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  2. Positional notation - Wikipedia

    en.wikipedia.org/wiki/Positional_notation

    0xA10B/10 = 0x101A R: 7 (ones place) 0x101A/10 = 0x19C R: 2 (tens place) 0x19C/10 = 0x29 R: 2 (hundreds place) 0x29/10 = 0x4 R: 1 ... 4 When converting to a larger base (such as from binary to decimal), the remainder represents as a single digit, using digits from . For example: converting 0b11111001 (binary) to 249 (decimal):

  3. Hundredth - Wikipedia

    en.wikipedia.org/wiki/Hundredth

    A hundredth is the reciprocal of 100. A hundredth is written as a decimal fraction as 0.01, and as a vulgar fraction as 1/100. [2] “Hundredth” is also the ordinal number that follows “ninety-ninth” and precedes “hundred and first.” It is written as 100th.

  4. Numerical digit - Wikipedia

    en.wikipedia.org/wiki/Numerical_digit

    The decimal numeral system uses a decimal separator, commonly a period in English, or a comma in other European languages, [2] to denote the "ones place" or "units place", [3] [4] [5] which has a place value one. Each successive place to the left of this has a place value equal to the place value of the previous digit times the base. Similarly ...

  5. Number - Wikipedia

    en.wikipedia.org/wiki/Number

    Each digit to the right of the decimal point has a place value one-tenth of the place value of the digit to its left. For example, 123.456 represents ⁠ 123456 / 1000 ⁠ , or, in words, one hundred, two tens, three ones, four tenths, five hundredths, and six thousandths.

  6. Dzongkha numerals - Wikipedia

    en.wikipedia.org/wiki/Dzongkha_numerals

    The decimal system is the same up to 19. Then decades, however, are formed as unit–ten, as in Chinese, and the hundreds similarly. 20 is reported to be ɲiɕu, the same as vigesimal numeral 400; this may be lexical interference for the expected *ɲi-cu. (In any case, there is no ambiguity, because as 400 it is obligatorily ɲiɕu ciː 'one 400'.)

  7. Roman numerals - Wikipedia

    en.wikipedia.org/wiki/Roman_numerals

    The Romans used a duodecimal rather than a decimal system for fractions, as the divisibility of twelve (12 = 2 2 × 3) makes it easier to handle the common fractions of 1 ⁄ 3 and 1 ⁄ 4 than does a system based on ten (10 = 2 × 5).