I Review I Constants In an L-R-C series circuit, the resistance is 460 ohms, the inductance is 0.320 henrys, and the capacitance is 1.60x10-2 microfarads. Part A What is the resonance angular frequency wo of the circuit? Express your answer in radians per second to three significant figures. > View Available Hint(s) wo = rad/s Submit Part B The capacitor can withstand a peak voltage of 500 volts. If the voltage source operates at the resonance frequency, what maximum voltage amplitude Vmax can the source have if the maximum capacitor voltage is not exceeded? Express your answer in volts to three significant figures. > View Available Hint(s) ? Vmax = V Submit

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter23: Electromagnetic Induction, Ac Circuits, And Electrical Technologies
Section: Chapter Questions
Problem 101PE: An RLC series circuit has a 2.50 (resistor, a 100 (H inductor, and an 80.0 (F capacitor. (a) Find...
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I Review I Constants
In an L-R-C series circuit, the resistance is 460 ohms, the
inductance is 0.320 henrys, and the capacitance is 1.60x10-2
microfarads.
Part A
What is the resonance angular frequency wo of the circuit?
Express your answer in radians per second to three significant figures.
• View Available Hint(s)
Πν ΑΣφ
?
Wo =
rad/s
Submit
Part B
The capacitor can withstand a peak voltage of 500 volts. If the voltage source operates at the resonance frequency, what maximum voltage amplitude Vmax
can the source have if the maximum capacitor voltage is not exceeded?
Express your answer in volts to three significant figures.
• View Available Hint(s)
?
Vmax
V
Submit
Transcribed Image Text:I Review I Constants In an L-R-C series circuit, the resistance is 460 ohms, the inductance is 0.320 henrys, and the capacitance is 1.60x10-2 microfarads. Part A What is the resonance angular frequency wo of the circuit? Express your answer in radians per second to three significant figures. • View Available Hint(s) Πν ΑΣφ ? Wo = rad/s Submit Part B The capacitor can withstand a peak voltage of 500 volts. If the voltage source operates at the resonance frequency, what maximum voltage amplitude Vmax can the source have if the maximum capacitor voltage is not exceeded? Express your answer in volts to three significant figures. • View Available Hint(s) ? Vmax V Submit
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