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  2. Chinese numerals - Wikipedia

    en.wikipedia.org/wiki/Chinese_numerals

    Alexander Wylie, Christian missionary to China, in 1853 already refuted the notion that "the Chinese numbers were written in words at length", and stated that in ancient China, calculation was carried out by means of counting rods, and "the written character is evidently a rude presentation of these". After being introduced to the rod numerals ...

  3. Stroke count method - Wikipedia

    en.wikipedia.org/wiki/Stroke_count_method

    The Stroke Count Method (Chinese: 笔画; pinyin: bǐ huà), Wubihua method, Stroke input method or Bihua IME (Chinese: 五笔画输入法; pinyin: wǔ bǐhuà shūrù fǎ or Chinese: 筆劃輸入法; pinyin: Bǐhuà shūrù fǎ) (lit. 5-stroke input method) is a relatively simple Chinese input method for

  4. Chinese Character Code for Information Interchange - Wikipedia

    en.wikipedia.org/wiki/Chinese_Character_Code_for...

    Layer 2 contains simplified Chinese characters, with their row and cell numbers being the same as their traditional Chinese equivalents in layer 1. Layers 3 through 12 contain further variant forms, at row and cell numbers homologous to the first two layers. [13] The last four layers are used for other purposes.

  5. Chinese character orders - Wikipedia

    en.wikipedia.org/wiki/Chinese_character_orders

    In this order, Chinese characters are sorted by their stroke count ascendingly. A character with less strokes is put before those of more strokes. [6] For example, the different characters in "漢字筆劃, 汉字笔画 " (Chinese character strokes) are sorted into "汉(5)字(6)画(8)笔(10)[筆(12)畫(12)]漢(14)", where stroke counts are put in brackets.

  6. Index of coincidence - Wikipedia

    en.wikipedia.org/wiki/Index_of_coincidence

    This count, either as a ratio of the total or normalized by dividing by the expected count for a random source model, is known as the index of coincidence, or IC or IOC [2] or IoC [3] for short. Because letters in a natural language are not distributed evenly , the IC is higher for such texts than it would be for uniformly random text strings.

  7. GB 18030 - Wikipedia

    en.wikipedia.org/wiki/GB_18030

    The encoding scheme stays the same in the new version, and the only difference in GB-to-Unicode mapping is that GB 18030-2000 mapped the character A8 BC (ḿ) to a private use code point U+E7C7, and character 81 35 F4 37 (without specifying any glyph) to U+1E3F (ḿ), whereas GB 18030-2005 swaps these two mapping assignments.

  8. Duplicate characters in Unicode - Wikipedia

    en.wikipedia.org/wiki/Duplicate_characters_in...

    Unicode aims at encoding graphemes, not individual "meanings" ("semantics") of graphemes, and not glyphs.It is a matter of case-by-case judgement whether such characters should receive separate encoding when used in technical contexts, e.g. Greek letters used as mathematical symbols: thus, the choice to have a "micro-sign" µ separate from Greek μ, but not a "Mega sign" separate from Latin M ...

  9. Chinese characters - Wikipedia

    en.wikipedia.org/wiki/Chinese_characters

    Chinese characters "Chinese character" written in traditional (left) and simplified (right) forms Script type Logographic Time period c. 13th century BCE – present Direction Left-to-right Top-to-bottom, columns right-to-left Languages Chinese Japanese Korean Vietnamese Zhuang (among others) Related scripts Parent systems (Proto-writing) Chinese characters Child systems Bopomofo Jurchen ...