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Archer, J. Andrew – Mathematics Teacher, 1980
An algorithm for multiplying natural numbers is described. The algorithm provides a chance for some unusual drill and might serve as an enrichment topic. (MK)
Descriptors: Algorithms, Mathematical Enrichment, Mathematical Formulas, Mathematics Instruction

Schwartzman, Steven – Mathematics Teacher, 1987
How to develop multiplicative magic squares is discussed. Various types of numbers are used in the examples. (MNS)
Descriptors: Learning Activities, Mathematical Enrichment, Mathematics Instruction, Multiplication

Haigh, Gordon – Mathematics in School, 1990
Discusses a number series made from the multiplication of numbers to digits. Presents a number series for diverse multiplication numbers. (YP)
Descriptors: Arithmetic, Computation, Elementary Education, Elementary School Mathematics
Cordoni, Barbara – Academic Therapy, 1987
Some of the problems of learning disabled students which make teaching arithmetic difficult include: symbol-object relationships, reversibility of functions, perceptual deficits, multiplication tables, division tasks, word problems, and place values. Among suggestions for teachers are presenting and setting up problems according to students'…
Descriptors: Arithmetic, Division, Elementary Education, Learning Disabilities

DiDomenico, Angelo S. – Mathematics Teacher, 1983
It is seen as important that mathematics teachers encourage open, imaginative investigations that give students an opportunity to probe, find patterns and relations, and derive new patterns and relations. The article focuses on multiplication tables and classes, including questions for further exploration. (MP)
Descriptors: Equations (Mathematics), Instruction, Mathematical Concepts, Mathematical Enrichment

Peera, Zehra – Arithmetic Teacher, 1982
The Mayan system of numeration, which used 20 as the base, is discussed. The material presented has been used to stir the curiosity of students in different systems of numeration. It has been helpful in promoting a speedier and better understanding of base 10. (MP)
Descriptors: Elementary Secondary Education, Instructional Materials, Mathematical Enrichment, Mathematics Education

Broadbent, Frank W. – Arithmetic Teacher, 1987
A modern adaptation of the historic lattice algorithm which can be used for multiplication and division is discussed. How it works is clearly illustrated. (MNS)
Descriptors: Algorithms, Division, Elementary Education, Elementary School Mathematics

Zeilberger, Doron; Todd, Philip – Mathematics Teacher, 1981
An unusual way of using the long multiplication algorithm to solve problems is presented. It is conceptually harder, since it involves negative numbers but is easier to perform once mastered, since the size of the multiplication table required is smaller than the standard one. (MP)
Descriptors: Algorithms, Mathematical Enrichment, Mathematics Instruction, Multiplication

Dunkels, Andrejs – Mathematics in School, 1991
Number sequences are useful complements to traditional drill and practice. Described is an activity in which the basic rule, add the tens digit to five times the ones digit, is used to generate a sequence of numbers. The dialogue between teacher and student discussing characteristics of emerging patterns is given. (MDH)
Descriptors: Discovery Learning, Elementary Education, Enrichment Activities, Mathematical Enrichment

Hurd, Spencer P. – Mathematics Teacher, 1991
Presented is the ancient Egyptian algorithm for the operations of multiplication and division of integers and fractions. Theorems involving unit fractions, proved by Fibonacci, justifying and extending the Egyptian or Ahmes' methods into the Hindu-Arabic numeric representational system are given. (MDH)
Descriptors: Algebra, Division, Elementary Secondary Education, Fractions

Ploger, Don; And Others – TechTrends, 1996
Describes learning activities in which fifth and sixth graders used spreadsheets to explore the shapes of numbers. Discusses creating spatial patterns with a computer draw program; examining number patterns in a spreadsheet; comparing square and rectangular numbers; and creating the multiplication times table. (AEF)
Descriptors: Computer Graphics, Computer Uses in Education, Elementary Education, Grade 5

Brown, Ian C. – Mathematics in School, 1991
Described is an activity that categorizes a two-digit number as "sneaky" if the continued process of taking the difference of the squares of its digits leads to a difference of zero. Other categorizations are determined by whether the difference process ends in a one-digit number or continues in a loop of numbers. (MDH)
Descriptors: Discovery Learning, Elementary Secondary Education, Enrichment Activities, Inquiry

Harrison, Nancy; Van Devender, Evelyn M. – Journal of Computing in Childhood Education, 1992
Assessed the achievement in addition, subtraction, multiplication, and division of 93 fourth graders before and after they received either computer or traditional classroom drill-and-practice instruction. Students who received computer instruction showed greater increases in achievement scores in subtraction and multiplication than did students…
Descriptors: Addition, Arithmetic, Comparative Analysis, Computer Assisted Instruction

Whitman, Nancy C. – Mathematics Teacher, 1992
Described is a game that is used to introduce the concept of multiplying integers. Serving as a physical model for the concept, "Froggie Frolic" races frogs along a number line by moves that indicate direction, magnitude, and number of jumps, thus modeling integer multiplication. A teacher's guide and worksheets are provided. (MDH)
Descriptors: Concept Formation, Educational Games, Enrichment Activities, Integers

Carey, Deborah A. – Arithmetic Teacher, 1992
Discusses how children's literature can be used as a context to develop problem-solving tasks. Illustrates this idea by developing tasks to teach concepts related to multiplication through the context of "The Patchwork Quilt," a children's book by Valerie Flournoy. Suggests activity extensions to determine unit sizes, draw scale models,…
Descriptors: Area, Childrens Literature, Context Effect, Division
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