Consider three infinite sheets of charge arranged parallel to one another, as shown below, with sheet A at x = -d, sheet B at x = 0, and sheet C at x = d. Sheet A has a uniform charge per area of -30, sheet B has a uniform charge per area of +20, and sheet C has a uniform charge per area of -σ. For this problem, use the numerical values d = 12.5 cm and o = 3.35 nC/m². -30 H A B +20 x = -d x=0 -0 C x = d (a) What is electric potential difference AVAB between sheets A and B, where AVAB = VB - VA? (b) What is electric potential difference AVBC between sheets B and C, where AVBC = Vc - VB? (c) What is the minimum external work required to move a point particle of charge q = 15e from sheet A to sheet C? (You should neglect any gravitational interaction.)

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter19: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 11CQ
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Consider three infinite sheets of charge arranged parallel to one another, as shown below, with sheet A at x = -d, sheet B at x = 0, and sheet C at x = d. Sheet A has a
uniform charge per area of -30, sheet B has a uniform charge per area of +20, and sheet C has a uniform charge per area of -σ.
For this problem, use the numerical values d = 12.5 cm and o = 3.35 nC/m².
-30
+20
-0
HL
x = -d x = 0
x = d
B
C
A
(a) What is electric potential difference AVAB between sheets A and B, where AVAB = VB - VA?
V
(b) What is electric potential difference AVBC between sheets B and C, where AVBC = Vc - VB?
V
(c) What is the minimum external work required to move a point particle of charge q = 15e from sheet A to sheet C? (You should neglect any gravitational interaction.)
Transcribed Image Text:Consider three infinite sheets of charge arranged parallel to one another, as shown below, with sheet A at x = -d, sheet B at x = 0, and sheet C at x = d. Sheet A has a uniform charge per area of -30, sheet B has a uniform charge per area of +20, and sheet C has a uniform charge per area of -σ. For this problem, use the numerical values d = 12.5 cm and o = 3.35 nC/m². -30 +20 -0 HL x = -d x = 0 x = d B C A (a) What is electric potential difference AVAB between sheets A and B, where AVAB = VB - VA? V (b) What is electric potential difference AVBC between sheets B and C, where AVBC = Vc - VB? V (c) What is the minimum external work required to move a point particle of charge q = 15e from sheet A to sheet C? (You should neglect any gravitational interaction.)
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