University Calculus, Early Transcendentals, Single Variable Plus MyLab Math -- Access Card Package (3rd Edition)
University Calculus, Early Transcendentals, Single Variable Plus MyLab Math -- Access Card Package (3rd Edition)
3rd Edition
ISBN: 9780321999597
Author: Joel R. Hass, Maurice D. Weir
Publisher: PEARSON
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(6) (8 points) Change the order of integration and evaluate (z +4ry)drdy . So S√ ² 0
(10) (16 points) Let R>0. Consider the truncated sphere S given as x² + y² + (z = √15R)² = R², z ≥0. where F(x, y, z) = −yi + xj . (a) (8 points) Consider the vector field V (x, y, z) = (▼ × F)(x, y, z) Think of S as a hot-air balloon where the vector field V is the velocity vector field measuring the hot gasses escaping through the porous surface S. The flux of V across S gives the volume flow rate of the gasses through S. Calculate this flux. Hint: Parametrize the boundary OS. Then use Stokes' Theorem. (b) (8 points) Calculate the surface area of the balloon. To calculate the surface area, do the following: Translate the balloon surface S by the vector (-15)k. The translated surface, call it S+ is part of the sphere x² + y²+z² = R². Why do S and S+ have the same area? ⚫ Calculate the area of S+. What is the natural spherical parametrization of S+?
(1) (8 points) Let c(t) = (et, et sint, et cost). Reparametrize c as a unit speed curve starting from the point (1,0,1).
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