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Peer reviewedBechlerowa, Helena – International Journal of Early Childhood, 1977
Describes a series of action books containing cardboard cut-outs for children to use in enacting the story as it is read to them. Discusses the educational value of various features of these books. (JMB)
Descriptors: Books, Childrens Literature, Early Childhood Education, Instructional Materials
Burns, Marilyn – Instructor, 1988
Simple, classroom-tested probability activities that capture students' interest, develop critical thinking skills, and reinforce addition facts are suggested. All activities involve investigating the probabilities of the sums that come up when two dice are tossed. (MT)
Descriptors: Elementary Education, Elementary School Mathematics, Manipulative Materials, Mathematical Concepts
Peer reviewedGibb, Allan A. – Mathematics Teacher, 1974
Descriptors: Algebra, Conceptual Schemes, Instruction, Manipulative Materials
Townsend, Ian – Visual education, 1973
Descriptors: Audiovisual Aids, Equipment Utilization, Laboratory Equipment, Manipulative Materials
Robin, Anthony C. – Mathematics Teaching, 1972
Descriptors: Algebra, Algorithms, Calculus, Manipulative Materials
Peer reviewedSchwartz, Benjamin L. – Mathematics Teacher, 1973
Descriptors: Game Theory, Games, Manipulative Materials, Mathematical Enrichment
Peer reviewedKing, Irv – Arithmetic Teacher, 1972
Descriptors: Addition, Algorithms, Arithmetic, Elementary School Mathematics
Peer reviewedBrong, Tedi – Arithmetic Teacher, 1971
Descriptors: Arithmetic, Elementary School Mathematics, Grade 1, Instruction
Engel, Rose – Acad Therap Quart, 1970
Descriptors: Early Childhood Education, Exceptional Child Education, Instructional Materials, Manipulative Materials
Peer reviewedVandenberg, Brian – Merrill-Palmer Quarterly, 1981
Investigates age differences in the impact of play on subsequent tool-use, the influences of task characteristics on the impact of play on tool-use, the ways play aids tool-use, and the effect of play richness on tool-use among 30 children in each of three age groups (from four to five, six to seven, and eight to ten years of age). (RH)
Descriptors: Children, Difficulty Level, Manipulative Materials, Performance Factors
Peer reviewedVandenberg, Brian – Journal of Psychology, 1981
Examined whether the density of play continues to increase as children grow older. Four- and five-year-olds made simple constructions using few materials, six- and seven-year-olds made more constructions with more materials, and eight-to ten-year-olds made fewer but much more extensive and integrated constructions. (Author/DB)
Descriptors: Age Differences, Child Development, Children, Manipulative Materials
Sabo, Mark; And Others – Chemecology, 1995
This activity explores two types of plastic molding and allows students to make their own plastic bottles. (MKR)
Descriptors: Chemistry, Lesson Plans, Manipulative Materials, Plastics
Peer reviewedStacey, Kaye; Helme, Sue; Archer, Shona; Condon, Caroline – Educational Studies in Mathematics, 2001
Reports on a study comparing the use of Multi-base arithmetic blocks (MAB) and an alternative, LAB (linear arithmetic blocks) on the basis of epistemic fidelity and accessibility for students. Use of LAB was associated with more active engagement by students and deeper discussion. (Author/MM)
Descriptors: Arithmetic, Elementary Education, Epistemology, Manipulative Materials
de Mestre, Neville – Australian Mathematics Teacher, 2005
For many years I have been advocating the use of hands-on materials to assist students in the understanding and application of mathematical concepts. Some of the methods have been introduced as small parts of earlier Discovery articles, (de Mestre, 1994, 1996, 1998, 1999a, 1999b, 1999c, 2000a, 2000b, 2001), but here I propose to devote the whole…
Descriptors: Mathematical Concepts, Mathematics Instruction, Mathematics Activities, Manipulative Materials
Miller, Karen A. Donk; Rule, Audrey C.; MacEntee, Virginia M. – Online Submission, 2008
All learners, including those who qualify for special education services, should have access to learning mathematical concepts. This study examined the efficacy of using hands-on sets of materials to teach two high school students with mental retardation the four situations for subtraction. This is a mixed methods study using a simple…
Descriptors: Mental Retardation, Student Interests, Pretests Posttests, Mathematical Concepts


