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Title: Semi-circle in a Square Post by THUDandBLUNDER on Dec 15th, 2006, 6:28pm What is the largest semi-circle you can fit inside a unit square? |
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Title: Re: Semi-circle in a Square Post by flamingdragon on Dec 15th, 2006, 10:07pm A semi-circle the size of a unit square. ::) |
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Title: Re: Semi-circle in a Square Post by Barukh on Dec 16th, 2006, 5:14am [hide]0.58[/hide]? |
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Title: Re: Semi-circle in a Square Post by Whiskey Tango Foxtrot on Dec 16th, 2006, 10:14am Are you talking about 1.414/2 Barukh? |
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Title: Re: Semi-circle in a Square Post by Grimbal on Dec 16th, 2006, 10:36am [hide]looks more like 2-sqrt(2), as a radius[/hide] |
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Title: Re: Semi-circle in a Square Post by Whiskey Tango Foxtrot on Dec 16th, 2006, 10:54am Of course. Thanks G-man. |
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Title: Re: Semi-circle in a Square Post by flamingdragon on Dec 16th, 2006, 10:58am I take it then that I was wrong? |
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Title: Re: Semi-circle in a Square Post by Ken_Wiley on Dec 16th, 2006, 11:32am Does seem like would be bigger than just half of a circle in it. |
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Title: Re: Semi-circle in a Square Post by Eigenray on Dec 16th, 2006, 1:47pm on 12/16/06 at 10:36:56, Grimbal wrote:
Ahhh, I had gotten [hide].539[/hide], and thought, "well, that's less than Barukh's answer, so I must be missing something..." |
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Title: Re: Semi-circle in a Square Post by Barukh on Dec 17th, 2006, 12:39am A follow up: what is the largest circular sector with central angle http://www.ocf.berkeley.edu/~wwu/YaBBImages/symbols/alpha.gif that can be fit in a unit square? |
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Title: Re: Semi-circle in a Square Post by Grimbal on Dec 17th, 2006, 6:21am Is alpha given? [hide] Then I'd say you have to consider 3 cases [/hide] |
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Title: Re: Semi-circle in a Square Post by Barukh on Dec 18th, 2006, 11:27pm on 12/17/06 at 06:21:55, Grimbal wrote:
Yes, of course. Quote:
Why [hide]3[/hide]? |
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Title: Re: Semi-circle in a Square Post by Grimbal on Dec 19th, 2006, 1:32am [hide]There would be one formula for alpha<1/2·pi, one formula from 1/2·pi/2 to 3/2·pi and a third for alfa>3/2·pi I am just a little lazy to figure out the formulas. I think the last one is the constant 1/2 if the radius is what is asked.[/hide] |
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