There is given an ideal capacitor with two plates at a distance of 3 mm. The capacitor is connected to a voltage source with 12 V until it is loaded completely. Then the capacitor is disconnected from the voltage source. After this the two plates of the capacitor are driven apart until their distance is 5 mm. Now a positive test charge of 1 nC is brought from the positively charged plate to the negatively charges plate. How large is the kinetic energy of the test charge? The test charge of 1 nC can be regarded to be so small that it does not influence the electric field between the two plates of the capacitor.

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There is given an ideal capacitor with two plates at
a distance of 3 mm. The capacitor is connected to
a voltage source with 12 V until it is loaded
completely. Then the capacitor is disconnected
from the voltage source. After this the two plates
of the capacitor are driven apart until their
distance is 5 mm. Now a positive test charge of 1
nC is brought from the positively charged plate to
the negatively charges plate. How large is the
kinetic energy of the test charge? The test charge
of 1 nC can be regarded to be so small that it does
not influence the electric field between the two
plates of the capacitor.
Transcribed Image Text:There is given an ideal capacitor with two plates at a distance of 3 mm. The capacitor is connected to a voltage source with 12 V until it is loaded completely. Then the capacitor is disconnected from the voltage source. After this the two plates of the capacitor are driven apart until their distance is 5 mm. Now a positive test charge of 1 nC is brought from the positively charged plate to the negatively charges plate. How large is the kinetic energy of the test charge? The test charge of 1 nC can be regarded to be so small that it does not influence the electric field between the two plates of the capacitor.
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