• @[email protected]
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    13 days ago

    That’s funny and all but if it happened 1 in 12 the chances that it’s very common are orders of magnitudes higher than it being super rare DUH

    • @[email protected]
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      12 days ago

      It’s a very non-representative, very small sample. The error bars in the statistical inference to the whole population includes both “very common” and “one-in-a-million”.

      • @[email protected]
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        112 days ago

        What do the bar represent in 3d space?

        What do they represent in 3d space?!? (aggressiveduck.jpg)

        Gaussian distributions.

        • @[email protected]
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          112 days ago

          Not every error bar represents a Gaussian, if for no other reason that most error bars aren’t symmetric.

          The error bars for small sample size relative to population size are Gaussian.

          Error due to a non-representative sample can have a variety of shapes, but their distribution might also be unknown. We do frequently, almost implicitly, assume unknown distributions to be Gaussian, but we should recognize that’s not necessarily a true fact about the universe.

        • @[email protected]
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          1013 days ago

          Assuming a representative sample

          That’s the thing I doubt a team of highly skilled astronauts will be representative of the human population

          • @[email protected]
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            313 days ago

            I think if anything they would be biased towards having fewer allergies than normal people. Which suggests that 0.21% (1 in 500) is a reasonable bound for how rare a moon dust allergy could be.

            • @[email protected]
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              413 days ago

              Never really verified it but I think allergies are more common in developed countries. If that’s true, that the data is skewed in the opposite direction