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  2. File:Pascal's Triangle rows 0-16.svg - Wikipedia

    en.wikipedia.org/wiki/File:Pascal's_Triangle_rows...

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  3. File:Pascal's Triangle rows 0-16; details.pdf - Wikipedia

    en.wikipedia.org/wiki/File:Pascal's_Triangle_rows...

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  4. Pascal's triangle - Wikipedia

    en.wikipedia.org/wiki/Pascal's_triangle

    The rows of Pascal's triangle are conventionally enumerated starting with row = at the top (the 0th row). The entries in each row are numbered from the left beginning with = and are usually staggered relative to the numbers in the adjacent rows. The triangle may be constructed in the following manner: In row 0 (the topmost row), there is a ...

  5. Wikipedia:Reference desk/Archives/Mathematics/2023 December ...

    en.wikipedia.org/wiki/Wikipedia:Reference_desk/...

    If p is a prime number and n is the product of a power of p and an integer less than p, the nth row of Pascal's triangle has no multiples of p. The 15th row is: 1,14,91,364,1001,2002,3003,3432,3003,2002,1001,364,91,14,1

  6. Wikipedia : Featured picture candidates/Pascal's triangle

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  7. Pascal's pyramid - Wikipedia

    en.wikipedia.org/wiki/Pascal's_pyramid

    Pascal's pyramid's first five layers. Each face (orange grid) is Pascal's triangle. Arrows show derivation of two example terms. In mathematics, Pascal's pyramid is a three-dimensional arrangement of the trinomial numbers, which are the coefficients of the trinomial expansion and the trinomial distribution. [1]

  8. Gould's sequence - Wikipedia

    en.wikipedia.org/wiki/Gould's_sequence

    Pascal's triangle, rows 0 through 7. The number of odd integers in row i is the i-th number in Gould's sequence. The self-similar sawtooth shape of Gould's sequence. Gould's sequence is an integer sequence named after Henry W. Gould that counts how many odd numbers are in each row of Pascal's triangle. It consists only of powers of two, and ...

  9. Central binomial coefficient - Wikipedia

    en.wikipedia.org/wiki/Central_binomial_coefficient

    The powers of two that divide the central binomial coefficients are given by Gould's sequence, whose nth element is the number of odd integers in row n of Pascal's triangle. Squaring the generating function gives 1 1 − 4 x = ( ∑ n = 0 ∞ ( 2 n n ) x n ) ( ∑ n = 0 ∞ ( 2 n n ) x n ) . {\displaystyle {\frac {1}{1-4x}}=\left(\sum _{n=0 ...