R 50.0 V Consider the circuit with R = 261 kQ and C = 162 µF. If the capacitor is initially uncharged, what will be the magnitude of the voltage in volts across the capacitor at a time 48.2 seconds after the switch is closed? (Enter answer as a positive number with 1 digit right of decimal. Do not enter unit.)

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Chapter1: Units, Trigonometry. And Vectors
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Consider the circuit with \( R = 261 \, \text{k}\Omega \) and \( C = 162 \, \mu\text{F} \). If the capacitor is initially uncharged, what will be the magnitude of the voltage in volts across the capacitor at a time 48.2 seconds after the switch is closed? (Enter answer as a positive number with 1 digit right of decimal. Do not enter unit.)

**Diagram:**

The diagram consists of a simple RC (Resistor-Capacitor) circuit. 

- A voltage source of \( 50.0 \, \text{V} \) is connected in series with a resistor (R) and a capacitor (C).
- The resistor is labeled with a resistance value \( R \).
- The capacitor is labeled with a capacitance value \( C \).
- The circuit forms a closed loop when the switch is closed.
Transcribed Image Text:Consider the circuit with \( R = 261 \, \text{k}\Omega \) and \( C = 162 \, \mu\text{F} \). If the capacitor is initially uncharged, what will be the magnitude of the voltage in volts across the capacitor at a time 48.2 seconds after the switch is closed? (Enter answer as a positive number with 1 digit right of decimal. Do not enter unit.) **Diagram:** The diagram consists of a simple RC (Resistor-Capacitor) circuit. - A voltage source of \( 50.0 \, \text{V} \) is connected in series with a resistor (R) and a capacitor (C). - The resistor is labeled with a resistance value \( R \). - The capacitor is labeled with a capacitance value \( C \). - The circuit forms a closed loop when the switch is closed.
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