Electrical Potential Energy In the image below, you have a before and after case. Initially q1 and q2 are close together. The charge q1 is being held stationary and is not allowed to move. But q2 is moved away from q1 and then held stationary. In the final image you can see where q2 has moved relative to q1. 91 q2 Initial + Final (+) q1 q2 Look at the Initial set up and the Final set up. Is the Work done on q2 by the Electric Force positive or negative? Make sure to think about the signs of the charges and their relative distances.

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Electrical Potential Energy
In the image below, you have a before and after case. Initially q1 and q2 are close
together. The charge q1 is being held stationary and is not allowed to move. But q2
is moved away from q1 and then held stationary. In the final image you can see
where q2 has moved relative to q1.
q1
q2
Initial
+)
Final
+
q1
q2
Look at the Initial set up and the Final set up. Is the Work done on q2 by the Electric
Force positive or negative? Make sure to think about the signs of the charges and
their relative distances.
Transcribed Image Text:Electrical Potential Energy In the image below, you have a before and after case. Initially q1 and q2 are close together. The charge q1 is being held stationary and is not allowed to move. But q2 is moved away from q1 and then held stationary. In the final image you can see where q2 has moved relative to q1. q1 q2 Initial +) Final + q1 q2 Look at the Initial set up and the Final set up. Is the Work done on q2 by the Electric Force positive or negative? Make sure to think about the signs of the charges and their relative distances.
Expert Solution
Step 1

Since both the charge is positive, so there will be repulsion between them.

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