Calculate curl(F) and then apply Stokes' Theorem to compute the flux of curl(F) through the surface in the figure using a line integral. (0,a,2a) 2a- *a, 0,2a) I+y=a The surface is a wedge-shaped box (bottom included, top excluded) with an outward-pointing normal. Assume that parameter a = 4. F= (x + y. - 64. x F+ 1) (Express numbers in exact form. Use symbolic notation and fractions where needed.) curl(F) flux of curl(F) :

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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Calculate curl(F) and then apply Stokes' Theorem to compute the flux of curl(F) through the surface in the figure using a
line integral.
„(0,a,2a)
2a
*(a, 0,2a)
I+y=a
The surface is a wedge-shaped box (bottom included, top excluded) with an outward-pointing normal. Assume that
parameter a = 4.
F= (*+ y. - 64, xVF +1)
(Express numbers in exact form. Use symbolic notation and fractions where needed.)
curl(F) =
flux of curl(F)
Transcribed Image Text:Calculate curl(F) and then apply Stokes' Theorem to compute the flux of curl(F) through the surface in the figure using a line integral. „(0,a,2a) 2a *(a, 0,2a) I+y=a The surface is a wedge-shaped box (bottom included, top excluded) with an outward-pointing normal. Assume that parameter a = 4. F= (*+ y. - 64, xVF +1) (Express numbers in exact form. Use symbolic notation and fractions where needed.) curl(F) = flux of curl(F)
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