arXiv · 2502.16768
Friedman vs P\'olya
Abstract
Suppose an urn contains initially any number of balls of two colours. One ball is drawn randomly and then put back with $\alpha$ balls of the same colour and $\beta$ balls of the opposite colour. Both cases, $\beta=0$ and $\beta>0$ are well known and correspond respectively to P\'olya's and Friedman's replacement schemes. We consider a mixture of both of these: with probability $p\in(0,1]$ balls are replaced according to Friedman's recipe and with probability $1-p$ according to the one by P\'olya. Independently of the initial urn composition and independently of $\alpha$, $\beta$, and the value of $p>0$, we show that the proportion of balls of one colour converges almost surely to $\frac12$. The latter is the limit behaviour obtained by using Friedman's scheme alone, i.e. when $p=1$. Our result follows by adapting an argument due to D. S. Ornstein.
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Raphael Alves, Rafael A. Rosales. 2025-02-24. Friedman vs P\'olya. https://doi.org/10.1016/j.spl.2025.110635
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