Finding work done when you know electric potential and the charge.

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astru025
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Problem:
Points A and B each have an electric potential of +9 V. How much work is required to take 2 mC of charge from A to B?

Equation: V = W / q
9V = W / .002 C
W= .018 J.

This answer I'm getting is incorrect and I'm not sure what else to try. Any help in the right direction would be greatly appreciated! Thanks!
 
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What is V in your equation?
The work done between two points depends on the potential difference between the pints.
 
V is voltage. Could you help me a little more on this problem? I'm really stumped on it.,
 
astru025 said:
V is voltage. Could you help me a little more on this problem? I'm really stumped on it.,
nasu already told you the important point that you are missing. Potentials are always relative. What matters is the difference in potential. What is the potential difference in this case?
 
Voltage = Potential

Same thing, different name.

Note that potential is not potential energy, perhaps this is why we call it voltage instead of something so close to potential energy.

The equation you are citing is missing a delta, that little triangle that denotes 'change in'.

It's actually qΔV = W.