Exam 8: Calculus of Several Variables

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Evaluate the double integral Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is bounded by   and y = x. for the given function f(x, y) and the region R. Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is bounded by   and y = x. ; R is bounded by Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is bounded by   and y = x. and y = x.

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Evaluate the double integral Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is the rectangle defined by  for the given function f(x, y) and the region R. Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is the rectangle defined by  ; R is the rectangle defined by Evaluate the double integral   for the given function f(x, y) and the region R.   ; R is the rectangle defined by

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Maximize the function Maximize the function   subject to the constraints   . subject to the constraints Maximize the function   subject to the constraints   . .

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The annual sales (in billions of dollars) of global positioning systems (GPS) equipment from 2000 through 2006 follow (sales in 2004 through 2006 are projections). Here, The annual sales (in billions of dollars) of global positioning systems (GPS) equipment from 2000 through 2006 follow (sales in 2004 through 2006 are projections). Here,   corresponds to 2000.   Find an equation of the least-squares line for these data. Please round coefficients to the nearest hundredth if necessary. Use the equation found to estimate the annual sales of GPS equipment for 2005. corresponds to 2000. The annual sales (in billions of dollars) of global positioning systems (GPS) equipment from 2000 through 2006 follow (sales in 2004 through 2006 are projections). Here,   corresponds to 2000.   Find an equation of the least-squares line for these data. Please round coefficients to the nearest hundredth if necessary. Use the equation found to estimate the annual sales of GPS equipment for 2005. Find an equation of the least-squares line for these data. Please round coefficients to the nearest hundredth if necessary. Use the equation found to estimate the annual sales of GPS equipment for 2005.

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Find the critical point(s) of the function. Then use the second derivative test to classify the nature of each point, if possible. Finally, determine the relative extrema of the function. Find the critical point(s) of the function. Then use the second derivative test to classify the nature of each point, if possible. Finally, determine the relative extrema of the function.

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Maximize the function Maximize the function   subject to the constraint   . subject to the constraint Maximize the function   subject to the constraint   . .

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