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The Temperature at the Point on a Metal Plate

Question 109

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The temperature at the point The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . on a metal plate is modeled by The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . , The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . . Find the directions of no change in heat on the plate from the point The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .


A) There will be no change in directions perpendicular to the gradient The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .
B) There will be no change in directions parallel to the gradient The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .
C) There will be no change in directions parallel to the gradient The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .
D) There will be no change in directions perpendicular to the gradient The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .
E) There will be no change in directions perpendicular to the gradient The temperature at the point   on a metal plate is modeled by   ,   . Find the directions of no change in heat on the plate from the point   . A)  There will be no change in directions perpendicular to the gradient   . B)  There will be no change in directions parallel to the gradient   . C)  There will be no change in directions parallel to the gradient   . D)  There will be no change in directions perpendicular to the gradient   . E)  There will be no change in directions perpendicular to the gradient   . .

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