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Box, Katherine; Scott, Paul – Australian Mathematics Teacher, 2004
Before primitive man had grasped the concept of number, the written word or even speech, he was able to count. This was important for keeping track of food supplies, sending messages, trading between villages and even keeping track of how many animals were in their herd. Counting was done in various ways, but in all cases, the underlying principle…
Descriptors: Mathematical Concepts, Computation, Numbers, Manipulative Materials
Belenky, Daniel M.; Nokes, Timothy J. – Journal of Problem Solving, 2009
How does the type of learning material impact what is learned? The current research investigates the nature of students' learning of math concepts when using manipulatives (Uttal, Scudder, & DeLoache, 1997). We examined how the type of manipulative (concrete, abstract, none) and problem-solving prompt (metacognitive or problem-focused) affect…
Descriptors: Instructional Materials, Manipulative Materials, Mathematical Concepts, Metacognition
Caswell, Rosemaree – Australian Primary Mathematics Classroom, 2007
In the middle years of primary schooling, the teaching of common fractions frequently involves written activities that use abstract representations of numbers, symbols, and images. Many students, however, still need the benefit of concrete materials and sensory motor experiences to enhance their understanding of the concepts associated with common…
Descriptors: Mathematics Education, Elementary School Mathematics, Mathematics Instruction, Mathematical Concepts
Manches, Andrew; O'Malley, Claire; Benford, Steve – Computers & Education, 2010
This research aims to explore the role of physical representations in young children's numerical learning then identify the benefits of using a graphical interface in order to understand the potential for developing interactive technologies in this domain. Three studies are reported that examined the effect of using physical representations…
Descriptors: Young Children, Computer Interfaces, Problem Solving, Mathematics Instruction
Albert Shanker Institute, 2009
This report examines the importance and efficacy of oral language, literacy, mathematics, and science preschool curricula and how these curricula can be improved through alignment with research on early childhood development and learning. Detailed, research-driven recommendations are presented for what preschool-aged children should be learning in…
Descriptors: Preschool Curriculum, Oral Language, Literacy Education, Mathematics Instruction
Peltenburg, Marjolijn; van den Heuvel-Panhuizen, Marja; Doig, Brian – British Journal of Educational Technology, 2009
This paper reports a study aimed at revealing special-educational-needs pupils' learning potential by means of an ICT-based assessment including a dynamic visual tool that might help pupils when solving mathematics problems. The study focused on subtraction problems up to 100, which require "borrowing". These problems, in which the value…
Descriptors: Foreign Countries, Subtraction, Special Needs Students, Special Education
Greger, Margaret – Learning, 1975
This article discusses kite design and construction. (PD)
Descriptors: Creativity, Design, Geometric Concepts, Manipulative Materials
Corwin, Rebecca – Educational Technology, 1972
A description of a learning kit developed by the Children's Museum in Boston, Massachusetts. (AK)
Descriptors: Audiovisual Aids, Enrichment Activities, Instructional Materials, Manipulative Materials
Peer reviewedIbe, Milagros D. – Arithmetic Teacher, 1970
Descriptors: Elementary School Mathematics, Geometric Concepts, Instruction, Manipulative Materials
Kuntzleman, Thomas S.; Swanson, Matthew S.; Sayers, Deborah K. – Journal of Chemical Education, 2007
An exercise is presented in which the kinetics of the irreversible "reaction" of pennies in the heads-up state to pennies in the tails-up state is simulated by a hands-on, Monte Carlo approach. In addition, the exercise incorporates a second simulation in which the irreversible "reaction" of dice with a red face uppermost to a blue face uppermost…
Descriptors: Monte Carlo Methods, Kinetics, Probability, Item Response Theory
Hansen, Pia; Mathern, Donna – Teaching Children Mathematics, 2008
This article describes the journey that one elementary school took in examining the roles and responsibilities of the principal, teachers, students, and school environment in supporting mathematical understanding as described by the NCTM Standards. (Contains 2 tables and a bibliography.)
Descriptors: Educational Environment, Mathematics Instruction, Elementary School Mathematics, Teacher Role
Zacharia, Zacharias C.; Olympiou, Georgios; Papaevripidou, Marios – Journal of Research in Science Teaching, 2008
This study aimed to investigate the comparative value of experimenting with physical manipulatives (PM) in a sequential combination with virtual manipulatives (VM), with the use of PM preceding the use of VM, and of experimenting with PM alone, with respect to changes in students' conceptual understanding in the domain of heat and temperature. A…
Descriptors: Experimental Groups, Control Groups, Undergraduate Students, Introductory Courses
Holden, Linda – Learning, 1987
Math manipulatives let students see the components of an abstract problem, help build a concrete language for talking about math concepts, and encourage students to gain confidence in their ability to figure things out. Many suggestions for using manipulatives in math instruction are offered. (MT)
Descriptors: Elementary Education, Elementary School Mathematics, Manipulative Materials, Mathematics Instruction
Peer reviewedReys, Robert E. – Arithmetic Teacher, 1971
This article discusses the rationale for the classroom use of manipulative materials. Selection criteria are presented for the guidance of teachers, together with advice on how and how not to use the materials. (MM)
Descriptors: Concept Formation, Instruction, Instructional Materials, Learning
American School and University, 1971
Descriptors: Design, Educational Facilities, Manipulative Materials, Play

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