• Mr_Dr_Oink@lemmy.world
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    7 months ago

    How do you solve that? I saw a solution in the comments where it says to start with numbering all the people and butting 1234 and 5678 on the see saw, then it says if they weight the same then continue and that seems to work. But if they dont weigh the same it doesnt work and it doesnt say what to do in that case.

    • adrian783@lemmy.world
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      7 months ago

      you can do it like you weight 6v6 then 3v3 then for the last weighing you weight the 2 out of 3.

      or you weigh 4v4 to find out which grouping of 4 the light weight person is in, then do 2v2 and 1v1.

        • Sagifurius@lemm.ee
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          7 months ago

          That’s not the question. Either the scales balance, and the third is heavier or lighter, or the scales don’t balance and you get both answers, but the question is purposely framed this way

            • Sagifurius@lemm.ee
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              7 months ago

              The question is to figure out who is different, not how they are different. That takes one more step, half the time.

              • Yes, I’m aware. But with 12 people you can’t simply divvy the groups in threes constantly, because if you weigh and the groups are unequal, then you don’t know in which group the different person is (yet). E.g., weighing ABCD - EFGH can tell you the different person is in IJKL if the groups are even, but if they’re uneven you don’t know in which of the other two groups the different person is.

              • Mr_Dr_Oink@lemmy.world
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                7 months ago

                The question was to find who doesnt weigh the same and if its heavier or lighter. Watch the clip again.

                • Sagifurius@lemm.ee
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                  7 months ago

                  That’s easy enough to answer, but he really should work on his grammar. In that case you just do 3 groups of three, weigh two of them. If they’re even, the third group is different. Weigh 2 membres of the third group, they’ll either be even or one heavier. Weight the last member against the heavier one from step 2 to see if they’re even or not for your answer.