A uniform electric field has magnitude E and is directed in the negative x direction. The potential difference between point a (at æ = 0.60 m) and point b (at a = 0.90 m) is 380 V. Submit Previous Answers Correct Part C A negative point charge q = -0.200 µC is moved from b to a. Calculate the work done on the point charge by the electric field. Express your answer in joules. W = J Submit Previous Answers Request Answer X Incorrect; Try Again; 7 attempts remaining
A uniform electric field has magnitude E and is directed in the negative x direction. The potential difference between point a (at æ = 0.60 m) and point b (at a = 0.90 m) is 380 V. Submit Previous Answers Correct Part C A negative point charge q = -0.200 µC is moved from b to a. Calculate the work done on the point charge by the electric field. Express your answer in joules. W = J Submit Previous Answers Request Answer X Incorrect; Try Again; 7 attempts remaining
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A uniform electric field has magnitude E and is
directed in the negative x direction. The potential
difference between point a (at x = 0.60 m) and
point b (at a = 0.90 m) is 380 V.
Submit
Previous Answers
Correct
Part C
A negative point charge q = -0.200 µC is moved from b to a. Calculate the work done on the
point charge by the electric field.
Express your answer in joules.
ΑΣφ
?
W =
J
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 7 attempts remaining"
Transcribed Image Text:E = 1300 N/C
A uniform electric field has magnitude E and is
directed in the negative x direction. The potential
difference between point a (at x = 0.60 m) and
point b (at a = 0.90 m) is 380 V.
Submit
Previous Answers
Correct
Part C
A negative point charge q = -0.200 µC is moved from b to a. Calculate the work done on the
point charge by the electric field.
Express your answer in joules.
ΑΣφ
?
W =
J
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 7 attempts remaining
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