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Research Communications, Ltd., Dedham, MA. – 1995
This paper reports on a nationwide, random telephone survey conducted with parents and teachers of children in kindergarten through fifth grade. The survey measured parents' and teachers': (1) interest in and attitudes toward science; (2) comfort level teaching and talking about science; (3) use of hands-on science activities and teaching methods;…
Descriptors: Critical Thinking, Educational Strategies, Elementary Education, Employment
Lee, Felicia – 2000
This book is one of four books in the Science-by-Design Series created by TERC and funded by the National Science Foundation (NSF). This series presents directed instruction on how to successfully formulate and carry out product design. Students learn and apply concepts in science and technology to design and build a pair of insulated gloves, a…
Descriptors: Construction (Process), Energy, Greenhouses, High Schools
Pulis, Lee – 2000
This book is one of four books in the Science-by-Design Series crated by TERC and funded by the National Science Foundation (NSF). It integrates history, physics, mathematics, and technology in its challenge to high school students to design and build a working catapult system. Students investigate elasticity, projectile launching, and learn about…
Descriptors: Construction (Process), Design, High Schools, Mechanics (Physics)
National Academy of Sciences - National Research Council, Washington, DC. Center for Science, Mathematics, and Engineering Education. – 2000
This document is a guide for teaching and learning concerning inquiry education. It identifies scientific inquiry in correlation with the National Science Education Standards and discusses the various functions and strategies for assessment. Contents include: (1) Inquiry in Science and in Classrooms; (2) Inquiry in the National Science Education…
Descriptors: Academic Standards, Elementary Secondary Education, Evaluation, Inquiry
Peer reviewed Peer reviewed
White, Paul A. – Mathematics Teacher, 1973
Descriptors: College Mathematics, Discovery Learning, Instruction, Mathematical Concepts
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Brumfiel, Charles – Mathematics Teacher, 1974
A strategy game is presented that teachers (1) logical reasoning; (2) how to formulate a clear verbal argument that explains your reasoning; (3) basic mathematical skills and (4) computational skills. The game is adaptable for many levels of instruction. (JP)
Descriptors: Algebra, Class Activities, Deduction, Educational Games
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Trigg, Charles W. – Mathematics Teacher, 1974
Descriptors: Experiential Learning, Geometric Concepts, Instructional Materials, Manipulative Materials
Peer reviewed Peer reviewed
Ball, Daniel W. – Science and Children, 1973
Suggests the technique of brainstorming, in which a group generates spontaneous thoughts regarding how something might be used or how a problem might be solved, as a valuable way to help elementary school children learn science. (JR)
Descriptors: Class Activities, Elementary School Science, Group Activities, Instruction
Peer reviewed Peer reviewed
Elkins, J. – Australian Mathematics Teacher, 1973
Descriptors: Engineering Technology, Information Theory, Instruction, Mathematical Applications
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Sconyers, James M. – Mathematics Teacher, 1974
Descriptors: Analytic Geometry, Experiential Learning, Geometric Concepts, Instruction
Templeton, Ronald K.; Hawkins, Michael L. – Education for the Disadvantaged Child, 1973
Examines research in social studies education in regard to inquiry, focusing on the question Will inquiry strategies work for the disadvantaged?'' (Author/JM)
Descriptors: Curriculum Development, Curriculum Evaluation, Disadvantaged Youth, Educational Research
David, David – Southwestern Journal of Social Education, 1972
Descriptors: Cognitive Development, Cognitive Measurement, Cognitive Processes, Cognitive Tests
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Walker, Christopher – Reading, 1972
Descriptors: Critical Reading, Elementary Education, Group Discussion, Problem Solving
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O'Brien, James P. – Music Educators Journal, 1972
Author proposes more freedom in all grades for pupils to exercise innate curiosity, make mistakes, help each other and experiment without constant evaluation. Teachers would become facilitators of self directed learning", participating (and making errors), suggesting ideas to put to practice and clarifying rather than judging from on high. (PD)
Descriptors: Creativity, Curiosity, Innovation, Instructional Program Divisions
Stager, Robert A.; Wales, Charles E. – Journal of Engineering Education, 1972
Describes how guided design is applied to a freshman engineering course so that professional and social concerns are integrated into a problem-solving approach. (PR)
Descriptors: College Science, Course Organization, Discussion Groups, Engineering Education
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