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    marlin (marlin@poa.st)'s status on Sunday, 01-Dec-2024 15:23:17 JSTmarlinmarlin
    in reply to
    • ÜV :ov: :sonnenrad:
    • Jeff "never puts away anything, especially oven mitts" Cliff, Bringer of Nightmares 🏴‍☠️🦝🐙 🇱🇧🧯 🇨🇦🐧
    @jeffcliff @GoodBoyUV The TLDR is the allies estimated the monthly German tank production numbers by adding the average gap of the observed serial numbers to the the maximum observed serial number.

    en.wikipedia.org/wiki/German_tank_problem
    In conversationabout 6 months ago from poa.stpermalink

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      German tank problem
      In the statistical theory of estimation, the German tank problem consists of estimating the maximum of a discrete uniform distribution from sampling without replacement. In simple terms, suppose there exists an unknown number of items which are sequentially numbered from 1 to N. A random sample of these items is taken and their sequence numbers observed; the problem is to estimate N from these observed numbers. The problem can be approached using either frequentist inference or Bayesian inference, leading to different results. Estimating the population maximum based on a single sample yields divergent results, whereas estimation based on multiple samples is a practical estimation question whose answer is simple (especially in the frequentist setting) but not obvious (especially in the Bayesian setting). The problem is named after its historical application by Allied forces in World War II to the estimation of the monthly rate of German tank production from very limited data. This exploited the manufacturing practice of assigning and attaching ascending sequences of serial numbers to tank components (chassis...
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