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Consider the following. (LetlL'1 = 16.00 pF and C2 = 10.00 pF.) sonar HP? J + _ F 9.00 V G} (a) Find the equivalent
Consider the following. (LetlL'1 = 16.00 pF and C2 = 10.00 pF.) sonar HP? J + _ F 9.00 V G} (a) Find the equivalent capacitance of the capacitors in the figure. :uF (b) Find the charge on each capacitor. on the right 16.00 pF capacitor : pC on the left 16.00 pF capacitor : pC on the 10.00 pF capacitor : pC on the 6.00 pF capacitor :| pt: (c) Find the potential difference across each capacitor. on the right 16.00 pF capacitor :| V on the left 16.00 pF capacitor :| V on the 10.00 pF capacitor :| V on the 6.00 pF capacitor : V For the system of capacitors shown in the figure below, find the following. (Let C1 = 900 pF and C2 = 1.00 pF.) Q 6.00 p.17 ii ii 200 pF c2 + _ 90.0 V (D (a) the equivalent capacitance of the system :0 (b) the charge on each capacitor one. :0: ma. Eye on the 6.00 pF capacitor : pC on the 2.00 pF capacitor S pC (c) the potential difference across each capacitor across the 6.00 pF capacitor E V across the 2.00 pF capacitor E V Three capacitors are connected to a battery as shown in the figure below. Their capacitances are C, = 3C, C, = C, and C? = 5C. (a) What is the equivalent capacitance of this set of capacitors (in terms of C)? Cea = (b) State the ranking of the capacitors according to the charge they store, from largest to smallest. 1> Q (c) Rank the capacitors according to the potential differences across them, from largest to smallest. O AV, = AV, AV2 = AV3 O AV, > AV2 > AV3 O AV, > AV3 > AV 1 (d) Assume C3 is increased. Explain what happens to the charge stored by each capacitor. O All charges stay the same. O Q3 and Q2 increase; Q1 decreases. O Q3 and Q1 increase; Q2 decreases. O Q3, Q1, and Q2 increase
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