What is the voltage equation for an LCR circuit according to Kirchhoff's law?
AC voltage applied to a LCR Circuit

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Physics
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11th - 12th Grade
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Hard
10 questions
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1.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
L di/dt + qR + i/C = v
L di/dt + iR + q/C = v
L di/dt + iR + qC = v
L dq/dt + iR + q/C = v
2.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
In a phasor diagram, how does the voltage across a capacitor relate to the current phasor?
It lags the current phasor by π/2
It is opposite to the current phasor
It leads the current phasor by π/2
It is in phase with the current phasor
3.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the expression for impedance (Z) in an LCR circuit?
Z = √(R² + XC² + XL²)
Z = R² + XC² + XL²
Z = √(R² + (XC - XL)²)
Z = R + XC + XL
4.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
Which method provides a steady-state solution for the LCR circuit?
Phasor diagram method
Graphical method
Analytical method
Numerical method
5.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the resonant frequency (ω₀) in an RLC circuit?
ω₀ = 1/√(LC)
ω₀ = √(LC)
ω₀ = C/L
ω₀ = L/C
6.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
At resonance, what is the relationship between capacitive reactance (XC) and inductive reactance (XL)?
XC = XL
XC ≠ XL
XC > XL
XC < XL
7.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the maximum amplitude of current at resonant frequency in an RLC circuit?
im = vm/(R + Z)
im = vm/(XC + XL)
im = vm/R
im = vm/Z
8.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What does the quality factor (Q) of a circuit indicate?
The sharpness of resonance
The total capacitance of the circuit
The total resistance of the circuit
The total inductance of the circuit
9.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
How is the sharpness of resonance related to the bandwidth of the circuit?
Sharpness is inversely proportional to bandwidth
Sharpness is directly proportional to bandwidth
Sharpness is equal to bandwidth
Sharpness is unrelated to bandwidth
10.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the formula for the quality factor (Q) in terms of ω₀, L, and R?
Q = ω₀L/R
Q = L/ω₀R
Q = ω₀R/L
Q = R/ω₀L
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