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Nasca, Donald – Instructor, 1973
Article lists a series of questions to help teachers determine whether or not their attitudes are compatible with an open education program. It also gives plans to set up and maintain open education techniques in the classroom. (GB)
Descriptors: Classes (Groups of Students), Discovery Learning, Independent Study, Individualized Programs
Downing, John Allen – Claremont Coll Reading Conf 32nd Yearbook, 1968
Descriptors: Beginning Reading, Creative Writing, Discovery Learning, Individualized Instruction
Belanger, Maurice – Rev Educ Res, 1969
Descriptors: Concept Formation, Creative Thinking, Curriculum Development, Discovery Learning
Peer reviewed Peer reviewed
Harris, David; Taylor, Michael – Journal of Curriculum Studies, 1983
Teachers are encouraged to examine more critically the assumptions on which science curricula are based so they will be less likely to accept naive approaches to discovery learning. Examples from the Physical Science Study Committee (PSSC) and Nuffield Physics are used to show how they use discovery learning. (IS)
Descriptors: Discovery Learning, Discovery Processes, Educational Needs, Induction
Peer reviewed Peer reviewed
Kimberling, Clark – Mathematics Teacher, 1983
Suggestions are given for having students write or modify computer programs for listing prime positive integers and continued fractions, to help them discover mathematical concepts. Sample programs are included. (MNS)
Descriptors: Algorithms, Computer Oriented Programs, Computer Programs, Discovery Learning
Peer reviewed Peer reviewed
Mayer, Richard E. – Science Education, 1983
Discusses five instructional strategies for increasing the meaningfulness of technical or scientific information. These include organization of prose, use of concrete analogies as advance organizers, use of inserted questions in prose, elaboration activities such as note-taking and discovery learning. (JN)
Descriptors: Advance Organizers, Cognitive Processes, College Science, Discovery Learning
Peer reviewed Peer reviewed
Stones, Edgar – Journal of Education for Teaching, 1983
This paper, presented at a conference on pedagogy at Chichester, England, argues that overemphasis on expository verbal learning in teacher education is deleterious to student learning. Instead, teacher educators should develop conceptual learning and problem-solving abilities, drawing on educational psychology for an inquiry-oriented approach,…
Descriptors: Concept Teaching, Conventional Instruction, Discovery Learning, Educational Needs
Rillo, Thomas J. – Outdoor Communicator, 1981
Only if preservice teachers have the opportunity to learn to teach beyond the schoolroom will they attempt to do it when they assume full-time teaching positions. To venture beyond the status quo will require at least an experiential background with the methods, techniques, and values of environmental education. (Author)
Descriptors: Adult Education, Discovery Learning, Elementary Secondary Education, Environmental Education
Stein, Jane – MOSAIC, 1980
Summarizes experiments indicating that a basic key to learning is the development of concepts of pattern recognition and the appropriateness of using a particular theorem. (Author/SK)
Descriptors: Cognitive Processes, Discovery Learning, Elementary Education, Higher Education
Peer reviewed Peer reviewed
Jones, A. V.; Nelson, M. – Journal of Chemical Education, 1979
Presents some introductory experiments involving the reaction between EDTA and several metal ions using metallochromic indicators. The experiments represent familiar reactions and are followed by suggestions for extension into areas of discovery work by students. (Author/SA)
Descriptors: Chemistry, College Science, Discovery Learning, Higher Education
Peer reviewed Peer reviewed
Dean, Euda E. – College Teaching, 1996
A model for teaching proof writing to college mathematics students is presented. The model has six phases: (1) open (understanding the theorem by reading it, listing, and writing it out); (2) brainstorm; (3) instantiate (perception of the chain of inferences linking hypothesis to conclusion); (4) convince; (5) reflect; and (6) extend. Strategies…
Descriptors: Abstract Reasoning, Assignments, Brainstorming, Classroom Techniques
Peer reviewed Peer reviewed
Coyle, Harold P. – Mercury, 1994
Describes five astronomy education projects implemented by the Harvard-Smithsonian Center for Astrophysics Science Education Department and funded by the National Science Foundation. Project efforts have concentrated in three major areas: (1) curriculum development; (2) teacher support; and (3) classroom technology. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content
Peer reviewed Peer reviewed
Johnson, Debi – Science and Children, 1995
Discusses the Tadpoles Project at Schofield Middle School in Aiken, South Carolina. A basin was excavated to create a pond so that students could study various disciplines in a wetlands setting. Presents guidelines for obtaining support for such an effort. (NB)
Descriptors: Discovery Learning, Environmental Education, Financial Support, Interdisciplinary Approach
Peer reviewed Peer reviewed
Cyrus, Vivian Flora; Flora, Ben V. – Mathematics Teacher, 2000
Uses a discovery lesson for determining the area of an equilateral triangle given a side length as an illustration of how to introduce features of the TI-92 graphing calculator geometry package within a mathematical context. (KHR)
Descriptors: Area, Curriculum Development, Data Collection, Discovery Learning
Lamb, Annette; And Others – Learning & Leading with Technology, 1997
Describes an eight-phase model for project-based learning via the Internet: watching, wondering, webbing, wiggling, weaving, wrapping, waving, and wishing. Highlights Internet research tools as well as Internet and print resources for an investigation of homelessness, hunger, and poverty; and provides introductory activities using Internet…
Descriptors: Class Activities, Discovery Learning, Elementary Secondary Education, Homeless People
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