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Math Review Slides
Math Review Slides

Olympiad Solutions - Math Prize for Girls
Olympiad Solutions - Math Prize for Girls

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... All of the numbers in red (1 , 4 , 9 , 16, 25 etc) are considered “perfect” because their square root is an integer (and rational) ...
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Exam 1 Review - jan.ucc.nau.edu

... addition of whole numbers, models for addition of whole numbers, models for subtraction of whole numbers, less than, greater than. ...
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Dividing Polynomials

... divisor in descending powers of any variable. • Divide the first term in the dividend by the first term in the divisor. The result is the first term of the quotient. • Multiply every term in the divisor by the first term in the quotient. Write the resulting product beneath the dividend with like ter ...
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Real Numbers Review WKSH

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First Nine Weeks Review

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< 1 ... 405 406 407 408 409 410 411 412 413 ... 456 >

Location arithmetic

Location arithmetic (Latin arithmeticæ localis) is the additive (non-positional) binary numeral systems, which John Napier explored as a computation technique in his treatise Rabdology (1617), both symbolically and on a chessboard-like grid.Napier's terminology, derived from using the positions of counters on the board to represent numbers, is potentially misleading in current vocabulary because the numbering system is non-positional.During Napier's time, most of the computations were made on boards with tally-marks or jetons. So, unlike it may be seen by modern reader, his goal was not to use moves of counters on a board to multiply, divide and find square roots, but rather to find a way to compute symbolically.However, when reproduced on the board, this new technique did not require mental trial-and-error computations nor complex carry memorization (unlike base 10 computations). He was so pleased by his discovery that he said in his preface ... it might be well described as more of a lark than a labor, for it carries out addition, subtraction, multiplication, division and the extraction of square roots purely by moving counters from place to place.
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