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Lewin, Cathy; Smith, Andrew; Morris, Stephen; Craig, Elaine – Education Endowment Foundation, 2019
The Education Endowment Foundation (EEF) review of the impact of digital technology on learning, "The Impact of Digital Technology on Learning: A Summary for the Education Endowment Foundation. Full Report" (Higgins et al., 2012) (ED612174), found positive benefits but noted that how technology is used (the pedagogy) is key and that…
Descriptors: Technology Uses in Education, Educational Improvement, Influence of Technology, Foreign Countries
Parisio, Richard – Outdoor Communicator, 1986
Describes typical winter farm lessons for students visiting Stony Kill Farm Environmental Education Center located 70 miles north of New York City: butter and corncake making, soil erosion experiments, dissecting and growing seeds. Emphasizes major theme of conservation of farmland from destructive farming practices and careless development. (NEC)
Descriptors: Conservation (Environment), Discovery Learning, Environmental Education, Experiential Learning
Mechling, Kenneth R.; Oliver, Donna L. – Principal, 1983
Research shows that hands-on science education is more effective than a textbook and lecture approach. This suggests that the "new curriculum" introduced in science classes in the seventies was more effective than was thought. (JM)
Descriptors: Administrator Role, Discovery Learning, Educational Research, Elementary Education
MOSAIC, 1979
The new role of the museum science center in science education is presented. Various innovative programs for amateurs, aspiring scientists, and casual visitors at several leading science centers are discussed. (SA)
Descriptors: Discovery Learning, Exhibits, Experiential Learning, Learning Activities
Roxborough, Jean – Canadian Journal of English Language Arts, 1988
Asserts that children in science education must have hands-on experience to discover and make sense of their world. Emphasizes that there is a need for teachers who enjoy both language and science. Argues that children need to discover that they use science, like language, daily. (MM)
Descriptors: Discovery Learning, Elementary Education, Experiential Learning, Foreign Countries
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Shymansky, James A. – Science and Children, 1976
Suggests that the effectiveness of non-directive, activity-centered teaching methods can be enhanced when the teacher spends less time interacting with students and more time observing them. (MLH)
Descriptors: Discovery Learning, Elementary Education, Elementary School Science, Experiential Learning
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Goldberg, Lazer – Science and Children, 1979
Discusses the importance of questioning as a means of achieving independent intelligence, critical thinking, and learning to learn. Advocates a science program that encourages investigation, discovery, and questioning. (MA)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Discovery Learning
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Perkes, Victor A. – Science and Children, 1979
The value of involving children in experiencing environmental phenomena and observing living organisms is advocated. Suggestions are presented for offering a richer set of science experiences for children. (SA)
Descriptors: Discovery Learning, Elementary Education, Elementary School Science, Environmental Education
Staver, John R. – 1986
The goal of this paper is to sketch the epistemological roots of constructivism, to clarify certain implications of Piaget's constructivist theory for science education, and to explicate the issues surrounding a specific research study and its replication. Constructivist epistemology is described in terms of its emergence from rationalist,…
Descriptors: Cognitive Development, Cognitive Processes, Discovery Learning, Elementary Secondary Education
Rakow, Steven J. – 1986
The use of the inquiry approach in the teaching of elementary science is examined and advocated in this publication. The position that an inquiry approach is the best way to teach and learn science is upheld and its influence on the development of positive attitudes towards science is stressed. Section titles include: (1) "A Tale of Two Teachers"…
Descriptors: Discovery Learning, Elementary Education, Elementary School Science, Experiential Learning
Clearing: Nature and Learning in the Pacific Northwest, 1986
Presents 20 activities that are designed to develop awareness, curiosity, and sensitivity in children through exploratory exercises of the home, community, and natural world. Incorporates native American attitudes in the activities which can be adapted to all age levels and varied learning settings. (ML)
Descriptors: Conservation (Environment), Discovery Learning, Ecology, Elementary Secondary Education
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Hetherington, Martin; And Others – School Science and Mathematics, 1981
A series of modules designed for teaching energy concepts in a manner related to the classroom, school, and environmental settings is presented. The unit is seen as able to provide both teachers and students with a concept which has far-reaching implications. (MP)
Descriptors: Conservation Education, Discovery Learning, Energy, Energy Conservation
Wolkomir, Richard – Smithsonian, 1993
The Teachers Academy for Mathematics and Science, conceived by Leon Ledermann, is a program to infuse inservice K-8 teachers with enthusiasm to teach mathematics and science. Instructional methods utilized are based on discovery learning. Describes implementation of the program in Chicago and efforts to spread the program into other urban areas.…
Descriptors: Demonstration Programs, Discovery Learning, Elementary Secondary Education, Experiential Learning
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Rivkin, Mary S. – Teaching Education, 1991
Describes a mathematics and science course designed to inspire early childhood education preservice teachers. They learn to interest young children by engaging in the kinds of science and math activities used with young children. These activities arouse feelings, stimulate curiosity, and offer opportunity for engagement. (SM)
Descriptors: Class Activities, Course Descriptions, Discovery Learning, Early Childhood Education
Liem, Tik L. – 1981
Presented is a collection of thoroughly-tested discrepant events designed for use in science classes. These events have been organized into 17 chapters grouped into four sections: Environment (5 chapters), Energy (7 chapters), Forces and Motion on Earth and in Space (3 chapters), and Living Things (2 chapters). The following information is…
Descriptors: Demonstrations (Educational), Discovery Learning, Elementary School Science, Elementary Secondary Education
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