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Six capacitors are connected as shown in the figure. C V (a) If C3 = 1.7 nF, what does C2 have to be to

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Six capacitors are connected as shown in the figure. C V (a) If C3 = 1.7 nF, what does C2 have to be to yield an equivalent capacitance of 5.000 nF for the combination of the two capacitors? 3.3 nF (b) For the same values of C2 and C3 as in part (a), what is the value of C that will give an equivalent capacitance of 1.995 nF for the combination of the three capacitors? 3.32 nF (c) For the same values of C, C2, and C3 as in part (b), what is the equivalent capacitance of the whole set of capacitors if the values of the other capacitances are C4 = 1.5 nF, C5 = 2.6 nF, and C6 (d) If a battery with a potential difference of 11.7 V is connected to the capacitors as shown in the figure, what is the total charge on the six capacitors? (e) What is the potential drop across C5 in this case? = 5.3 nF?

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