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 |
Peer reviewedCavallo, Ann M. L.; Dunphey, Pamela A. – Science Teacher, 2002
Describes an inquiry investigation to enable students to understand water cohesion, surface tension, and heating curves for water. The investigation includes several activities organized in a three-phase learning cycle: (1) exploration; (2) concept invention; and (3) concept application. (DDR)
Descriptors: Chemistry, Discovery Learning, General Science, Inquiry
Peer reviewedKlein, Doc – About Campus, 1997
Describes how to organize learning expeditions, based on wilderness expedition principles, to benefit schools and campuses. Outlines the principles for designing learning expeditions, how to apply the wilderness expedition model, and how the process can be put into effect. Emphasizes the importance of faculty training in making learning…
Descriptors: Adventure Education, College Students, Discovery Learning, Educational Strategies
Peer reviewedGlidden, Peter L. – Mathematics Teacher, 2001
Describes computation of a continued radical to approximate the golden ratio and presents two well-known geometric interpretations of it. Uses guided-discovery to investigate different repeated radicals to see what values they approximate, the golden-rectangle interpretation of these continued radicals, and the golden-section interpretation. (KHR)
Descriptors: Computation, Discovery Learning, Geometric Concepts, Learning Processes
Peer reviewedHarte, David Victor – NASSP Bulletin, 1989
Too much classroom work is teacher-initiated, labor-intensive, abstraction-rich, and experience-lean. In contrast, science centers offer students a learner-initiated, discovery-rich opportunity to explore stimulating experiences, especially when second trips are made. Optimal learning occurs with a dynamic blending of abstract and experiential…
Descriptors: Abstract Reasoning, Discovery Learning, Elementary Secondary Education, Experiential Learning
Cartwright, Sally – Child Care Information Exchange, 1989
Describes one teacher's approach to teaching science in preschool and discusses the advantages of experiential learning in preschool science programs. (RJC)
Descriptors: Discovery Learning, Early Childhood Education, Learning Strategies, Preschool Children
Peer reviewedNissani, M. – American Biology Teacher, 1996
Presents a guided discovery activity that uses fruit flies and can be implemented in introductory biology and nature of science classes to flesh out abstract lectures about life cycles, insect morphology, patterns and causes of animal behavior, and the nature of science. Discusses strengths and drawbacks and results of student evaluations of the…
Descriptors: Biology, Discovery Learning, Educational Change, Inquiry
Peer reviewedRambusch, Nancy McCormick – Montessori Life, 1995
Describes Maria Montessori's early learning "Casa" setting for young children and other models for educational programs for young children. Discusses the importance of setting in facilitating natural learning in young children and the five steps in the natural learning cycle--observation, participation, role-playing practice, eureka…
Descriptors: Active Learning, Classroom Design, Classroom Environment, Discovery Learning
Peer reviewedBoykin, Wilfred E. – School Science and Mathematics, 1995
Presents an extension of Pick's theorem for simple closed polygonal regions to unions of simple closed polygonal regions. Students are guided to discover Pick's theorem from sets of data including numbers of boundary points and numbers of interior points. (Author/MKR)
Descriptors: Discovery Learning, Geometry, Junior High Schools, Learning Activities
Peer reviewedSkolnik, Susan – Educational Leadership, 1995
When disequilibrium is integrated into the high school chemistry curriculum, students are challenged by phenomena that cause them to question previously held beliefs. They then develop possible explanations and design methods to test their hypotheses. Discovery learning encourages in-depth concept development, independent problem solving, and…
Descriptors: Active Learning, Change Strategies, Chemistry, Context Effect
Baker-Graham, Abi – Journal of Adventure Education and Outdoor Leadership, 1994
Argues that outdoor education is, in its own right, a creative form of learning. Draws parallels between stages of personal development in real life and in caving (as an example of outdoor education). Includes citations from Maslow's work that are applicable to outdoor and adventure education activities. Notes the importance of preparing outdoor…
Descriptors: Adventure Education, Creative Development, Creativity, Discovery Learning
Cooke, Elizabeth – Echoes: The Northern Maine Journal, 1992
Profiles Archer Poor, a self-taught amateur archaeologist and camp manager in rural Maine. Describes his archeological work on Indian artifacts and its significance to professional scientists. Describes his discovery-learning approach to raising children. Emphasizes importance of patience, persistence, parent influence, and library research in…
Descriptors: Academic Persistence, Archaeology, Discovery Learning, Independent Study
Peer reviewedFlick, Larry – Journal of Science Teacher Education, 1991
Describes a theory of metaphor and analogy and discusses its implications for enhancing teacher understanding of scientific inquiry and inquiry teaching at the elementary level. Discusses uses of analogy in classrooms: Scientific Theory, Learning Styles and Modes, Children's Ideas, Generative Teaching Strategies, Graphic Organizers, and…
Descriptors: Discovery Learning, Elementary School Science, Inquiry, Inservice Education
Peer reviewedNissani, Moti; And Others – Physics Teacher, 1994
Presents an inexpensive take-home laboratory activity designed to enhance students understanding of atmospheric pressure by allowing them to engage in a hands-on, discovery approach to physics. (ZWH)
Descriptors: Discovery Learning, Higher Education, Home Study, Introductory Courses
Peer reviewedHagstrom, David – Educational Leadership, 1992
After years of watching administrators bully children, teachers, and parents into reform, a Fairbanks (Alaska) elementary principal decided to be a facilitator, not a dictator. Assuming a "servant leadership" role, this principal garnered community support for transforming an old, unwanted school into a new math-science learning center…
Descriptors: Administrator Role, Change Strategies, Community Involvement, Discovery Learning
Peer reviewedMcKay, Roberta – Canadian Social Studies, 1993
Discusses constructivist theory and its role in educational reform. Defines the theory as a focus on active rather than passive learning. Relates constructivism to the reflective inquiry approach to social studies. (CFR)
Descriptors: Cognitive Processes, Cognitive Psychology, Discovery Learning, Elementary Secondary Education


