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Suh, Jennifer M.; Seshaiyer, Padmanabhan – Rowman & Littlefield Publishers, 2016
"Modeling Mathematical Ideas" combining current research and practical strategies to build teachers and students strategic competence in problem solving.This must-have book supports teachers in understanding learning progressions that addresses conceptual guiding posts as well as students' common misconceptions in investigating and…
Descriptors: Elementary School Mathematics, Secondary School Mathematics, Mathematics Instruction, Problem Solving
Krasa, Nancy; Shunkwiler, Sara – Brookes Publishing Company, 2009
How do children learn math--and why do some children struggle with it? The answers are in "Number Sense and Number Nonsense," a straightforward, reader-friendly book for education professionals and an invaluable multidisciplinary resource for researchers. More than a first-ever research synthesis, this highly accessible book brings math…
Descriptors: Mathematics Instruction, Learning Problems, Numbers, Arithmetic
Carpenter, Thomas P.; Levi, Linda; Farnsworth, Valerie – In Brief, 2000
"In Brief" focuses on K-12 mathematics and science research and implications for policymakers, educators, and researchers seeking to improve student learning and achievement This brief highlights the learning gains of 240 elementary students involved in a long-term study in Madison, Wisconsin and their remarkable ability to reason with arithmetic…
Descriptors: Abstract Reasoning, Algebra, Arithmetic, Educational Change
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Liedtke, Werner W. – B.C. Journal of Special Education, 1996
This article offers specific strategies to diagnose and remediate difficulties students may have in learning multiplication facts. Analyzes strategies students use to go from a known fact to an unknown fact. The point is made that, for many students, the order of interpretation of a number fact may affect accuracy. (DB)
Descriptors: Abstract Reasoning, Arithmetic, Computation, Learning Problems
Wagner, Sigrid, Ed.; And Others – 1981
The papers contained in this document were originally presented at the May 1978 conference on Modeling Mathematical Cognitive Development sponsored by the Models of Learning Mathematics Working Group of the Georgia Center for the Study of Learning and Teaching Mathematics. Most have been revised to reflect comments and suggestions made at the…
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Processes, Individual Characteristics
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Gagnon, Joseph Calvin; Maccini, Paula – TEACHING Exceptional Children, 2001
This article presents specific instructional approaches and examples to develop the algebraic reasoning skills of middle and secondary students with mild disabilities. Discussion of the National Council of Teachers of Mathematics standards identifies general principles, content standards, and process standards. Discussion of effective instruction…
Descriptors: Abstract Reasoning, Academic Standards, Algebra, Educational Principles
Giordano, Gerard – Academic Therapy, 1987
Ten remedial mathematics exercises are provided for children who have failed to integrate or apply their math skills. The exercises provide remediation through systematic experimentation, rather than abstract drills, by using number-configuration distinction with blocks, fractioned candy bars, decimal match sticks, graphed pictures, etc. (JDD)
Descriptors: Abstract Reasoning, Concept Formation, Elementary Secondary Education, Experiential Learning
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Cawley, John F.; Parmar, Rene S. – Remedial and Special Education (RASE), 1992
Concepts from cognitive psychology are presented as an alternative framework to arithmetic instruction for students with disabilities. The approach, which emphasizes reasoning, communication, and problem solving, is applied to addition, division, multiplication, subtraction, and word problems. The purpose of arithmetic instruction is asserted to…
Descriptors: Abstract Reasoning, Cognitive Psychology, Computation, Disabilities
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Howell, Susan C.; Barnhart, Ruth S. – Teaching Exceptional Children, 1992
This article describes a problem-solving strategy unit to be used as a supplement to the regular mathematics curriculum at the primary level. Specific teaching steps and examples are given for three developmental stages of thinking: (1) concrete, (2) representational, and (3) abstract. (DB)
Descriptors: Abstract Reasoning, Classroom Techniques, Cognitive Development, Developmental Stages