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  2. Uniform Commercial Code adoption - Wikipedia

    en.wikipedia.org/wiki/Uniform_Commercial_Code...

    The following table identifies which articles in the UCC each U.S. jurisdiction has currently adopted. However, it does not make any distinctions for the various official revisions to the UCC, the selection of official alternative language offered in the UCC, or unofficial changes made to the UCC by some jurisdictions.

  3. decimal32 floating-point format - Wikipedia

    en.wikipedia.org/wiki/Decimal32_floating-point...

    (The 8 × 3 = 24 non-standard encodings fill in the gap from 10 3 = 1000 and 2 10 - 1 = 1023. Benefit of this encoding is access to individual digits by de- / encoding only 10 bits, disadvantage is that some simple functions like sort and compare, very frequently used in coding, do not work on the bit pattern but require decoding to decimal ...

  4. Mirror image rule - Wikipedia

    en.wikipedia.org/wiki/Mirror_image_rule

    However, the Uniform Commercial Code ("UCC") dispenses with it in § 2-207 (but it can also be argued that § 2-207(1) enforces the mirror image rule). [6] Therefore, its applicability depends upon what law governs. Most states have adopted the UCC, which governs transactions in goods.

  5. Decimal - Wikipedia

    en.wikipedia.org/wiki/Decimal

    If all d n for n > N equal to 9 and [x] n = [x] 0.d 1 d 2...d n, the limit of the sequence ([]) = is the decimal fraction obtained by replacing the last digit that is not a 9, i.e.: d N, by d N + 1, and replacing all subsequent 9s by 0s (see 0.999...). Any such decimal fraction, i.e.: d n = 0 for n > N, may be converted to its equivalent ...

  6. Decimal data type - Wikipedia

    en.wikipedia.org/wiki/Decimal_data_type

    Most decimal fractions (or most fractions in general) cannot be represented exactly as a fraction with a denominator that is a power of two. For example, the simple decimal fraction 0.3 (3 ⁄ 10) might be represented as 5404319552844595 ⁄ 18014398509481984 (0.299999999999999988897769…). This inexactness causes many problems that are ...

  7. Decimal representation - Wikipedia

    en.wikipedia.org/wiki/Decimal_representation

    1 ⁄ 3 = 0.33333... 1 ⁄ 7 = 0.142857142857... 1318 ⁄ 185 = 7.1243243243... Every time this happens the number is still a rational number (i.e. can alternatively be represented as a ratio of an integer and a positive integer). Also the converse is true: The decimal expansion of a rational number is either finite, or endlessly repeating.

  8. List of numbers - Wikipedia, the free encyclopedia

    en.wikipedia.org/wiki/List_of_numbers

    A list of articles about numbers (not about numerals). Topics include powers of ten, notable integers, prime and cardinal numbers, and the myriad system.

  9. Repeating decimal - Wikipedia

    en.wikipedia.org/wiki/Repeating_decimal

    Every terminating decimal representation can be written as a decimal fraction, a fraction whose denominator is a power of 10 (e.g. 1.585 = ⁠ 1585 / 1000 ⁠); it may also be written as a ratio of the form ⁠ k / 2 n ·5 m ⁠ (e.g. 1.585 = ⁠ 317 / 2 3 ·5 2 ⁠).