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(Solved): For the capacitor network shown in (Figure 1), the potential difference across ab is 58V. Figure ...




For the capacitor network shown in (Figure 1), the potential difference across \( a b \) is \( 58 \mathrm{~V} \).
Figure
Find the total charge stored in this network.
Express your answer with the appropriate units.
Part B
Find the charge on the \
Find the charge on the \( 120 \mathrm{nF} \) capacitor:
Express your answer with the appropriate units.
Part D
Find the total
Find the energy stored in the \( 150 \mathrm{nF} \) capacitor.
Express your answer with the appropriate units.
Part F
Find th
Find the potential difference across the \( 150 \mathrm{nF} \) capacitor
Express your answer with the appropriate units.
Part
For the capacitor network shown in (Figure 1), the potential difference across is . Figure Find the total charge stored in this network. Express your answer with the appropriate units. Part B Find the charge on the capacitor. Express your answer with the appropriate units. Find the charge on the capacitor: Express your answer with the appropriate units. Part D Find the total energy stored in the network. Express your answer with the appropriate units. Find the energy stored in the capacitor. Express your answer with the appropriate units. Part F Find the energy stored in the capacitor: Express your answer with the appropriate units. Find the potential difference across the capacitor Express your answer with the appropriate units. Part H Find the potential difference across the capacitor. Express your answer with the appropriate units.


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Given, The potential difference across the network is V=58 VWe see that the two capacitors are in series. The equivalent capacitance is C=C1C2C1+C2put
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