Deck 8: Three-Space: Partial Derivatives and Double Integrals
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Deck 8: Three-Space: Partial Derivatives and Double Integrals
1
The three- space equation represents :
A) parabolic cylinder
B) sphere
C) hyperboloid of one sheet
D) elliptic cone
A) parabolic cylinder
B) sphere
C) hyperboloid of one sheet
D) elliptic cone
sphere
2
Find the partial derivative if .
A)
B)
C)
D)
A)
B)
C)
D)
3
Find if .
A)
B)
C)
D)
A)
B)
C)
D)
4
Find the total differential of the function .
A)
B)
C)
D)
A)
B)
C)
D)
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5
Use the total differential to estimate the change in the volume of a cylinder, , if its radius changed from to and its height changed from to .
A)
B)
C)
D)
A)
B)
C)
D)
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6
Find any relative maximum or minimum points or saddle points of the function .
A) saddle point at
B) relative minimum at (-
C) saddle point at ( )
D) relative maximum at
A) saddle point at
B) relative minimum at (-
C) saddle point at ( )
D) relative maximum at
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7
Evaluate the double integral
A) 6
B) 3
C) 4
D) 5
A) 6
B) 3
C) 4
D) 5
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8
Find the volume of the solid bounded by the surface and the coordinate planes.
A) 12
B) 24
C) 14
D) 16
A) 12
B) 24
C) 14
D) 16
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9
Name and sketch the graph of .
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10
Find the distance between the points and (3, 7 - 2).
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11
Find and for .
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12
Given the surface , find the slope of the tangent line parallel to the - plane and through the point .
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13
Find the total differential for .
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14
The total resistance of two resistors and , connected in parallel, is . measures with a maximum error of . measures with a maximum error of . Use a differential to approximate the change in to two significant digits.
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15
Find all critical points and any relative maximum or minimum points or saddle points for the function:
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16
Evaluate .
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17
Find the volume of the solid bounded by the plane and the coordinate planes.
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