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MA 242.003 Day 61 – April 12, 2013 Pages 777-778: Tangent planes to parametric surfaces – an example Section 12.6: Surface area of parametric surfaces – Review and examples Section 13.6: Surface integrals
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Let S be the parametric surface traced out by the vector- valued function as u and v vary over the domain D. Pages 777-778: Tangent planes to parametric surfaces
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x
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x
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(continuation of example)
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Section 12.6: Surface area of parametric surfaces
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Goal: To compute the surface area of a parametric surface given by with u and v in domain D in the uv-plane. 1. Partition the region D, which also partitions the surface S
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So we approximate by the Parallelogram determined by and
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So we approximate by the Parallelogram determined by and
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Now find the surface area.
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Another method:
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(continuation of example)
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Section 13.6: Surface Integrals
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Section 12.6: Surface area of parametric surfaces Goal: To define the surface integral of a function f(x,y,z) over a parametric surface given by with u and v in domain D in the uv-plane.
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Section 12.6: Surface area of parametric surfaces Goal: To define the surface integral of a function f(x,y,z) over a parametric surface given by with u and v in domain D in the uv-plane. 1. Partition the region D, which also partitions the surface S
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Section 12.6: Surface area of parametric surfaces
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How do we evaluate such an integral?
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Recall our approximation of surface area:
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The surface integral over S is the “double integral of the function over the domain D of the parameters u and v”.
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This formula should be compared to the line integral formula
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Notice the special case: The surface integral of f(x,y,z) = 1 over S yields the “surface area of S”
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(continuation of example)
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