Originally posted by TimberWolf
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Can you "do" Maths?
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I think we're being naive, we need to work out how strong unsupported pizza is so we can take into account overhang.B00med! -
It would still be round though!Originally posted by Advocate View PostI think we're being naive, we need to work out how strong unsupported pizza is so we can take into account overhang.
Unless the plate were square.Comment
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But would a round pizza overhanging a square plate, or a square pizza overhanging a round plate provide stronger support due to the shape of the crust?Originally posted by TimberWolf View PostIt would still be round though!
Unless the plate were square.
I think I'll eat pizza all weekend!B00med!Comment
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just shows the problem of specifications eh? What chance do complex software systems have if we can't even specify a pizza/pie problem.Comment
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An oversized round pizza wouldn't sit well on a square plate because the weight wouldn't be evenly distributed and the corners would dig into it with subsequent loss of pizza. Same for square pizza on a round plate, the load would be uneven, so I think you'd get a larger circumscribed pizza circle than an all square pizza. But this is just pie in the sky theory, the experiment should be done.Originally posted by Advocate View PostBut would a round pizza overhanging a square plate, or a square pizza overhanging a round plate provide stronger support due to the shape of the crust?
I think I'll eat pizza all weekend!Comment
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But surely that would be the same effect as a large square Pizza on a smaller square plate...Originally posted by TimberWolf View PostAn oversized round pizza wouldn't sit well on a square plate because the weight wouldn't be evenly distributed and the corners would dig into it with subsequent loss of pizza. Same for square pizza on a round plate, the load would be uneven, so I think you'd get a larger circumscribed pizza circle than an all square pizza. But this is just pie in the sky theory, the experiment should be done.Comment
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Wot I said. Though I think an all-circle solution would work better. Not sure about a triangle, they're pretty strong.Originally posted by Churchill View PostBut surely that would be the same effect as a large square Pizza on a smaller square plate...Comment
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I'm thinking a square pizza on a round plate, the "almost" triangular shape created by the round edge of the plate and the two sides of crust should be pretty strong?? Whereas on a square plate the corner would dig in (as has already been pointed out).Originally posted by TimberWolf View PostWot I said. Though I think an all-circle solution would work better. Not sure about a triangle, they're pretty strong.
A CUK pizza outing as a scientific experiment?B00med!Comment
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I can see a food fight coming.....Originally posted by Advocate View PostI'm thinking a square pizza on a round plate, the "almost" triangular shape created by the round edge of the plate and the two sides of crust should be pretty strong?? Whereas on a square plate the corner would dig in (as has already been pointed out).
A CUK pizza outing as a scientific experiment?Comment
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Yeah, but you also need to take into account that those extra pizza triangles would be quite small, which as we've seen for a fully circumscribed square (where the edges of the square are tangent to the circumference and the four corners overlap it) only gives you an extra 27% pizza. Whereas for a circle, you'd only need to increase the radius of the pizza by 13% to get the same amount of extra pizza. Hence pizza droop would be less. Maybe.Originally posted by Advocate View PostI'm thinking a square pizza on a round plate, the "almost" triangular shape created by the round edge of the plate and the two sides of crust should be pretty strong?? Whereas on a square plate the corner would dig in (as has already been pointed out).
A CUK pizza outing as a scientific experiment?Comment
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