Exam 8: Calculus of Several Variables

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Find the average value of the function ​ Find the average value of the function ​   ​ Over the plane region R. ​   and R is the triangle with vertices (0, 0), (0, 1) and (1, 1). ​ ​ Over the plane region R. ​ Find the average value of the function ​   ​ Over the plane region R. ​   and R is the triangle with vertices (0, 0), (0, 1) and (1, 1). ​ and R is the triangle with vertices (0, 0), (0, 1) and (1, 1). ​

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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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Use a double integral to find the volume of the solid shown in the figure. ​ Use a double integral to find the volume of the solid shown in the figure. ​   ​

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Evaluate the first partial derivatives of the function at the given point. ​ Evaluate the first partial derivatives of the function at the given point. ​   ​

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Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If   gives rise to a (constrained) relative extremum of   subject to the constraint   , then   also gives rise to the unconstrained relative extremum of   . gives rise to a (constrained) relative extremum of Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If   gives rise to a (constrained) relative extremum of   subject to the constraint   , then   also gives rise to the unconstrained relative extremum of   . subject to the constraint Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If   gives rise to a (constrained) relative extremum of   subject to the constraint   , then   also gives rise to the unconstrained relative extremum of   . , then Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If   gives rise to a (constrained) relative extremum of   subject to the constraint   , then   also gives rise to the unconstrained relative extremum of   . also gives rise to the unconstrained relative extremum of Determine whether the statement is true or false. If it is true, explain why it is true. If it is false, give an example to show why it is false. ​ If   gives rise to a (constrained) relative extremum of   subject to the constraint   , then   also gives rise to the unconstrained relative extremum of   . .

(Essay)
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The Country Workshop's total weekly profit (in dollars) realized in manufacturing and selling its rolltop desks is given by ​ The Country Workshop's total weekly profit (in dollars) realized in manufacturing and selling its rolltop desks is given by ​   ​ Where x stands for the number of finished units and y denotes the number of unfinished units manufactured and sold per week. Currently, the weekly output is 130 finished and 105 unfinished units. Determine the approximate change in the total weekly profit if the sole proprietor of the Country Workshop decides to increase the number of finished units to 140 per week and decrease the number of unfinished units to 100 per week. ​ ​ Where x stands for the number of finished units and y denotes the number of unfinished units manufactured and sold per week. Currently, the weekly output is 130 finished and 105 unfinished units. Determine the approximate change in the total weekly profit if the sole proprietor of the Country Workshop decides to increase the number of finished units to 140 per week and decrease the number of unfinished units to 100 per week. ​

(Multiple Choice)
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The management of UNICO Department Store decides to enclose an The management of UNICO Department Store decides to enclose an   area outside their building to display potted plants. The enclosed area will be a rectangle, one side of which is provided by the external walls of the store. Two sides of the enclosure will be made of pine board, and the fourth side will be made of galvanized steel fencing material. If the pine board fencing costs $8/running foot and the steel fencing costs $4/running foot, determine the dimensions of the enclosure that will cost the least to erect. Round your answers to two decimal places. ​  area outside their building to display potted plants. The enclosed area will be a rectangle, one side of which is provided by the external walls of the store. Two sides of the enclosure will be made of pine board, and the fourth side will be made of galvanized steel fencing material. If the pine board fencing costs $8/running foot and the steel fencing costs $4/running foot, determine the dimensions of the enclosure that will cost the least to erect. Round your answers to two decimal places. ​ The management of UNICO Department Store decides to enclose an   area outside their building to display potted plants. The enclosed area will be a rectangle, one side of which is provided by the external walls of the store. Two sides of the enclosure will be made of pine board, and the fourth side will be made of galvanized steel fencing material. If the pine board fencing costs $8/running foot and the steel fencing costs $4/running foot, determine the dimensions of the enclosure that will cost the least to erect. Round your answers to two decimal places. ​

(Short Answer)
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Minimize the function ​ Minimize the function ​   ​ subject to the constraint   . ​ subject to the constraint Minimize the function ​   ​ subject to the constraint   . .

(Short Answer)
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Minimize the function ​ Minimize the function ​   ​ subject to the constraint   . ​ subject to the constraint Minimize the function ​   ​ subject to the constraint   . .

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

(Multiple Choice)
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Evaluate the double integral ​ Evaluate the double integral ​   ​ For the function   and the region R. ​   and R is the rectangle defined by   and   . ​ ​ For the function Evaluate the double integral ​   ​ For the function   and the region R. ​   and R is the rectangle defined by   and   . ​ and the region R. ​ Evaluate the double integral ​   ​ For the function   and the region R. ​   and R is the rectangle defined by   and   . ​ and R is the rectangle defined by Evaluate the double integral ​   ​ For the function   and the region R. ​   and R is the rectangle defined by   and   . ​ and Evaluate the double integral ​   ​ For the function   and the region R. ​   and R is the rectangle defined by   and   . ​ . ​

(Multiple Choice)
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Find the first partial derivatives of the function. ​ Find the first partial derivatives of the function. ​   ​

(Multiple Choice)
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Find the domain of the function. ​ Find the domain of the function. ​

(Short Answer)
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Find the average value of the given function Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ over the plane region R. ​ Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ ; R is the region bounded by the graph of Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ and Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ from Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ to Find the average value of the given function   over the plane region R. ​   ; R is the region bounded by the graph of   and   from   to   . ​ . ​

(Multiple Choice)
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Find the total differential of the function. ​ Find the total differential of the function. ​

(Short Answer)
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Sketch the level curves of the function corresponding to the given values of z. ​ Sketch the level curves of the function corresponding to the given values of z. ​   ;   ​ ; Sketch the level curves of the function corresponding to the given values of z. ​   ;   ​

(Multiple Choice)
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A building in the shape of a rectangular box is to have a volume of 6,000ft3 (see the figure). It is estimated that the annual heating and cooling costs will be $2/square foot for the top, $3/square foot for the front and back, and $2/square foot for the sides. Find the dimensions of the building that will result in a minimal annual heating and cooling cost. What is the minimal annual heating and cooling cost(C)? ​ A building in the shape of a rectangular box is to have a volume of 6,000ft<sup>3</sup> (see the figure). It is estimated that the annual heating and cooling costs will be $2/square foot for the top, $3/square foot for the front and back, and $2/square foot for the sides. Find the dimensions of the building that will result in a minimal annual heating and cooling cost. What is the minimal annual heating and cooling cost(C)? ​   ​

(Multiple Choice)
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The total daily revenue (in dollars) that Weston Publishing realizes in publishing and selling its English-language dictionaries is given by ​ The total daily revenue (in dollars) that Weston Publishing realizes in publishing and selling its English-language dictionaries is given by ​   ​ where x denotes the number of deluxe copies and y denotes the number of standard copies published and sold daily. The total daily cost of publishing these dictionaries is given by ​   ​ dollars. Determine how many deluxe copies and how many standard copies Weston should publish each day to maximize its profits. Please round the answers to the nearest integer. ​ __________ deluxe copies ​ __________ standard copies ​ What is the maximum profit realizable? Please round the answer to the nearest dollar. ​ $__________ ​ where x denotes the number of deluxe copies and y denotes the number of standard copies published and sold daily. The total daily cost of publishing these dictionaries is given by ​ The total daily revenue (in dollars) that Weston Publishing realizes in publishing and selling its English-language dictionaries is given by ​   ​ where x denotes the number of deluxe copies and y denotes the number of standard copies published and sold daily. The total daily cost of publishing these dictionaries is given by ​   ​ dollars. Determine how many deluxe copies and how many standard copies Weston should publish each day to maximize its profits. Please round the answers to the nearest integer. ​ __________ deluxe copies ​ __________ standard copies ​ What is the maximum profit realizable? Please round the answer to the nearest dollar. ​ $__________ ​ dollars. Determine how many deluxe copies and how many standard copies Weston should publish each day to maximize its profits. Please round the answers to the nearest integer. ​ __________ deluxe copies ​ __________ standard copies ​ What is the maximum profit realizable? Please round the answer to the nearest dollar. ​ $__________

(Short Answer)
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Minimize the function ​ Minimize the function ​   ​ Subject to the constraint   . ​ ​ Subject to the constraint Minimize the function ​   ​ Subject to the constraint   . ​ . ​

(Multiple Choice)
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Find the approximate change in z when the point Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​ changes from Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​ to Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​ . ​ Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​ ; from Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​ to Find the approximate change in z when the point   changes from   to   . ​   ; from   to   ​

(Multiple Choice)
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