Project Euler Lab - Problem 430

#430 - Range Flips

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\(N\) disks are placed in a row, indexed \(1\) to \(N\) from left to right.
Each disk has a black side and white side. Initially all disks show their white side.

At each turn, two, not necessarily distinct, integers \(A\) and \(B\) between \(1\) and \(N\) (inclusive) are chosen uniformly at random.
All disks with an index from \(A\) to \(B\) (inclusive) are flipped.

The following example shows the case \(N = 8\). At the first turn \(A = 5\) and \(B = 2\), and at the second turn \(A = 4\) and \(B = 6\).

0430_flips.gif

Let \(E(N, M)\) be the expected number of disks that show their white side after \(M\) turns.
We can verify that \(E(3, 1) = 10/9\), \(E(3, 2) = 5/3\), \(E(10, 4) \approx 5.157\) and \(E(100, 10) \approx 51.893\).

Find \(E(10^{10}, 4000)\).
Give your answer rounded to \(2\) decimal places behind the decimal point.

This problem is taken from Project Euler, Problem 430.
Problem text © Project Euler, licensed under CC BY-NC-SA 4.0. Original: projecteuler.net/problem=430. Published Sunday, 2nd June 2013, 07:00 am. Solved by 1,014 members at time of mirroring.

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Probability Statistics. Expectation and state-based probability reasoning underpin pricing, risk, and statistical inference (Phases 7, 11, 13).

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