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Renwick, E. M. – Mathematics in School, 1974
Descriptors: Diagrams, Elementary School Mathematics, Instruction, Instructional Materials
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Greger, Karl – Two-Year College Mathematics Journal, 1974
Descriptors: Calculus, College Mathematics, Mathematical Concepts, Mathematics
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Olson, Melfried; Olson, Judith – School Science and Mathematics, 1988
Describes a pattern which emerged from an examination of the digits of the squares of numbers. Provides eight examples having the pattern at the units or tens digit of the number. (YP)
Descriptors: Algorithms, Arithmetic, Elementary Education, Elementary School Mathematics
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Gurganus, Susan – Intervention in School and Clinic, 2004
"Number sense" is "an intuition about numbers that is drawn from all varied meanings of number" (NCTM, 1989, p. 39). Students with number sense understand that numbers are representative of objects, magnitudes, relationships, and other attributes; that numbers can be operated on, compared, and used for communication. It is fundamental knowledge…
Descriptors: Mathematics Education, Numbers, Arithmetic, Educational Strategies
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Leavitt, W. G. – Two-Year College Mathematics Journal, 1973
Descriptors: College Mathematics, Computers, Mathematics, Number Concepts
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Lichtenberg, Betty Plunkett – Arithmetic Teacher, 1972
Descriptors: Elementary School Mathematics, Instruction, Mathematics, Number Concepts
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Pinker, Aron – Two-Year College Mathematics Journal, 1972
Descriptors: Calculus, College Mathematics, Mathematics, Number Concepts
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Schmalz, Rosemary – Two-Year College Mathematics Journal, 1972
Descriptors: College Mathematics, Instruction, Mathematics, Number Concepts
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Rothbart, Andrea – Mathematics Teacher, 1972
Descriptors: Instruction, Mathematics, Mathematics Education, Number Concepts
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Zwier, Paul J. – Mathematics Teacher, 1970
Descriptors: College Mathematics, History, Mathematical Concepts, Number Concepts
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Rips, Lance J.; Asmuth, Jennifer; Bloomfield, Amber – Cognition, 2006
According to one theory about how children learn the concept of natural numbers, they first determine that "one", "two", and "three" denote the size of sets containing the relevant number of items. They then make the following inductive inference (the Bootstrap): The next number word in the counting series denotes the size of the sets you get by…
Descriptors: Numbers, Number Concepts, Inferences, Computation
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Gough, John – Australian Primary Mathematics Classroom, 2005
In this article, the author presents his tales of very large numbers. He discusses the concept of infinity and extremely large numbers such as "googol" and "googolplex". "Googol" which could be written as 1, followed by one hundred zeros, was popularized by Edward Kasner and James Newman. Moreover, "googol"…
Descriptors: Numbers, Number Concepts, Mathematics Instruction, Elementary School Mathematics
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Webb, David C.; van der Kooij, Henk; Geist, Monica R. – Journal of Mathematics Education at Teachers College, 2011
This article describes Realistic Mathematics Education (RME), a design theory for mathematics education proposed by Hans Freudenthal and developed over 40 years of developmental research at the Freudenthal Institute for Science and Mathematics Education in the Netherlands. Activities from a unit to develop student understanding of logarithms are…
Descriptors: Instructional Design, Numbers, Mathematics Instruction, Foreign Countries
Wright, Robert J.; Ellemor-Collins, David; Tabor, Pamela D. – SAGE Publications (CA), 2011
This fourth book in the Mathematics Recovery series equips teachers with detailed pedagogical knowledge and resources for teaching number to 7 to 11-year olds. Drawing on extensive programs of research, curriculum development, and teacher development, the book offers a coherent, up-to-date approach emphasizing computational fluency and the…
Descriptors: Curriculum Development, Intervention, Mental Computation, Special Education
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Bintz, William P. – Reading Teacher, 2010
This article uses "fibbin" (Fibonacci poems) as an instructional strategy to teaching reading and writing across the curriculum. It describes fibbin from a historical and mathematical perspective and discusses it as an adaptation of the famous Fibonacci sequence to teaching content area material (e.g. science, math, and social studies). This…
Descriptors: Educational Strategies, Writing Across the Curriculum, Literacy Education, Reading
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