15. The decreases when it moves with the electric field; the opposite is true for a negative charge. Unless the unit charge crosses a changing magnetic field, its potential at any given point does not depend on the path taken. a. Electric Potential b. Potential Energy 16. A charge of 6x10-7C is transferred from infinity to point A. If the work done to do this is 1.2 x 10-5J, what is the potential at point A? for a positive charge increases when it moves against an electric field and c. Kinetic Energy d. Electric Current а. 10 V b. 15 V c. 20 V d. 25V

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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15. The
decreases when it moves with the electric field; the opposite is true for a negative charge.
Unless the unit charge crosses a changing magnetic field, its potential at any given point
does not depend on the path taken.
a. Electric Potential b. Potential Energy
16. A charge of 6x10-7C is transferred from infinity to point A. If the work done to do this is
1.2 x 10-5J, what is the potential at point A?
for a positive charge increases when it moves against an electric field and
c. Kinetic Energy
d. Electric Current
а. 10 V
b. 15 V
c. 20 V
d. 25V
Transcribed Image Text:15. The decreases when it moves with the electric field; the opposite is true for a negative charge. Unless the unit charge crosses a changing magnetic field, its potential at any given point does not depend on the path taken. a. Electric Potential b. Potential Energy 16. A charge of 6x10-7C is transferred from infinity to point A. If the work done to do this is 1.2 x 10-5J, what is the potential at point A? for a positive charge increases when it moves against an electric field and c. Kinetic Energy d. Electric Current а. 10 V b. 15 V c. 20 V d. 25V
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