hexadecimal multiplication - определение. Что такое hexadecimal multiplication
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Что (кто) такое hexadecimal multiplication - определение

A MULTIPLICATION ALGORITHM
Peasant multiplication; Egyptian multiplication; Russian peasant multiplication; Russian multiplication; Ancient egyptian multiplication; Egyptian Multiplication; Russian peasant algorithm; Egyptian multiplication and division; Multiplication a la russe; Ethiopian multiplication; Duplation; Egyptian multiplication algorithm

hexadecimal         
  • Ronald O. Whitaker's hexadecimal notation proposal.<ref name="Whitaker_1972"/><ref name="Whitaker_1975"/>
  • Hexadecimal finger-counting scheme
NUMERICAL SYSTEM ON BASE 16
Hexidecimal; Hex digit; Base 16; Sexidecimal; Sexadecimal; Hexadecimal system; Hexadecimal number; Hexadecimal numeral system; A (digit); B (digit); C (digit); Hexadecimals; Base-16; Hexadecimal notation; Hexdecimal numbering system; Hexdecimal; Base16; Senidenary; Sedenary; Hexidecimals; Hexadecimal digit; Hexadecimal format; \x; Hex system; Hex numeral system; Hexadecimal exponential notation; Hexadecimal floating-point constant; Hexadecimal floating-point literal; Hexadecimal representation; D (digit); E (digit); F (digit); 0x (prefix); Sexadecimal notation; Sexadecimal language; HEX (calculator mode); \xnn; \xNN; Hex format; Hex notation; Intel hex notation; Intel hexadecimal notation; Motorola hexadecimal notation; Motorola hex notation; Hex (base)
[?h?ks?'d?s?m(?)l]
¦ adjective Computing relating to or using a system of numerical notation that has 16 rather than 10 as its base.
Derivatives
hexadecimally adverb
sexadecimal         
  • Ronald O. Whitaker's hexadecimal notation proposal.<ref name="Whitaker_1972"/><ref name="Whitaker_1975"/>
  • Hexadecimal finger-counting scheme
NUMERICAL SYSTEM ON BASE 16
Hexidecimal; Hex digit; Base 16; Sexidecimal; Sexadecimal; Hexadecimal system; Hexadecimal number; Hexadecimal numeral system; A (digit); B (digit); C (digit); Hexadecimals; Base-16; Hexadecimal notation; Hexdecimal numbering system; Hexdecimal; Base16; Senidenary; Sedenary; Hexidecimals; Hexadecimal digit; Hexadecimal format; \x; Hex system; Hex numeral system; Hexadecimal exponential notation; Hexadecimal floating-point constant; Hexadecimal floating-point literal; Hexadecimal representation; D (digit); E (digit); F (digit); 0x (prefix); Sexadecimal notation; Sexadecimal language; HEX (calculator mode); \xnn; \xNN; Hex format; Hex notation; Intel hex notation; Intel hexadecimal notation; Motorola hexadecimal notation; Motorola hex notation; Hex (base)
hexidecimal         
  • Ronald O. Whitaker's hexadecimal notation proposal.<ref name="Whitaker_1972"/><ref name="Whitaker_1975"/>
  • Hexadecimal finger-counting scheme
NUMERICAL SYSTEM ON BASE 16
Hexidecimal; Hex digit; Base 16; Sexidecimal; Sexadecimal; Hexadecimal system; Hexadecimal number; Hexadecimal numeral system; A (digit); B (digit); C (digit); Hexadecimals; Base-16; Hexadecimal notation; Hexdecimal numbering system; Hexdecimal; Base16; Senidenary; Sedenary; Hexidecimals; Hexadecimal digit; Hexadecimal format; \x; Hex system; Hex numeral system; Hexadecimal exponential notation; Hexadecimal floating-point constant; Hexadecimal floating-point literal; Hexadecimal representation; D (digit); E (digit); F (digit); 0x (prefix); Sexadecimal notation; Sexadecimal language; HEX (calculator mode); \xnn; \xNN; Hex format; Hex notation; Intel hex notation; Intel hexadecimal notation; Motorola hexadecimal notation; Motorola hex notation; Hex (base)
<spelling> Mis-spelling of "hexadecimal". (1998-03-03)

Википедия

Ancient Egyptian multiplication

In mathematics, ancient Egyptian multiplication (also known as Egyptian multiplication, Ethiopian multiplication, Russian multiplication, or peasant multiplication), one of two multiplication methods used by scribes, is a systematic method for multiplying two numbers that does not require the multiplication table, only the ability to multiply and divide by 2, and to add. It decomposes one of the multiplicands (preferably the smaller) into a set of numbers of powers of two and then creates a table of doublings of the second multiplicand by every value of the set which is summed up to give result of multiplication.

This method may be called mediation and duplation, where mediation means halving one number and duplation means doubling the other number. It is still used in some areas.

The second Egyptian multiplication and division technique was known from the hieratic Moscow and Rhind Mathematical Papyri written in the seventeenth century B.C. by the scribe Ahmes.

Although in ancient Egypt the concept of base 2 did not exist, the algorithm is essentially the same algorithm as long multiplication after the multiplier and multiplicand are converted to binary. The method as interpreted by conversion to binary is therefore still in wide use today as implemented by binary multiplier circuits in modern computer processors.