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Karen Zwanch; Brooke Mullins – Educational Studies in Mathematics, 2025
To understand the ways that manipulatives might support changes in students' reasoning about algebraic generalizations, a constructivist teaching experiment was conducted with two sixth-grade students. The students interpreted numerical situations with units of one and could construct units of units in mental activity. Initially, the students'…
Descriptors: Mathematics Education, Mathematics Instruction, Teaching Methods, Algebra
Huan, Chin; Meng, Chew Cheng; Suseelan, Menaga – Participatory Educational Research, 2022
Mathematics learning is illustrated as a developmental progression in the direction of concrete-to-abstract by educational theorists. Various studies rooted in this notion were conducted in the past. This study aimed to profile the landscape of research rooted in this notion which was published from 1968 to 2021. The bibliographic data of 425…
Descriptors: Mathematics Education, Educational Research, Educational History, Educational Trends
Barner, David; Alvarez, George; Sullivan, Jessica; Brooks, Neon; Srinivasan, Mahesh; Frank, Michael C. – Child Development, 2016
Mental abacus (MA) is a technique of performing fast, accurate arithmetic using a mental image of an abacus; experts exhibit astonishing calculation abilities. Over 3 years, 204 elementary school students (age range at outset: 5-7 years old) participated in a randomized, controlled trial to test whether MA expertise (a) can be acquired in standard…
Descriptors: Mathematics Education, Randomized Controlled Trials, Spatial Ability, Mental Computation
Nurnberger-Haag, Julie – North American Chapter of the International Group for the Psychology of Mathematics Education, 2015
In light of conceptual metaphor theory, historical mathematicians' and students' difficulty with negative numbers reveals that the collecting objects metaphor may be a cognitive obstacle to those first learning about negative numbers. Moreover, consistency of physical motions with targeted ideas is a factor of cognition. Thus, this…
Descriptors: Mathematics Education, Arithmetic, Number Concepts, Learning Processes
Young-Loveridge, Jenny; Mills, Judith – Australian Primary Mathematics Classroom, 2011
Much has been written about the value of concrete manipulatives for supporting students' mathematics learning. This is particularly true for the domain of fractions and decimals. Understanding of decimal place-value is seen as critical for students' mathematics learning. To understand decimals, students need first to have a solid understanding of…
Descriptors: Mathematics Education, Mathematics Instruction, Arithmetic, Mathematics
Tournaki, Nelly; Bae, Young Seh; Kerekes, Judit – Learning Disabilities: A Contemporary Journal, 2008
This study examined the effects on math performance of the use of the rekenrek, a manipulative developed by Adrian Treffers. The rekenrek looks like an abacus, but differs in that it is based on a five-structure and not a ten-structure system. It is comprised of two rows of 10 beads, each broken into two sets of 5 by color (i.e., in each row the…
Descriptors: Mathematics Education, Learning Disabilities, Scores, Subtraction

Bennett, Albert B., Jr.; Nelson, L. Ted – Mathematics Teaching in the Middle School, 2002
Uses base-ten manipulative pieces to illustrate divisibility tests with single-digit divisors. (YDS)
Descriptors: Arithmetic, Division, Manipulative Materials, Mathematics Education

Stacey, 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

Beattie, Ian D. – Arithmetic Teacher, 1986
Discusses the use of manipulative materials to model operations and algorithms. Indicates that they clarify the several interpretations of each operation, establish a basis for correct mathematical language, and show why algorithms work. (JN)
Descriptors: Algorithms, Arithmetic, Elementary Education, Elementary School Mathematics
Mathematics Teaching, 1972
Notes on jeep trips and card stacks; some work with Multibase Arithmetic Blocks, the complex roots of unity, and a divisibility test. (MM)
Descriptors: Algebra, Arithmetic, College Mathematics, Elementary School Mathematics

Warkentin, Gary – Journal for Research in Mathematics Education, 1975
Descriptors: Arithmetic, Attitudes, Higher Education, Instruction

Becker, Stanley – Arithmetic Teacher, 1971
The author describes a home-made manipulative aid which provides practice in addition. (MM)
Descriptors: Addition, Arithmetic, Educational Games, Educational Media

Rees, Jocelyn Marie – Arithmetic Teacher, 1987
Described is a model for teaching improper fractions and mixed numbers and some activities for working with them at the precomputational level. (PK)
Descriptors: Arithmetic, Class Activities, Elementary Education, Elementary School Mathematics

Maxwell, D. J. – Mathematics in School, 1971
Reviewed are the Avon materials and a set of kits for teaching the metric system. (MM)
Descriptors: Arithmetic, Elementary School Mathematics, Geometric Concepts, Instructional Materials

Duquette, Raymond J. – Arithmetic Teacher, 1972
Descriptors: Arithmetic, Child Development, Educational Psychology, Elementary School Mathematics