An electric field is 4 X 10° V/m at an angle of 30° to the x axis. A charge undergoes a displacement vector of 3 m j. (3 meters along the y axis). Calc. the potential difference in volts. (a) 6 X 10° (b) 8 X 10 (c) 1 X 10° (d) 1.2 X 10°

Principles of Physics: A Calculus-Based Text
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Chapter19: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 10OQ: An electron with a speed of 3.00 106 m/s moves into a uniform electric field of magnitude 1.00 103...
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An electric field is 4 X 10° V/m at an angle of 30° to the x axis. A charge
undergoes a displacement vector of 3 m j. (3 meters along the y axis). Calc. the
potential difference in volts. (a) 6 X 10° (b) 8 X 10 (c) 1X 10° (d) 1.2 X 10°
Transcribed Image Text:An electric field is 4 X 10° V/m at an angle of 30° to the x axis. A charge undergoes a displacement vector of 3 m j. (3 meters along the y axis). Calc. the potential difference in volts. (a) 6 X 10° (b) 8 X 10 (c) 1X 10° (d) 1.2 X 10°
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Electric field is the negative gradient of electric potential. 

E = - dV/dr 

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