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  • {{BoxLine|<apll>R</apll> is a scalar or vector of Real or Complex numbers.}} {{BoxEnd|<apll>Z</apll> is a vector of length <apll>2*⌈2⍟≢R</apll> of Complex numbers.}}
    2 KB (332 words) - 21:28, 5 February 2019
  • ...coordinate on the right consisting of the coefficients of the Hypercomplex numbers in <apll>R</apll>, and whose shape is <apll>(⍴R),NC</apll>. That is, <ap 1 ¯1 0<hc>i</hc>1 0<hc>i</hc>¯1 ⍝ The four units for Complex numbers
    3 KB (478 words) - 14:49, 9 November 2023
  • <td valign="baseline"><b>Complex Angle Point Notation</b>:</td> ...that is, infinite precision integers are actually represented as rational numbers with a denominator of <apll>1</apll>. However, this suffix cannot be used a
    18 KB (2,863 words) - 15:52, 10 September 2022
  • ...are generally listed in order of complexity, least complex = topmost, most complex = bottommost.) ...de just above, you will see that yes Execute will convert char digits into numbers with or without the Each(dieresis) Operator.
    4 KB (562 words) - 21:17, 23 April 2015
  • ...Integers have <apll>63</apll> bits of precision and 64-bit Floating Point numbers have only <apll>53</apll>.<br /> The industry standard definition of the Floor function on Complex numbers is McDonnell's. However, McDonnell's Floor function isn't defined on Quate
    5 KB (649 words) - 20:40, 12 January 2023
  • ...ing Real or Hypercomplex array of shape <apll>(X≠⍳⍴⍴R)/⍴R</apll> using the numbers along the <apll>X</apll>-axis of <apll>R</apll> as the coefficients of the <li><apll>(⍴R)[X]</apll> is <apll>1</apll>, the result is an array of Real numbers,</li>
    5 KB (845 words) - 21:14, 15 April 2018
  • ...er the number of bits per element (where appropriate), or for Hypercomplex numbers, the internal representation of the coefficients:</p> *<apll>1216</apll>: 64-bit Integer Complex (two-dimensional) number
    13 KB (1,798 words) - 20:07, 18 February 2024
  • ...ormalized), or <apll>2<_ah/>3</apll> (Angle in Half Unit Normalized) for a Complex number, <apll>1<_i/>2<_j/>3<_k/>4</apll> for a Quaternion number, and <apll * [[Rational and VFP Numbers|Rational Numbers]]: <apll>1<_r/>3</apll> and <apll>12345<_x/></apll>
    9 KB (1,317 words) - 21:25, 6 February 2024
  • ...hese variants are non-trivial only when multiplying <b>Non-commutative</b> numbers.<br />The following definitions on scalar <apll>L</apll> and <apll>R</apll> <th>Real/Complex &mdash; Commutative</th>
    21 KB (3,255 words) - 00:45, 19 February 2024
  • ARRAY_HC2I , // 0A: Complex INT coefficients ===Numbers===
    13 KB (1,507 words) - 22:55, 13 October 2019
  • ...loating point values instead of a single representative. This allows such numbers to reflect their inexactness explicitly.
    29 KB (4,040 words) - 08:03, 19 August 2022
  • ...and data only.e,g, TKT_LEFTPAREN and '('. Some frequently used tokens are complex in that their data points to other data. Token types are also associated wi ...g/faq/utf_bom.html especially UTF16]; algorithmic mapping for Unicode code numbers (except surrogate code points) to unique byte sequencing (esp. 16-bit = 2-b
    5 KB (819 words) - 21:17, 13 October 2019
  • ...ing like WinMerge-k.m.n-Setup.exe where k, m and n are version/sub-version numbers.) ...de. The second ('''msieve''') will be utilized for code used to '''factor numbers''', and the third ('''branches''') will contain individual developer branch
    48 KB (7,287 words) - 21:09, 13 October 2019