A circuit is constructed using a DC power supply with electromotive force V, resistors R1andR2 with resistances R1andR_2respectively,capacitors\text{C}_1 and \text{C}_2withcapacitancesC_1 and C2 respectively, and a selector switch S.
The selector switch S has one common terminal and two selector terminals aand\text{b},andthecommonterminalcanbeconnectedtoeitherterminal\text{a}orterminal\text{b}$. The specific connections of the circuit are as follows:
One plate of capacitor C1 is connected to the common terminal of switch S.
Terminal a of switch S is connected to one terminal of resistor R1, and the other terminal of resistor R1 is connected to the positive terminal of the DC power supply.
Terminal b of switch S is connected to one terminal of resistor R2, and the other terminal of resistor R2 is connected to one plate of capacitor C2.
The negative terminal of the DC power supply, the other plate of capacitor C1, and the other plate of capacitor C2 are all connected to a common ground wire.
Initially, switch S is not connected to anything, and capacitors C1 and C2 have no charge stored.
First, switch S is connected to terminal a, and a sufficiently long time elapses.
Then, switch S is removed from terminal a and switched to terminal b. Find the algebraic expression, using C1, C2, and V, for the total amount of Joule heat generated in resistor R2 during the time elapsed between switching to terminal b and the start of another sufficiently long period of time.
Assume that the resistance of the wires and switches, as well as the self-inductance of the circuit, are all negligible.
Calculate the total amount of Joule heat Q2 [J] generated by resistor R2 within a sufficient amount of time after switching the switch to terminal b, and input a natural number representing that value.
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