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(13%) Problem 6: Three capacitors and a battery are connected as shown. The capacitance values are C = 5.6 F, C = 10.7 uF,
(13%) Problem 6: Three capacitors and a battery are connected as shown. The capacitance values are C = 5.6 F, C = 10.7 uF, and C = 5.3 F. The battery voltage is V = 12 V. AD DRE 40215 + C C'3 Vo C2 14% Part (a) Enter an expression for the equivalent capacitance, C12, of the two capacitors C and C2 in terms of the variables given in the problem statement. C12= | A C1 C2 C3 () 7 8 9 HOME ^^4 5 6 * 1 2 3 - 0 END VO BACKSPACE DEL CLEAR t + d m Vo g Submit Hint Hints: 0% deduction per hint. Hints remaining: 1 Feedback I give up! Feedback: 0% deduction per feedback. 14% Part (b) Using the result from Part (a), express the total equivalent capacitance, Ceq, in terms of C12 and C3. A 14% Part (c) Calculate the numeric value, in microfarads, of the total equivalent capacitance. A 14% Part (d) Express the charge, Q, stored in the circuit in terms of the equivalent capacitance, Ceq, and the potential difference across the battery, Vo. A 14% Part (e) Calculate the numeric value, in microcoulombs, of the charge stored in the circuit. 14% Part (f) Express the energy stored in the capacitor in terms of the equivalent capacitance, Ceq, and the potential across the battery, Vo. 14% Part (g) Calculate the numeric value, in microjoules, of the energy stored in the circuit.
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