The figure (Figure 1) shows a simplified circuit for a photographic flash unit. This circuit consists of a 9.0-V battery, a 50.0-k resistor, a 140-μF capacitor, a flashbulb, and two switches. Initially, the capacitor is uncharged and the two switches are open. To charge the unit, switch S₁ is closed; to fire the flash, switch S₂ (which is connected to the camera's shutter) is closed. How long does it take to charge the capacitor to 4.0 V? Express your answer using two significant figures. 17 ΑΣΦ Submit Request Answer ?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 52P: Consider the circuit shown in Figure P20.52, where C1 = 6.00 F, C2 = 3.00 F, and V = 20.0 V....
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The figure (Figure 1) shows a simplified circuit for a photographic flash unit. This circuit
consists of a 9.0-V battery, a 50.0-ks resistor, a 140-μF capacitor, a flashbulb, and two
switches. Initially, the capacitor is uncharged and the two switches are open. To charge the
unit, switch S₁ is closed; to fire the flash, switch S₂ (which is connected to the camera's
shutter) is closed.
Figure
9.0 V
• 50.0 ΚΩ
$₁
140μF|
S₂
1 of 1
How long does it take to charge the capacitor to 4.0 V ?
Express your answer using two significant figures.
VG ΑΣΦ
t =
Submit
Provide Feedback
Request Answer
?
S
Transcribed Image Text:The figure (Figure 1) shows a simplified circuit for a photographic flash unit. This circuit consists of a 9.0-V battery, a 50.0-ks resistor, a 140-μF capacitor, a flashbulb, and two switches. Initially, the capacitor is uncharged and the two switches are open. To charge the unit, switch S₁ is closed; to fire the flash, switch S₂ (which is connected to the camera's shutter) is closed. Figure 9.0 V • 50.0 ΚΩ $₁ 140μF| S₂ 1 of 1 How long does it take to charge the capacitor to 4.0 V ? Express your answer using two significant figures. VG ΑΣΦ t = Submit Provide Feedback Request Answer ? S
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