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Peer reviewedBecker, Jerry P.; Young, Courtney D., Jr. – Journal for Research in Mathematics Education, 1978
No significant interaction was found between two instructional treatments and two aptitude variables in this study, but they did find four disordinal interactions, two using one predictor variable and two using two predictor variables. (MN)
Descriptors: Aptitude, Aptitude Treatment Interaction, Discovery Learning, Educational Research
Peer reviewedHawkin, Wendy – Mathematics in School, 1988
Describes activities in a mathematics class for six-year-olds. The article makes several points, including: working independently is very absorbing; investigative work is as important as algorithms; and children working in groups can achieve more than even the brightest child working alone. (PK)
Descriptors: Algorithms, Discovery Learning, Elementary Education, Elementary School Mathematics
Peer reviewedLondon, Marilyn – Music Educators Journal, 1984
Music motivator projects that enable the elementary teacher to use social science methods (known as ethnomethodology) to observe and learn about students without testing are described. Working in groups and guiding each other, students compose a musical composition and then notate it. Discovery learning is encouraged. (RM)
Descriptors: Creativity, Discovery Learning, Elementary Education, Learning Activities
Peer reviewedReckinger, Nancy – PTA Today, 1984
Active children often develop learning problems because of their need for constant stimuli. These children require activities that allow them hands-on experience. Suggestions are offered on how parents can teach in active ways at home and show the child that learning can be fun. (DF)
Descriptors: Behavior Problems, Discovery Learning, Elementary Secondary Education, Learning Problems
Peer reviewedLoew, Helene Z. – Foreign Language Annals, 1977
The inquiry teaching or discovery approach to learning is discussed. An object lesson is outlined using a cultural artifact as the subject of analysis. (Author/RM)
Descriptors: Cognitive Processes, Cultural Awareness, Discovery Learning, Educational Objectives
Peer reviewedShymansky, 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
St. John, Michael J. – 1999
This paper describes W.A.S.H. (We All Speak Here), an experiential learning strategy that provides learners (individuals or groups) with a means for exploring, discussing, and discovering their thoughts and feelings on any idea, issue, or concept. This strategy is part of a larger model in which students develop a deeper understanding of learning…
Descriptors: Brainstorming, Cognitive Style, Discovery Learning, Discussion (Teaching Technique)
Johnson, Dana T. – 2000
This digest discusses the unique needs of mathematically gifted students and reasons why curriculum and instruction should be differentiated for these learners in mixed-ability classrooms. Recommendations for differentiation include: (1) give pre-assessments so that students who already know the material do not have to repeat it but may be…
Descriptors: Academically Gifted, Discovery Learning, Elementary Secondary Education, Gifted
Peer reviewedBlake, A. J. D. – Australian Science Teachers Journal, 1973
Identifies and discusses developments in learning theory that are of particular interest to science teachers. Emphasizes the importance of inquiry learning in facilitating intellectural growth whcih may otherwise be retarded by a classroom environment that does not provide opportunities for the student to investigate, probe, discuss and question.…
Descriptors: Cognitive Processes, Discovery Learning, Elementary School Science, Inquiry
Peer reviewedWinn, Mildred – Childhood Education, 1970
Descriptors: Discovery Learning, Elementary School Science, Grade 2, Independent Study
Kilpatrick, Jeremy – Rev Educ Res, 1969
Descriptors: Discovery Learning, Educational Research, Instructional Programs, Mathematical Applications
Peer reviewedDunn, Carolyn S. – Science Education, 1983
Compared effect of six instructional strategies (discovery, two expository lessons, prototype development, interrogatory, and combination of interrogatory/prototype development) on concept learning of college students (N=230). Results suggest use of prototype developmental method alone or in combination with interrogatory method if high levels of…
Descriptors: College Science, Concept Formation, Concept Teaching, Conventional Instruction
Peer reviewedPagni, David L.; Gannon, Gerald E. – Mathematics Teacher, 1981
Presented is a method for finding two triangles that have five pairs of congruent parts, yet fail to be congruent. The solution is thought to involve some creative insights that should challenge both the teacher and students to recall and analyze all the congruence axioms and theorems. (MP)
Descriptors: Discovery Learning, Geometric Concepts, Geometry, Instructional Materials
Peer reviewedMaletsky, Evan M. – Arithmetic Teacher, 1982
Four specific problems are presented, discussed, and extended to illustrate how diverse instructional strategies, materials, and resources can be used to develop problem-solving skills. (MP)
Descriptors: Discovery Learning, Elementary Secondary Education, Junior High Schools, Learning Activities
Peer reviewedGriffiths, H. B. – Mathematics in School, 1981
A lesson involving moebius strips and geometric properties is reviewed. Specific activities are suggested. (MP)
Descriptors: Discovery Learning, Elementary School Mathematics, Elementary Secondary Education, Geometric Concepts


