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arxiv: 1808.07994 · v1 · pith:BY64F6LUnew · submitted 2018-08-24 · 🧮 math.NT

Choosing 1 of N with and without lucky numbers

classification 🧮 math.NT
keywords numberscoinluckyprobabilitytossesalthoughbit-efficientbits
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How many fair coin tosses to choose 1 of $n$ options with uniform probability? Although a probability problem, the solution is essentially number-theoretic, with special roles for Mersenne numbers, Fermat numbers, and the haupt exponent. We propose a bit-efficient scheme, prove optimality, derive the expected number of coin tosses $e[n]$, characterize its fractal structure, and develop sharp upper and lower bounds, both discrete and continuous. A minor but noteworthy corollary, with real-world examples, is that any lottery or simulation with finite budget of random bits will have a predictable pattern of lucky and unlucky numbers.

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