Project Euler Lab - Problem 722

#722 - Slowly Converging Series

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For a non-negative integer \(k\), define \[ E_k(q) = \sum\limits_{n = 1}^\infty \sigma_k(n)q^n \] where \(\sigma_k(n) = \sum_{d \mid n} d^k\) is the sum of the \(k\)-th powers of the positive divisors of \(n\).

It can be shown that, for every \(k\), the series \(E_k(q)\) converges for any \(0 < q < 1\).

For example,
\(E_1(1 - \frac{1}{2^4}) = 3.872155809243\mathrm e2\)
\(E_3(1 - \frac{1}{2^8}) = 2.767385314772\mathrm e10\)
\(E_7(1 - \frac{1}{2^{15}}) = 6.725803486744\mathrm e39\)
All the above values are given in scientific notation rounded to twelve digits after the decimal point.

Find the value of \(E_{15}(1 - \frac{1}{2^{25}})\).
Give the answer in scientific notation rounded to twelve digits after the decimal point.

This problem is taken from Project Euler, Problem 722.
Problem text © Project Euler, licensed under CC BY-NC-SA 4.0. Original: projecteuler.net/problem=722. Published Sunday, 28th June 2020, 05:00 am. Solved by 625 members at time of mirroring.

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