The conductive spheres seen in the figure are held at an electrical potential of +3 kV inside and +17 kV outside. What is the work done by the external force to move a 3uC charge from the inner sphere to the outer sphere at a constant speed?

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Chapter1: Units, Trigonometry. And Vectors
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The conductive spheres seen in the figure are held at an electrical potential of +3 kV inside and +17 kV outside. What is the work done by the external force to move a 3uC charge from the inner sphere to the outer sphere at a constant speed?

+17kV
q=+3µC
+3kV
Şekilde görülen iletken kürelerden içteki +3 kV, dıştaki +17 kV
elektriksel potansiyelde tutulmaktadır. 3µC'luk bir yükü içeki
küreden dıştaki küreye sabit hızla taşımak için dış kuvvetin
yapması gereken iş ne kadardır?
(1 µC = 10-6C ve 1 kV = 1000 V)
Transcribed Image Text:+17kV q=+3µC +3kV Şekilde görülen iletken kürelerden içteki +3 kV, dıştaki +17 kV elektriksel potansiyelde tutulmaktadır. 3µC'luk bir yükü içeki küreden dıştaki küreye sabit hızla taşımak için dış kuvvetin yapması gereken iş ne kadardır? (1 µC = 10-6C ve 1 kV = 1000 V)
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