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Peer reviewedTucker, Jan L. – Social Science Record, 1972
Paradigms developed from process and content choices are: (1) scientific, discipline centered, (2) humanistic, discipline centered, (3) scientific, practical-problem centered, and (4) humanistic, practical-problem centered. Each is examined for its logical implications for the role of the social studies teacher. (Author/VW)
Descriptors: Curriculum Design, Curriculum Development, Inquiry, Models
Peer reviewedCraddock, Richard S.; Arnsdorf, Val – Journal of Geography, 1971
Three series of eight fifteen-minute programs were made with conceptual and process orientation. Data was presented and open questions asked, but not answered. New ways of using traditional materials were demonstrated, as was the adaptability of television to non-expository teaching. (NH)
Descriptors: Concept Teaching, Discovery Processes, Educational Television, Elementary Education
Peer reviewedCramer, Robert E.; Boehm, Richard G. – Journal of Geography, 1971
Three series of eight fifteen-minute programs each were made conceptual and process oriented. Data was presented and divergent questions asked about it, but not answered. New ways of using traditional materials were demonstrated as was the adaptability of TV to non-expository teaching. (NH)
Descriptors: Concept Teaching, Discovery Processes, Educational Television, Elementary Education
Peer reviewedMoberg, David O. – Wisconsin Sociologist, 1971
Descriptors: Assignments, Higher Education, Inquiry, Problem Solving
Huque, Abu Obaidul – Sci Educ, 1970
Descriptors: Concept Formation, Educational Objectives, Inquiry, Learning
Peer reviewedSage, James E. – Journal of Studies in Technical Careers, 1979
Inquiry and lecture/lab methods of instruction yield different results in conceptual and problem-solving tests, while no difference exists in factual tests. The author recommends that the inquiry method of teaching be refined so that it can become a practical classroom instructional strategy. (CT)
Descriptors: Classroom Techniques, Inquiry, Laboratory Training, Lecture Method
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
Vranesh, Richard H. – Journal of Instruction Delivery Systems, 2002
Examines problem complexity, inquiry method, learning style, and presentation method to quantify the magnitude of their effects on learning scientific inquiry in high school science curriculum. Recommends the use of collaborative learning tools to accommodate diverse learning styles in distance learning environments and proposes a paradigm for…
Descriptors: Cognitive Style, Distance Education, Inquiry, Models
Peer reviewedWilen, William W.; McKenrick, Patrick – Social Studies, 1989
Describes the nature and procedure of individualized inquiry and provides an illustration of its use in one social studies classroom. Steps include problem definition, hypothesis formation, information gathering, data analysis, hypothesis testing, and drawing conclusions. Recommends that teachers select responsible, intellectually capable, and…
Descriptors: Classroom Techniques, Data Analysis, Hypothesis Testing, Independent Study
Peer reviewedOtto, Paul B. – Journal of Science Teacher Education, 1991
Two inquiry-based teaching activities that are structured to cause cognitive disequilibrium and enable the student to alleviate the disequilibrium with the resultant equilibration at a higher cognitive level are presented. The first activity uses a Cartesian diver and the second a short film in which students are asked to determine the main idea…
Descriptors: Cognitive Development, Concept Formation, Higher Education, Inquiry
Peer reviewedSchell, John W.; Rojewski, Jay W. – Journal of Industrial Teacher Education, 1993
Defines dimensions of vocational thoughtfulness: transfer of learning, situated learning, and learning from experts who shape culture. Outlines potential areas of inquiry--empirical, interpretive, and critical. (SK)
Descriptors: Critical Thinking, Education Work Relationship, Inquiry, Problem Solving
Peer reviewedBarab, Sasha A.; Hay, Kenneth E.; Duffy, Thomas M – TechTrends, 1998
Educators are adopting learner-centered instruction in which students, facilitated by technology, collaborate with peers and engage in problem solving and inquiry. This article discusses ways to use technology in authentic learner inquiry as an information resource, content contextualizer, communication tool, construction kit, and…
Descriptors: Computer Uses in Education, Cooperative Learning, Educational Environment, Educational Technology
Peer reviewedSingletary, James R. – Science Teacher, 2000
Uses a hypothetical ecology problem in which students need to apply problem based learning for a town government. Explains how to evaluate student results. (YDS)
Descriptors: Ecology, Evaluation, Inquiry, Internet
Peer reviewedGlassman, Michael – Educational Researcher, 2001
Compares Dewey and Vygotsky on three conceptual issues that relate directly to educational processes and goals: the roles of social history, experience/culture, and human inquiry in the educational process. The differences in their approaches are illustrated by examining the educational models of the zone of proximal development and long-term…
Descriptors: Educational Theories, Elementary Secondary Education, Experience, Inquiry
Peer reviewedLederman, Norman G.; Niess, Margaret L. – School Science and Mathematics, 2000
Discusses current reforms and reform documents in science and mathematics education with regard to problem solving and inquiry. Considers assessment methods of inquiry to measure students' performance relative to current reforms. (Author/ASK)
Descriptors: Educational Change, Elementary Secondary Education, Evaluation Methods, Inquiry


