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Water bell; got answer but shape's weird? |
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| Aug3-12, 12:18 PM | #1 |
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Water bell; got answer but shape's weird?
1. The problem statement, all variables and given/known data
This question is about finding the smallest bowl to contain all the water being spurt out of a water spray head. They used the lagrange multipliers to solve it which I understand, but the the envelope doesn't look like a parabola to me?? Isn't the envelope supposed to be a curve that is parallel to a certain point on every member of a family curve? 3. The attempt at a solution I dont even see how it's possible to draw a curve that's tangential to all water-jet curves.. |
| Aug3-12, 02:39 PM | #2 |
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They did not use Lagrange multipliers. An envelope of a family of curves F(x, y, p) = 0, where p is parameter, is obtained by [itex]\frac {\partial F} {\partial p} = 0[/itex], which is what they do.
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| Aug3-12, 02:45 PM | #3 |
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Your picture is very strange. You seem to have water coming from a head that is convex downward and raised above the surface of the water. The situation described in the post has a hemispherical (convex upward) head at the level of the surface of the water.
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| Aug4-12, 03:34 AM | #4 |
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Water bell; got answer but shape's weird?I finally see it, thank you! I seem to lack the imagination. |
| Aug4-12, 12:01 PM | #5 |
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Recognitions:
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RGV |
| Aug4-12, 02:49 PM | #6 |
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Think of it not as a "tap" but as a fountain in an outdoor pool.
(But they are making some very peculiar bathroom fixtures now. I recently had my bathroom remodeled. I looked at some bathroom sinks that are acryic hemispheres sitting on top the counter. I stared at them for a while, shook my head, and walked on.) |
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