West North -1.36 x 10-3 J East South A charge of 42.0 nC is placed in a uniform electric field that is directed towards the west direction and has a magnitude of 5.40 x 104 V/m. What work is done by the electric force when the charge moves a distance of 1.50 m in the direction 53° south of west?

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Chapter7: Electric Potential
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Problem 6CQ: If a proton is released from rest in an electric field, will it move in the direction of increasing...
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A charge of 42.0 nC is placed in a uniform electric field that is directed towards the west direction
and has a magnitude of 5.40 x 104 V/m. What work is done by the electric force when the charge
moves a distance of 1.50 m in the direction 53° south of west?
-1.36 x 10-3 J
zero
-2.05 x 10-3 J
3.40 x 10-3 J
-3.40 x 10-3 J
-2.72 x 10-³ J
2.72 x 10-3 J
2.05 x 10-3 J
1.36 x 10-3 J
Transcribed Image Text:A charge of 42.0 nC is placed in a uniform electric field that is directed towards the west direction and has a magnitude of 5.40 x 104 V/m. What work is done by the electric force when the charge moves a distance of 1.50 m in the direction 53° south of west? -1.36 x 10-3 J zero -2.05 x 10-3 J 3.40 x 10-3 J -3.40 x 10-3 J -2.72 x 10-³ J 2.72 x 10-3 J 2.05 x 10-3 J 1.36 x 10-3 J
O
West
-1.36 x 10-3 J
zero
South
A charge of 42.0 nC is placed in a uniform electric field that is directed towards the west direction
and has a magnitude of 5.40 x 104 V/m. What work is done by the electric force when the charge
moves a distance of 1.50 m in the direction 53° south of west?
North
-2.05 x 10-3 J
3.40 x 10-3 J
East
Transcribed Image Text:O West -1.36 x 10-3 J zero South A charge of 42.0 nC is placed in a uniform electric field that is directed towards the west direction and has a magnitude of 5.40 x 104 V/m. What work is done by the electric force when the charge moves a distance of 1.50 m in the direction 53° south of west? North -2.05 x 10-3 J 3.40 x 10-3 J East
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