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Peer reviewedReynolds, P. – Mathematics in School, 1983
The Cockcroft Report on English Schools recommends that all schools design their syllabuses and examinations on the assumption that all students will have access to calculators. How to use calculators sensibly to improve what is taught and how curriculum content may change are discussed. (MNS)
Descriptors: Calculators, Calculus, Computation, Division
Peer reviewedFennell, Francis; And Others – Arithmetic Teacher, 1983
Computational skills in multiplication and division are reinforced and practice is provided on these worksheets on estimating, finding factors, and determining divisibility. (MNS)
Descriptors: Computation, Elementary School Mathematics, Elementary Secondary Education, Estimation (Mathematics)
Peer reviewedThornton, Carol A.; And Others – Journal for Research in Mathematics Education, 1983
The effectiveness of the Multisensory Basic Fact Program to teach addition facts to 115 remedial groups in grades two through six in Australian schools was studied. Performance increased between pre- and posttests and was maintained on the retention test. (MNS)
Descriptors: Addition, Cognitive Processes, Computation, Educational Research
Peer reviewedOsborn, Herbert H. – Educational Research, 1983
A test was given to 322 secondary students to develop a profile of mathematical ability based on four components: computation, pattern recognition, logical reasoning, and symbolic manipulation. These profiles were compared to mathematics test scores; the results verified hypotheses about individual differences in mental processes and knowledge…
Descriptors: Abstract Reasoning, Aptitude, Computation, Individual Differences
Peer reviewedNesher, P.; And Others – Educational Studies in Mathematics, 1982
Research conducted in several countries has shown consistent patterns of performance on "change,""combine," and "compare" word problems involving addition and subtraction. These findings are interpreted within a theoretical framework which emphasizes development of levels of word problem-solving ability related to…
Descriptors: Addition, Arithmetic, Cognitive Development, Computation
Peer reviewedOwston, Ronald D. – Alberta Journal of Educational Research, 1981
Investigation of the relationship between systematic computational errors and achievement among native Indian children indicated a significant relationship between error type and achievement in multiplication but not in addition or subtraction. In multiplication, high achievers tended to make nonsystematic errors; low achievers tended to make…
Descriptors: Academic Achievement, American Indian Education, American Indians, Canada Natives
Peer reviewedBeard, Earl M. L.; Polis, A. Richard – Arithmetic Teacher, 1981
The subtraction ideas presented are designed for elementary and junior high school children, yet are felt to be flexible enough to offer some challenge for high school students, particularly in algebra. (MP)
Descriptors: Algebra, Computation, Elementary School Mathematics, Elementary Secondary Education
Peer reviewedDunkels, Andrejs – Arithmetic Teacher, 1982
A way to use tongue depressors in a model of multiplication is presented. The original intent was to use the sticks to teach about fractions, but "mistakes" in student responses led to new ideas. It is felt that teachers should use the model in teaching multiplication. (MP)
Descriptors: Computation, Elementary Education, Elementary School Mathematics, Instructional Materials
Peer reviewedEngelhardt, Jon M. – Arithmetic Teacher, 1982
Four basic types of student errors in computation are noted and described. These are: (1) mechanical, (2) careless, (3) conceptual, and (4) procedural. It is felt many teachers deal with all errors as if they were of the unhabituated procedural type, with not enough attention given to other possibilities. (MP)
Descriptors: Basic Skills, Computation, Elementary Education, Elementary School Mathematics
Peer reviewedSteffe, Leslie; And Others – For the Learning of Mathematics, 1981
Pre-experimental interviews conducted with three children to investigate three aspects of the nature of counting are detailed. Sixteen findings related to the counting of perceptual items are summarized. (MP)
Descriptors: Basic Skills, Cognitive Development, Cognitive Processes, Computation
Wilderman, Ann M.; Sharkey, Verena – Instructor, 1980
We should not, in the name of "back to basics," regress to the old methodologies of memorization and drill. Computational skills must be thoroughly developed, but mathematics should also be taught in a way that will enhance thinking skills and problem solving in an enjoyable atmosphere. (Author/SJL)
Descriptors: Basic Skills, Computation, Editorials, Educational Objectives
Zaslavsky, Claudia – Teacher, 1979
In presenting a rationale for allowing--even encouraging--children to count on their fingers, the author illustrates finger counting systems from African and American Indian tribes and the medieval European system cataloged by the Venerable Bede. She cites number words from many languages which derive from names for gestures. (SJL)
Descriptors: African Culture, American Indian Culture, Arithmetic, Computation
Peer reviewedWheatley, Grayson H. – Arithmetic Teacher, 1980
A proposal to shift to a conceptually oriented curriculum using the calculator as an instructional tool and to eliminate the teaching of complex computations in elementary school is presented. (MP)
Descriptors: Calculators, Computation, Curriculum Development, Educational Technology
Maier, Eugene – Mathematics Teaching, 1980
An example of an unrealistic "real world" problem from the National Assessment of Educational Progress highlights a comparison of school and "folk" mathematics. The failures of typical problems taught in school and some suggested remedies are featured. (MP) Aspect of National Assessment (NAEP) dealt with in this document:…
Descriptors: Curriculum Development, Elementary Secondary Education, Mathematical Applications, Mathematics Curriculum
Peer reviewedSovchik, Robert J. – Arithmetic Teacher, 1980
Directions for making a device that parents can use to help children practice basic skills are given. (MK)
Descriptors: Addition, Calculators, Computation, Division


