A parallel-plate capacitor with plate area S and plate spacing d is placed in a vacuum. This capacitor is connected to a DC power supply with voltage V, and a sufficient amount of time has elapsed. The permittivity of vacuum is ε0.
Next, while the capacitor remains connected to the power supply, an external force is applied to counteract the attractive force between the plates, slowly widening the plate spacing from d to 3d. During this change, the capacitance of the capacitor plates and the stored charge change.
Find the algebraic expression (using ε0, S, d, and V$) of the work done by the power supply (electrical energy flowing into the power supply) during the process of widening the plate spacing.
When the magnitude of work done by the power supply, W [J], is calculated, it becomes A×10−7 J. Find the value of the coefficient A in this case and input a natural number representing that value.
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