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(Solved): In (Figure 1), the total resistance is \( 14.0 \mathrm{k} \Omega \), and the battery's emf is \( 27 ...




In (Figure 1), the total resistance is \( 14.0 \mathrm{k} \Omega \), and the batterys emf is \( 27.0 \mathrm{~V} \). The tim
Calculate the total capacitance of the circuit.
Express your answer with the appropriate units.
C
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In (Figure 1), the total resistance is \( 14.0 \mathrm{k} \Omega \), and the battery's emf is \( 27.0 \mathrm{~V} \). The time constant is measured to be \( 20.0 \mu \mathrm{s} \). Figure 1 of 1 Calculate the total capacitance of the circuit. Express your answer with the appropriate units. C You have already submitted this answer. Enter a new answer. No credit lost. Try again. Part B Calculate the time it takes for the voltage across the resistor to reach \( 12.0 \mathrm{~V} \) after the switch is closed. Express your answer to three significant figures and include the appropriate units.


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Solution to part A: Given, Resistance (R) =14 k?
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