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Four capacitors are connected as shown in the figure below. (Let C = 12.0 pF.) C 3.00 uF 20.0 UF a 6.00 JF (a) Find

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Four capacitors are connected as shown in the figure below. (Let C = 12.0 pF.) C 3.00 uF 20.0 UF a 6.00 JF (a) Find the equivalent capacitance between points a and b. UF (b) Calculate the charge on each capacitor, taking AV,= 14.0 V. 20.0 HF capacitor HC 6.00 HF capacitor HC 3.00 UF capacitor HC capacitor C HCConsider the circuit shown in the figure below, where C1 = 8.00 pF, C2 = 6.00 uF, and AV = 18.0 V. Capacitor C1 is rst charged by closing switch 51' Switch S1 is then opened, and the charged capacitor is connected to the uncharged capacitor by closing 52. (a) Calculate the initial charge (in uC) acquired by C1. (Round your answer to at least one decimal place.) :uc (b) Calculate the final charge (in pC) on each capacitor: (Round your answers to at least the nearest integer.) (c) What If? After a very long time, switch 51 is also closed. By what amount does the charge on the second capacitor change after 51 has been closed for a very long time? (Give your answer in uC.) :luc (a) A 4.00-HF capacitor is connected to a 12.0-V battery. How much energy is stored in the capacitor? HJ (b) Had the capacitor been connected to a 6.00-V battery, how much energy would have been stored? HJ(a) How much charge can be placed on a capacitor with air between the plates before it breaks down if the area of each plate is 6.00 cmz? :nc (b) Find the maximum charge if nylon is used between the plates instead of air. :nc (a) Determine the capacitance of a Teflonfilled parallelplate capacitor having a plate area of 1.60 cm2 and a plate separation of 0.050 0 mm. :lpF (b) Determine the maximum potential difference that can be applied to a Teflonfilled parallelplate capacitor having a plate area of 1.60 cm2 and a plate separation of 0.050 0 mm. :w

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