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Carmichael, J. W.; And Others – American Biology Teacher, 1980
This article describes a summer program for high school graduates planning to enter college and major in mathematics, or natural or health sciences. The program is Piagetian-based and designed to assist the students in preparing for problem solving in college by providing multidisciplinary concrete experiences in science and mathematics. (SA)
Descriptors: Cognitive Development, High School Graduates, Learning Theories, Mathematics Education
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Meredith, Joyce E.; Fortner, Rosanne W.; Mullins, Gary W. – Journal of Research in Science Teaching, 1997
Argues that affective learning is a poorly understood phenomenon and that objective-setting and evaluation for learning in the affective domain are often neglected in educational programs. Addresses the problem this creates for nonformal science-learning centers. Contains 38 references. (DDR)
Descriptors: Affective Measures, Concept Formation, Evaluation Methods, Exhibits
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Renner, John W.; Yager, Robert E. – Science Education, 1980
Described are the dimensions of the perceived crises in science education as described by responses from 28 science educators (see SE 528 242). Also discussed are some proposed solutions. Areas of crises and solutions include administration, research, science content and theory, and learning. (Authors/DS)
Descriptors: Educational Researchers, Higher Education, Learning Theories, Problems
Thier, Herbert D.; Linn, Marcia C. – 1975
Presented is a discussion on the value of science and technology centers in providing learning experiences for visitors. The discussion is not limited to science centers but includes applications possible to any museum interested in providing interactive experiences. (SA)
Descriptors: Elementary Education, Elementary Secondary Education, Enrichment, Learning Theories
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Watters, James J.; Diezmann, Carmel M. – Early Child Development and Care, 1998
Describes a science enrichment program for 5- to 8-year- olds that used constructivist theory to create a social learning environment conducive to science learning. Considers the strategic actions and roles the teacher adopted to achieve theoretical objectives. Presents evidence that the children engaged in knowledge generation and critical…
Descriptors: Classroom Environment, Constructivism (Learning), Early Childhood Education, Educational Theories
Yager, Robert E. – 1995
The Iowa-Scope, Sequence, and Coordination (SS&C) Program assists schools with reform of their entire middle school programs, grades 6-8, and features the science, technology, and society (STS) instructional approach. This reform translates to the creation of new frameworks for the school program and aims to produce "constructivist"…
Descriptors: Constructivism (Learning), Educational Change, Intermediate Grades, Junior High Schools
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Nicholls, Gill – Early Child Development and Care, 1998
Argues that science investigation by young children should not be constrained by rigid curriculum frameworks, but be prompted by natural curiosity, as in the constructivist approach. Maintains that cognitive abilities in science and investigative skills will develop if children are encouraged to test their observations, questions, and hypotheses…
Descriptors: Classroom Environment, Constructivism (Learning), Early Childhood Education, Educational Theories
Padilla, Michael J.; Ollila, Lloyd – 1979
The purposes of this study were to investigate: (1) effectiveness of three small group teaching methods on the acquisition and retention of seriation abilities; (2) transfer of seriation abilities using the three treatments; and (3) relationship between visual and nonvisual seriation abilities. One hundred twenty first grade Canadian students were…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Tests, Educational Research
Fensham, Peter, Ed. – 1988
This book, written by science educators from nine countries, provides a summary of the strengths and weaknesses in practices of science education in schools, and of research in science education. It points out a number of directions that are likely to lead to improvements in the teaching and learning of science if applied in the future. Topics…
Descriptors: Comparative Education, Elementary School Science, Elementary Secondary Education, Epistemology