Deck 11: Extension F: Partial Derivatives

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Question
Find the equation of the normal line to the given surface at the specified point. <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>

A) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
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Question
Suppose that over a certain region of space the electrical potential V is given by <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   <div style=padding-top: 35px> Find the rate of change of the potential at <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   <div style=padding-top: 35px> in the direction of the vector <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   <div style=padding-top: 35px>

A) 20
B) 44
C) <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   <div style=padding-top: 35px>
D) -2.91
E) <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   <div style=padding-top: 35px>
Question
Find equations for the tangent plane and the normal line to the surface with equation <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px> at the point <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px>

A) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px> , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px>
B) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px> , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px>
C) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px> , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px>
D) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px> , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   <div style=padding-top: 35px>
Question
If <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> use the gradient vector <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to find the tangent line to the level curve <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> at the point <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>

A) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the directional derivative of the function <strong>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.</strong> A) 1 B)   C)   D) 11 <div style=padding-top: 35px> at the point <strong>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.</strong> A) 1 B)   C)   D) 11 <div style=padding-top: 35px> in the direction of the unit vector that makes the angle <strong>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.</strong> A) 1 B)   C)   D) 11 <div style=padding-top: 35px> with the positive x-axis.

A) 1
B) <strong>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.</strong> A) 1 B)   C)   D) 11 <div style=padding-top: 35px>
C) <strong>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.</strong> A) 1 B)   C)   D) 11 <div style=padding-top: 35px>
D) 11
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Deck 11: Extension F: Partial Derivatives
1
Find the equation of the normal line to the given surface at the specified point. <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)

A) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)
B) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)
C) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)
D) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)
E) <strong>Find the equation of the normal line to the given surface at the specified point.  </strong> A)   B)   C)   D)   E)
2
Suppose that over a certain region of space the electrical potential V is given by <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   Find the rate of change of the potential at <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)   in the direction of the vector <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)

A) 20
B) 44
C) <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)
D) -2.91
E) <strong>Suppose that over a certain region of space the electrical potential V is given by   Find the rate of change of the potential at   in the direction of the vector  </strong> A) 20 B) 44 C)   D) -2.91 E)
-2.91
3
Find equations for the tangent plane and the normal line to the surface with equation <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   at the point <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,

A) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,
B) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,
C) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,
D) <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,   , <strong>Find equations for the tangent plane and the normal line to the surface with equation   at the point  </strong> A)   ,   B)   ,   C)   ,   D)   ,
  ,  ,   ,
4
If <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   use the gradient vector <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   to find the tangent line to the level curve <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)   at the point <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)

A) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)
B) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)
C) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)
D) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)
E) <strong>If   use the gradient vector   to find the tangent line to the level curve   at the point  </strong> A)   B)   C)   D)   E)
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5
Find the directional derivative of the function <strong>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.</strong> A) 1 B)   C)   D) 11 at the point <strong>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.</strong> A) 1 B)   C)   D) 11 in the direction of the unit vector that makes the angle <strong>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.</strong> A) 1 B)   C)   D) 11 with the positive x-axis.

A) 1
B) <strong>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.</strong> A) 1 B)   C)   D) 11
C) <strong>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.</strong> A) 1 B)   C)   D) 11
D) 11
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