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Hefendehl-Hebeker, Lisa – For the Learning of Mathematics, 1991
The teaching of negative numbers poses problems at the school level. A historical account of the intellectual difficulties in the evolution of negative numbers and a method of viewing negative numbers as an extension of the number system to help overcome these difficulties are presented. (MDH)
Descriptors: Learning Strategies, Mathematics Education, Mathematics History, Mathematics Instruction

Liebeck, Pamela – Educational Studies in Mathematics, 1990
Children's responses to an alternative model over three lessons were described and their learning assessed in a posttest. Their responses and performances were compared to that of a similar group of children learning through a conventional number line model. The two models were compared from practical and theoretical viewpoints. (Author/CW)
Descriptors: Arithmetic, Cognitive Development, Cognitive Structures, Learning Strategies

Garnett, Katherine – Learning Disabilities Research and Practice, 1992
Insights from both cognitive psychology and learning disabilities intervention research are presented to improve understanding of the processes by which number fact fluency develops. Discussion includes assessment guidelines and learning strategies such as counting all, counting on, and alternative groupings. (Author/JDD)
Descriptors: Arithmetic, Cognitive Processes, Cognitive Psychology, Computation

Krustchinsky, Rick; Larner, Nancy – Teaching Exceptional Children, 1988
Techniques used to teach a class of seven- and eight-year-old learning-disabled students to tell time are described. Students first practiced counting by 1s and 5s around a clock with no hands before being introduced to the differing functions of the minute and hour hands. (VW)
Descriptors: Elementary Education, Learning Disabilities, Learning Strategies, Number Concepts

Boom, Susan E.; Fine, Elaine – TEACHING Exceptional Children, 1995
The STAR (Stop, Think, Ask, Recite) strategy was developed to help a kindergarten student write numerals. The child was encouraged to recite a "saying" while he formed each numeral. For example, to make a "5," the child would say "the man went down the street, around the corner, and his hat blew off." (JDD)
Descriptors: Handwriting, Learning Strategies, Metacognition, Numbers

Dietz, Charles – Perspectives in Education and Deafness, 1993
Strategies for rapid mental computation are explained, including multiplying by 11 (or 21, 31, etc.); adding columns of numbers; and multiplying 2-digit numbers. Rapid mental computation is suggested as a motivator for investigating the underlying mathematical principles. (DB)
Descriptors: Algorithms, Computation, Elementary Secondary Education, Learning Strategies

Anderson, Maureen McCahan – TEACHING Exceptional Children, 1996
A mnemonic clue sentence--"He thinks mice bite trees"--is suggested for helping students with learning disabilities or mild mental retardation successfully identify up to 15 digit numbers by relating the sentence to the sequence of hundreds, thousands, millions, billions, and trillions. (DB)
Descriptors: Elementary Secondary Education, Learning Disabilities, Learning Strategies, Mathematics Instruction

Vale, Colleen – Australian Primary Mathematics Classroom, 1999
Computation activities focusing on speed and accuracy do not provide children with the opportunity to learn or develop their own mental computation strategies. Sets out some goals and ideas for teaching mental computation and introduces a card game for helping children compute mentally. (ASK)
Descriptors: Computation, Educational Games, Elementary Education, Elementary School Mathematics
Sandieson, Robert – 1991
This study addressed the problem of promoting generalization of knowledge in people with mental handicaps, by presenting an approach based on the idea that certain cognitive representations of strategies and related concepts are common to solving a wide variety of problems. The surface context of these problems may vary considerably, but all will…
Descriptors: Adolescents, Cognitive Processes, Generalization, Instructional Effectiveness

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

Steffe, Leslie P.; Olive, John – Arithmetic Teacher, 1991
Discusses research findings that relate to teaching fractions for conceptual understanding. Gives teacher/student dialogues that illustrate the thought processes of students as they form part-whole and improper fraction concepts. (MDH)
Descriptors: Classroom Environment, Cognitive Processes, Concept Formation, Elementary Education
Geary, David C.; And Others – 1987
To isolate the process deficits underlying a specific learning disability in mathematics achievement, 77 academically normal and 46 learning disabled (LD) students in second, fourth or sixth grade were presented 140 simple addition problems using a true-false reaction time verification paradigm. (The problems were on a video screen controlled by…
Descriptors: Addition, Cognitive Processes, Computation, Elementary Education

Pegg, John; Redden, Edward – Australian Mathematics Teacher, 1990
The purpose of this article is to highlight and discuss the role of language as the link between experiences with number patterns and the emergence of algebraic notation. Discussed is a recommended approach. A sample of a written student response is provided. (CW)
Descriptors: Algebra, Content Area Writing, Learning Activities, Learning Strategies
Huffman, Lisa F.; Fletcher, Kathryn, L.; Bray, Norman W.; Grupe, Lisa A. – Education and Training in Developmental Disabilities, 2004
This microgenetic study investigated similarities and differences in use and discovery of addition strategies in children with and without mild mental retardation across 24 sessions. Nine children with mild mental retardation in third through fifth grade classrooms and 14 children without mental retardation in kindergarten classrooms were tested…
Descriptors: Grade 5, Mild Mental Retardation, Arithmetic, Mathematics Skills

Reimer, Wilbert – Mathematics Teacher, 1989
Domino games are used to illustrate problem-solving techniques in a college principles-of-mathematics course. Students develop tables and use Pascal's triangle to find the total number of pips and the sum of numbers on the pieces. (DC)
Descriptors: Class Activities, College Mathematics, Critical Thinking, Discovery Learning
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