Publication Date
| In 2026 | 0 |
| Since 2025 | 60 |
| Since 2022 (last 5 years) | 207 |
| Since 2017 (last 10 years) | 532 |
| Since 2007 (last 20 years) | 1001 |
Descriptor
Source
Author
| de Jong, Ton | 12 |
| McIntyre, Margaret | 9 |
| Baroody, Arthur J. | 7 |
| Burton, Grace | 7 |
| van Joolingen, Wouter R. | 7 |
| Abrahamson, Dor | 6 |
| Mayer, Richard E. | 6 |
| Adams, Verna M. | 5 |
| Brown, Stephen I. | 5 |
| Eiland, Michael D. | 5 |
| Keegan, Mark | 5 |
| More ▼ | |
Publication Type
Education Level
Audience
| Practitioners | 583 |
| Teachers | 424 |
| Researchers | 54 |
| Students | 21 |
| Administrators | 17 |
| Parents | 11 |
| Policymakers | 5 |
| Community | 3 |
| Counselors | 1 |
| Media Staff | 1 |
| Support Staff | 1 |
| More ▼ | |
Location
| Indonesia | 56 |
| United Kingdom (England) | 34 |
| United Kingdom | 33 |
| Canada | 31 |
| Australia | 29 |
| China | 21 |
| California | 18 |
| Germany | 16 |
| Turkey | 16 |
| United Kingdom (Great Britain) | 16 |
| United States | 16 |
| More ▼ | |
Laws, Policies, & Programs
| Elementary and Secondary… | 6 |
| No Child Left Behind Act 2001 | 2 |
| Elementary and Secondary… | 1 |
| Goals 2000 | 1 |
| Head Start | 1 |
| Kentucky Education Reform Act… | 1 |
| United States Constitution | 1 |
Assessments and Surveys
What Works Clearinghouse Rating
| Meets WWC Standards without Reservations | 2 |
| Meets WWC Standards with or without Reservations | 3 |
| Does not meet standards | 3 |
Stewart, David K. – Monday Morning, 1969
Descriptors: Discovery Learning, Outdoor Education, Science Education, Student Reaction
Compton, Charles A. – Phys Teacher, 1970
Distinguishes between problems" and exercises" in science teaching, and disscusses the use and abuse of problem-solving in physics instruction. Suggests that the essence of problem-solving is the element of creativity and challenge. The implications of this idea for science teaching is discussed. Bibliography. (LC)
Descriptors: College Science, Discovery Learning, Instruction, Learning Processes
Peer reviewedWills, Herbert – National Council of Teachers of Mathematics Yearbook (33rd), 1970
Discussed are generalizations and problem solving, unsound uses of generalizations, generalization as data, and student discovery of generalizations. (CT)
Descriptors: Discovery Learning, Generalization, Instruction, Learning
Peer reviewedHenry, Boyd – Mathematics Teacher, 1971
An algebra in which the basic operations correspond to lowest common multiple and greatest common factor is developed through questions which can be explored by the able high school mathematics student. (FL)
Descriptors: Algebra, Discovery Learning, Fractions, Instruction
Peer reviewedOgilvy, James A. – Educational Theory, 1971
Descriptors: Dialogs (Literary), Discovery Learning, Educational Change, Educational Philosophy
Feifer, Nathan – Sci Educ, 1969
Argues that the traditional chemistry laboratory manual is not inherently a cookbook and the modern course manual does not automatically eliminate the cookbook approach. Suggests that it is the nature of the teacher guidance that students receive before, after, and during the laboratory work that makes a chemistry program meaningful and effective.…
Descriptors: Chemistry, Discovery Learning, Instruction, Laboratory Experiments
Tanner, R. Thomas – Sch Sci Math, 1969
This article presents a review of the experimental studies that have been conducted to determine the effectiveness of discovery learning as compared to expository learning in science and mathematics. The limitations of these studies are noted and some suggestions for future research are proposed by the author, who is an assistant professor of…
Descriptors: Deduction, Discovery Learning, Educational Experiments, Instruction
Lawrence, Gordon D. – Theor Pract, 1969
Descriptors: Curriculum, Discovery Learning, Educational Objectives, Educational Philosophy
Peer reviewedHastings, Ellen H.; Yates, Daniel S. – Mathematics Teacher, 1983
The material is designed to help pupils investigate how the value for slope in the equation of a line affects the inclination for the graph of an equation. A program written in BASIC designed to run on an Apple microcomputer is included. Worksheet masters for duplication are provided. (MP)
Descriptors: Computer Programs, Discovery Learning, Graphs, Mathematics Instruction
Peer reviewedMathematics in School, 1982
Dialog from a filmed lesson that uses graphing to explain positive and negative numbers is presented. The material highlights the responses of children. The work was also presented to a class of low, mixed-ability pupils since the filming, and the work of two pupils from this group is noted. (MP)
Descriptors: Discovery Learning, Graphs, Interviews, Mathematical Concepts
Peer reviewedAnderson, Sabra S. – Mathematics and Computer Education, 1982
Details are given of a university course that utilizes computer programing to help students explore aspects of number theory. The course is thought to provide acceleration of the discovery process to the point where pupils can study a full range of topics. (MP)
Descriptors: College Mathematics, Computer Programs, Course Descriptions, Discovery Learning
Peer reviewedSouthworth, Geoffrey – Education 3-13, 1981
The author explores ways in which teachers can intervene sensitively to develop children's artistic sensibilities. He discusses general principles and illustrates his ideas with reference to teaching children drawing. (Editor/SJL)
Descriptors: Art Education, Discovery Learning, Discussion (Teaching Technique), Elementary Education
Peer reviewedRubin, Lois – Exercise Exchange, 1981
Offers a series of exercises designed to facilitate both discovery of content and its development into a written draft. (FL)
Descriptors: College English, College Freshmen, Discovery Learning, Higher Education
Peer reviewedSrinivasan, P. K. – Mathematics Teacher, 1981
A method for approaching the value of pi using a transparent sheet of parallel lines is discussed. (MP)
Descriptors: Discovery Learning, Geometric Concepts, Manipulative Materials, Mathematical Concepts
Peer reviewedMacNeil, Richard D. – Journal of Educational Research, 1980
The field dependent and independent dimensions of cognitive style focus on the individual's ability to perceive and manipulate a figure with or without a background. Research suggests that field dependence or independence does not significantly interact with expository or discovery teaching styles to heighten achievement. (Author/CMJ)
Descriptors: Academic Achievement, Cognitive Style, Discovery Learning, Higher Education


