cp's OEIS Frontend

This is a front-end for the Online Encyclopedia of Integer Sequences, made by Christian Perfect. The idea is to provide OEIS entries in non-ancient HTML, and then to think about how they're presented visually. The source code is on GitHub.

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A344108 Expansion of Product_{k>=1} 1 / (1 - x^k)^binomial(2*k,k).

Original entry on oeis.org

1, 2, 9, 36, 154, 644, 2744, 11608, 49267, 208610, 882963, 3731640, 15754327, 66426946, 279766063, 1176920484, 4945739292, 20761707824, 87069433162, 364802647912, 1527072152856, 6386873581244, 26690795165394, 111453873957936, 465055114353616, 1939114409985956
Offset: 0

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Author

Ilya Gutkovskiy, May 09 2021

Keywords

Comments

Euler transform of A000984.

Crossrefs

Programs

  • Maple
    a:= proc(n) option remember; `if`(n=0, 1, add(a(n-j)*add(d*
          binomial(2*d, d), d=numtheory[divisors](j)), j=1..n)/n)
        end:
    seq(a(n), n=0..25);  # Alois P. Heinz, Feb 13 2023
  • Mathematica
    nmax = 25; CoefficientList[Series[Product[1/(1 - x^k)^Binomial[2 k, k], {k, 1, nmax}], {x, 0, nmax}], x]
    a[n_] := a[n] = If[n == 0, 1, (1/n) Sum[Sum[d Binomial[2 d, d], {d, Divisors[k]}] a[n - k], {k, 1, n}]]; Table[a[n], {n, 0, 25}]
    nmax = 25; CoefficientList[Series[Exp[Sum[(1/Sqrt[1 - 4*x^j] - 1)/j, {j, 1, nmax}]], {x, 0, nmax}], x] (* Vaclav Kotesovec, May 10 2021 *)

Formula

a(0) = 1; a(n) = (1/n) * Sum_{k=1..n} ( Sum_{d|k} A005430(d) ) * a(n-k).
a(n) ~ 2^(2*n - 1/3) * exp(3*n^(1/3)/2^(2/3) - 1 + c) / (sqrt(3*Pi) * n^(5/6)), where c = Sum_{k>=2} (1/sqrt(1 - 4^(1-k)) - 1)/k = 0.0907540019413286886324751305813463657179452545... - Vaclav Kotesovec, May 10 2021

A383073 a(n) = [x^n] Product_{k=1..n} (1 + x^k)^binomial(n,k).

Original entry on oeis.org

1, 1, 2, 11, 69, 552, 5133, 53804, 626440, 7979043, 110074741, 1631532542, 25813521836, 433619035254, 7698641650937, 143908414079881, 2822753485000135, 57930283521990154, 1240695879627856673, 27666701629865989070, 641049490249340264699
Offset: 0

Views

Author

Vaclav Kotesovec, Apr 15 2025

Keywords

Crossrefs

Programs

  • Mathematica
    Table[SeriesCoefficient[Product[(1 + x^k)^Binomial[n, k], {k, 1, n}], {x, 0, n}], {n, 0, 20}]
Showing 1-2 of 2 results.