The figure below shows equipotential contours in the region of space surrounding two charged conductors. 12.0 V 8.0 V OV 24.0 V 28.0 V 36.0 V E 16.0 V 20.0 V Find the work WAB in electron volts done by the electric force on a proton that moves from point A to point B. Similarly, find WAC, WAD, and WAE: (Assume the proton starts and stops at rest. Enter your answers in eV.)

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Chapter1: Units, Trigonometry. And Vectors
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The figure below shows equipotential contours in the region of space surrounding two charged conductors.
12.0 V
8.0 V
B
O V
24.0 V
28.0 V
36.0 V
E
16.0 V
20.0 V
Find the work WAR in electron volts done by the electric force on a proton that moves from point A to point B. Similarly, find WAC
АВ
W
AD'
and W,
AE'
(Assume the proton starts
and stops at rest. Enter your answers in eV.)
Transcribed Image Text:The figure below shows equipotential contours in the region of space surrounding two charged conductors. 12.0 V 8.0 V B O V 24.0 V 28.0 V 36.0 V E 16.0 V 20.0 V Find the work WAR in electron volts done by the electric force on a proton that moves from point A to point B. Similarly, find WAC АВ W AD' and W, AE' (Assume the proton starts and stops at rest. Enter your answers in eV.)
Find the work W
АВ
in electron volts done by the electric force on a proton that moves from point A to point B. Similarly, find WAc W,
AD'
and W,
VAE'
(Assume the proton starts
and stops at rest. Enter your answers in eV.)
HINT
(а) WAB
The work done by any conservative force can be related to the change in an associated potential energy: W = -APE. eV
(b) WAC
20
eV
(c) W
AD
36
eV
(d) W,
AE
36
eV
Transcribed Image Text:Find the work W АВ in electron volts done by the electric force on a proton that moves from point A to point B. Similarly, find WAc W, AD' and W, VAE' (Assume the proton starts and stops at rest. Enter your answers in eV.) HINT (а) WAB The work done by any conservative force can be related to the change in an associated potential energy: W = -APE. eV (b) WAC 20 eV (c) W AD 36 eV (d) W, AE 36 eV
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