Write the FORMULA for the total impedance of the circuit Ztot = = Write the FORMULA for the phase of the total impedance of the circuit ztot Determine the numerical value of Ztot = Determine the numerical value of tot = Determine the current through the circuit: • I(PEAK) = I(RMS) = . Amps Amps 22 degrees X

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Shown in the figure below is an "RC" circuit drive by an AC power source. The AC power source has an RMS voltage of Vps(RMS) = 9.26 Volts and is running at a frequency of f = 1.237e+04 Hz. The resistor has a resistance of R = 2640 Ω and the capacitor has an capacitance of C = 5.13e-09 Farads.

Shown in the figure below is an "RC" circuit drive by an AC power source. The AC power source has an RMS voltage of Vps(RMS) = 9.26 Volts and is running at a frequency of f = 1.237e+04 Hz. The
resistor has a resistance of R = 2640 2 and the capacitor has an capacitance of C = 5.13e-09 Farads.
Vps
Write the FORMULA for the total impedance of the circuit Ztot
Write the FORMULA for the phase of the total impedance of the circuit tot
Determine the numerical value of Ztot
Determine the numerical value of Ztot
Determine the current through the circuit:
●
●
R
ww
I(PEAK) =
I(RMS) =
Amps
Amps
=
=
Ω
C
degrees
||
X
Transcribed Image Text:Shown in the figure below is an "RC" circuit drive by an AC power source. The AC power source has an RMS voltage of Vps(RMS) = 9.26 Volts and is running at a frequency of f = 1.237e+04 Hz. The resistor has a resistance of R = 2640 2 and the capacitor has an capacitance of C = 5.13e-09 Farads. Vps Write the FORMULA for the total impedance of the circuit Ztot Write the FORMULA for the phase of the total impedance of the circuit tot Determine the numerical value of Ztot Determine the numerical value of Ztot Determine the current through the circuit: ● ● R ww I(PEAK) = I(RMS) = Amps Amps = = Ω C degrees || X
Determine the voltage across the resistor:
• VR(PEAK) =
Volts
• VR(RMS) =
Determine the voltage across the capacitor:
Volts
VC(PEAK):
• Vc(RMS) =
Volts
=
Volts
If a second circuit were connected in parallel with the capacitor, this circuit would be considered as:
a high-pass filter
a flux capacitor
a capacitive switcher
a radio tuner
a phase conjugate deflector
a low-pass filter
X
Transcribed Image Text:Determine the voltage across the resistor: • VR(PEAK) = Volts • VR(RMS) = Determine the voltage across the capacitor: Volts VC(PEAK): • Vc(RMS) = Volts = Volts If a second circuit were connected in parallel with the capacitor, this circuit would be considered as: a high-pass filter a flux capacitor a capacitive switcher a radio tuner a phase conjugate deflector a low-pass filter X
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