Questionl: A charge of q = +1.20 µC is placed in a uniform x- directed electric field of magnitude Ex = 1.40 x 103 NC -1. How much work must be performed in order to move the charge a distance c -3.50 cm in the x-direction? What is the potential difference between the initial and final positions of the charge? If the electric field is produced by two oppositely charged parallel plates separated by a distance d= 5.00 cm, what is the potential difference between the plates?

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Question | : A charge of q = +1.20 uC is placed in a uniform x- directed electric field of magnitude Ex = 1.40 x 103 N C ~1. How much work must be performed in order to move the charge a distance ¢ = ~3.50 cm in the x-direction? What is the potential difference between the initial and final positions of the charge? If the electric field is produced by two oppositely charged parallel plates separated by a distance d = 5.00 em, what is the potential difference between the plates?
Question l:
A charge of q = +1.20 µC is placed in a uniform x-
directed electric field of magnitude Ex = 1.40 x 103 NC
-1. How much work must be performed in order to move
the charge a distance e=-3.50 cm in the x-direction?
What is the potential difference between the initial and
final positions of the charge? If the electric field is
produced by two oppositely charged parallel plates
separated by a distance d = 5.00 cm, what is the potential
difference between the plates?
Transcribed Image Text:Question l: A charge of q = +1.20 µC is placed in a uniform x- directed electric field of magnitude Ex = 1.40 x 103 NC -1. How much work must be performed in order to move the charge a distance e=-3.50 cm in the x-direction? What is the potential difference between the initial and final positions of the charge? If the electric field is produced by two oppositely charged parallel plates separated by a distance d = 5.00 cm, what is the potential difference between the plates?
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