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McCrink, Koleen; Spelke, Elizabeth S. – Cognition, 2010
A dedicated, non-symbolic, system yielding imprecise representations of large quantities (approximate number system, or ANS) has been shown to support arithmetic calculations of addition and subtraction. In the present study, 5-7-year-old children without formal schooling in multiplication and division were given a task requiring a scalar…
Descriptors: Number Systems, Arithmetic, Multiplication, Young Children
Peer reviewedLee, John W. – Mathematics Teacher, 1972
Descriptors: Addition, Algorithms, Instruction, Mathematics
Spickerman, William R. – Sch Sci Math, 1969
Descriptors: Addition, Mathematics Education, Multiplication, Number Systems
Peer reviewedMann, Nathaniel, III – Mathematics Teacher, 1972
Descriptors: Addition, Arithmetic, Instruction, Mathematical Enrichment
Peer reviewedOlson, Alton T. – Mathematics Teacher, 1974
Descriptors: Algebra, Algorithms, Generalization, Induction
Peer reviewedConfrey, Jere; Smith, Erick – Journal for Research in Mathematics Education, 1995
Presents a covariation approach to learning exponential and logarithmic functions based on a primitive multiplicative operation labeled splitting that is not repeated addition. Suggests that students need the opportunity to build a number system from splitting structures and their geometric forms. (30 references) (MKR)
Descriptors: Concept Formation, Exponents (Mathematics), Functions (Mathematics), Learning Theories
Peer reviewedImmerzeel, George; Wiederanders, Don – Arithmetic Teacher, 1971
Four worksheets showing how number patterns may be used to give extra practice and insight into the decimal numeration system and the basic properties of arithmetic. (MM)
Descriptors: Addition, Arithmetic, Elementary School Mathematics, Instruction
Peer reviewedWatson, Jane – Australian Mathematics Teacher, 1991
It is difficult for students to unlearn misconceptions that have been unknowingly reinforced by teachers. The examples "multiplication makes bigger,""pi equals 22/7," and the use of counter examples to demonstrate the numerical property of closure are discussed as potential areas where misconceptions are fostered. (MDH)
Descriptors: Concept Formation, Division, Educational Diagnosis, Elementary Secondary Education
Peer reviewedSawyer, W. W. – Mathematics in School, 1989
This article discusses the classroom use of discovery of number pattern. Provided are examples of a table of squares, multiplications of numbers, and algebraic expressions. (YP)
Descriptors: Algebra, Elementary Education, Elementary School Mathematics, Mathematical Applications
Peer reviewedAslan, Farhad; Duck, Howard – School Science and Mathematics, 1992
P-adic or g-adic sets are sets of elements formed by linear combinations of powers of p, a prime number, or g, a counting number, where the coefficients are whole numbers less than p or g. Discusses exercises illustrating basic numerical operations for p-adic and g-adic sets. Provides BASIC computer programs to verify the solutions. (MDH)
Descriptors: Addition, Algebra, Algorithms, College Mathematics
Adams, Patricia, Ed. – 1971
This volume is the twenty-seventh in a series of 29 coordinated MINNEMAST units in mathematics and science for kindergarten and the primary grades. Intended for use by third-grade teachers, this unit guide provides a summary and overview of the unit, a list of materials needed, and descriptions of four groups of lessons. The purposes and…
Descriptors: Curriculum Guides, Elementary Education, Elementary School Mathematics, Elementary School Science
Ihrig, Elizabeth A., Ed. – 1971
This volume is the seventeenth in a series of 29 coordinated MINNEMAST units in mathematics and science for kindergarten and the primary grades. Intended for use by second-grade teachers, this unit guide provides a summary and overview of the unit, a list of materials needed, and descriptions of five groups of activities. The purposes and…
Descriptors: Curriculum Guides, Division, Elementary Education, Elementary School Mathematics

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