceptual change forms the background for this study which focuses upon conceptual ecology, specifically upon the heuristics children appear to employ in sense-making. The study focuses upon two children who demonstrate remarkably different sense-making heuristics; a recognizably scientific one and one that involves the…
Descriptors: Concept Formation, Educational Research, Heuristics, Metaphors
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Keys, Carolyn W.; Hand, Brian; Prain, Vaughn; Collins, Susan – Journal of Research in Science Teaching, 1999
Discusses preliminary research on a new heuristic tool for learning from laboratory activities in secondary science. Finds that use of the science writing heuristic facilitated students in generating meaning from data; making connections among procedures, data, evidence, and claims; and engaging in metacognition. (Contains 29 references.)…
Descriptors: Heuristics, Laboratory Experiments, Learning Processes, Science Activities
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Roth, Wolff-Michael – School Science and Mathematics, 1992
Provides a rationale for a learning environment in science classrooms that integrates science, mathematics, and technology while solving authentic problems. Describes activities that can be used in such an environment and presents data regarding students' attitudes toward the described activities. (MDH)
Descriptors: Calculators, Computer Assisted Instruction, Computers, Discovery Learning
Prendergast, Wilfred Francis – 1984
This study investigated problem solving skills in mechanics problems that required the use of diagrams. These skills were examined in two ways. First, the study examined student problem solving skills using solution scripts from the Western Australian Tertiary Admission Examination in physics. Solution attempts by students in the 1978 and 1979…
Descriptors: Cognitive Processes, Foreign Countries, Heuristics, Masters Theses
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Siegfried, Robert – Reports of the National Center for Science Education, 1998
Explains how an understanding of evolution's heuristic, or explanatory, advantage can inform today's evolution/creationism debates. (WRM)
Descriptors: Creationism, Evolution, Heuristics, Higher Education
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Esiobu, Gladys O.; Soyibo, Kola – Journal of Research in Science Teaching, 1995
Verified the efficacy of concept and Vee mapping heuristics under cooperative, cooperative-competitive, and individualistic whole-class learning conditions in improving (n=808) eighth graders' achievement in ecology and genetics. Experimental groups achieved significantly better than the control groups; students in cooperative-competitive…
Descriptors: Academic Achievement, Concept Mapping, Cooperative Learning, Ecology
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Taback, Stanley F. – School Science and Mathematics, 1992
Describes three components of a seminar in mathematical problem solving for preservice mathematics teachers: (1) a cognitive component that accents particular phases of problem solving; (2) an affective component that allows for observation of skillful problem solvers; and (3) an investigative component that provides for independent study and…
Descriptors: Cognitive Development, Discovery Learning, Heuristics, Higher Education