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Home > Art, Film & Photography > Arithmetic: Least Common Multiple, Ackermann Function, Factorization, Composite Number, Rounding, Additive Inverse, Location Arithmetic
Arithmetic: Least Common Multiple, Ackermann Function, Factorization, Composite Number, Rounding, Additive Inverse, Location Arithmetic

Arithmetic: Least Common Multiple, Ackermann Function, Factorization, Composite Number, Rounding, Additive Inverse, Location Arithmetic


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About the Book

Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 64. Chapters: Least common multiple, Ackermann function, Factorization, Composite number, Rounding, Additive inverse, Location arithmetic, Interval arithmetic, Bharati Krishna Tirtha's Vedic mathematics, Hyperoperation, Summation, Trachtenberg system, Finite field arithmetic, Auxiliary fraction, Circuits over sets of natural numbers, Division algorithm, Prosthaphaeresis, Significant figures, Casting out nines, Timeline of numerals and arithmetic, Bracket, Empty sum, Galley division, Non-standard model of arithmetic, Pentation, False precision, Integer circuit, Outline of arithmetic, Shabakh, Rabdology, Arithmetic rope, Arithmetic precision, Running total, Sudan function, Anomalous cancellation, Base conversion divisibility test, Promptuary. Excerpt: Location arithmetic (Latin arithmeticae localis) is a technique to do binary arithmetic using a chessboard-like grid. John Napier termed the technique in his treatise Rabdology, from the way that positions of counters on the board represented numbers. Using simple moves of counters on the board, Napier showed ways to multiply, divide and even find the square roots of binary numbers. 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. Binary notation had not yet been standardized, and Napier used what he called location numerals to represent binary numbers. Roughly speaking, it used alphabets to stand for various powers of two. He used a to represent 1, b for 2, c for 4, d for 8, e for 16 and so on. To represent a number as a location numeral, express it as a sum of powers of two and replace the powers by the letters. For example 87 = 1 + 2 + 4 + 16 + 64 = abcegA loca..


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Product Details
  • ISBN-13: 9781157718369
  • Publisher: Books LLC, Wiki Series
  • Publisher Imprint: Books LLC, Wiki Series
  • Height: 246 mm
  • No of Pages: 66
  • Spine Width: 4 mm
  • Weight: 136 gr
  • ISBN-10: 1157718361
  • Publisher Date: 12 Aug 2011
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: Least Common Multiple, Ackermann Function, Factorization, Composite Number, Rounding, Additive Inverse, Location Arithmetic
  • Width: 189 mm


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