Exam 11: Partial Derivatives

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Find Find   , if   and   . , if Find   , if   and   . and Find   , if   and   . .

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If If   use the gradient vector   to find the tangent line to the level curve   at the point   . use the gradient vector If   use the gradient vector   to find the tangent line to the level curve   at the point   . to find the tangent line to the level curve If   use the gradient vector   to find the tangent line to the level curve   at the point   . at the point If   use the gradient vector   to find the tangent line to the level curve   at the point   . .

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The ellipsoid The ellipsoid   intersects the plane   in an ellipse. Find parametric equations for the tangent line to this ellipse at the point (1, 2, 2). intersects the plane The ellipsoid   intersects the plane   in an ellipse. Find parametric equations for the tangent line to this ellipse at the point (1, 2, 2). in an ellipse. Find parametric equations for the tangent line to this ellipse at the point (1, 2, 2).

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Find the differential of the function Find the differential of the function

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Find the limit Find the limit

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Find Find   for   . for Find   for   . .

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Find and classify the relative extrema and saddle points of the function Find and classify the relative extrema and saddle points of the function   for   and   . for Find and classify the relative extrema and saddle points of the function   for   and   . and Find and classify the relative extrema and saddle points of the function   for   and   . .

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Use Lagrange multipliers to find the maximum and minimum values of the function Use Lagrange multipliers to find the maximum and minimum values of the function   subject to the constraints   and   . subject to the constraints Use Lagrange multipliers to find the maximum and minimum values of the function   subject to the constraints   and   . and Use Lagrange multipliers to find the maximum and minimum values of the function   subject to the constraints   and   . .

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Find Find   for the function  for the function Find   for the function

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Describe the level survaces of the function Describe the level survaces of the function   . .

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Evaluate the limit. Evaluate the limit.

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Use Lagrange multipliers to find the maximum value of the function subject to the given constraints. Use Lagrange multipliers to find the maximum value of the function subject to the given constraints.

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Find the directional derivative of the function Find the directional derivative of the function   at the point   in the direction of the unit vector that makes the angle   with the positive x-axis. at the point Find the directional derivative of the function   at the point   in the direction of the unit vector that makes the angle   with the positive x-axis. in the direction of the unit vector that makes the angle Find the directional derivative of the function   at the point   in the direction of the unit vector that makes the angle   with the positive x-axis. with the positive x-axis.

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Describe the level surfaces of the function Describe the level surfaces of the function   . .

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Determine the largest set on which the function is continuous. Determine the largest set on which the function is continuous.

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Determine where the function Determine where the function   is continuous. is continuous.

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Use the Chain Rule to find Use the Chain Rule to find    Use the Chain Rule to find

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Find the dimensions of the rectangular box with largest volume if the total surface area is given as Find the dimensions of the rectangular box with largest volume if the total surface area is given as     . Find the dimensions of the rectangular box with largest volume if the total surface area is given as     . .

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Find the indicated partial derivative. Find the indicated partial derivative.

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Find the equation of the tangent plane to the given surface at the specified point. Find the equation of the tangent plane to the given surface at the specified point.

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