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  2. Module:Roman-cd - Wikipedia

    en.wikipedia.org/wiki/Module:Roman-cd

    This module converts Arabic numerals into Roman numerals. It currently works for any non-negative integer below 5 billions (up to 4 999 999 999). Zero is represented as "N" (from Classical Latin adverbs "nec" or "non"), like in standard CLDR data.

  3. Roman numerals - Wikipedia

    en.wikipedia.org/wiki/Roman_numerals

    The Roman numerals, in particular, are directly derived from the Etruscan number symbols: 𐌠 , 𐌡 , 𐌢 , 𐌣 , and 𐌟 for 1, 5, 10, 50, and 100 (they had more symbols for larger numbers, but it is unknown which symbol represents which number). As in the basic Roman system, the Etruscans wrote the symbols that added to the desired ...

  4. Template:Roman - Wikipedia

    en.wikipedia.org/wiki/Template:Roman

    Number: 1: The number to be converted to Roman numerals. If the parameter passed cannot be interpreted as a numerical value, no output is generated. Example 69105: Number: optional: Message: 2: Message to display for numbers that are too big to be displayed in Roman numerals. (The largest number supported is 4999999.) Default N/A Example Too ...

  5. Numeral system - Wikipedia

    en.wikipedia.org/wiki/Numeral_system

    For example, "11" represents the number eleven in the decimal or base-10 numeral system (today, the most common system globally), the number three in the binary or base-2 numeral system (used in modern computers), and the number two in the unary numeral system (used in tallying scores). The number the numeral represents is called its value.

  6. List of numeral systems - Wikipedia

    en.wikipedia.org/wiki/List_of_numeral_systems

    This is the minimum number of characters needed to encode a 32 bit number into 5 printable characters in a process similar to MIME-64 encoding, since 85 5 is only slightly bigger than 2 32. Such method is 6.7% more efficient than MIME-64 which encodes a 24 bit number into 4 printable characters. 89

  7. Module:Roman - Wikipedia

    en.wikipedia.org/wiki/Module:Roman

    Find the Roman numerals for the integer part of the number. If the number is not an integer: Add half of the smallest unit (1/1728) to simulate rounding instead of truncation. Ensure this new result is between 1/1728 and 1727/1728. (actually 1.1/1728 and 1727.1/1728 due to floating point rounding issues)

  8. Positional notation - Wikipedia

    en.wikipedia.org/wiki/Positional_notation

    A non-zero numeral with more than one digit position will mean a different number in a different number base, but in general, the digits will mean the same. [14] For example, the base-8 numeral 23 8 contains two digits, "2" and "3", and with a base number (subscripted) "8".

  9. List of types of numbers - Wikipedia

    en.wikipedia.org/wiki/List_of_types_of_numbers

    Roman numerals: The numeral system of ancient Rome, still occasionally used today, mostly in situations that do not require arithmetic operations. Tally marks: Usually used for counting things that increase by small amounts and do not change very quickly. Fractions: A representation of a non-integer as a ratio of two integers.