02. A.C. Circuit (L-C-R, LC Circuit)
Alternating Current

155134 In series $L C R$ circuit ' $R$ ' represents an electric bulb. If the frequency of ac supply is doubled, the value of ' $L$ ' and ' $C$ ' should be

1 both doubled simultaneously.
2 four times the original value.
3 eight times the original value.
4 both halved simultaneously.
Alternating Current

155135 For a series LCR circuit at resonance, the statement which is not true is

1 Wattless current is zero
2 Power factor is zero
3 Peak energy stored by a capacitor $=$ peak energy stored by an inductor
4 Average power= apparent power
Alternating Current

155136 A sinusoidal voltage having maximum value of $283 \mathrm{~V} \&$ frequency of $50 \mathrm{~Hz}$ is applied to LCR series connection where $R=3 \Omega, L=25.48 \mathrm{mH}$ $\& \mathrm{C}=796 \mu \mathrm{F}$. Then impedance is at resonance condition.

1 $15 \Omega$
2 $5 \Omega$
3 $3 \Omega$
4 $4 \Omega$
Alternating Current

155137 In a series $\mathrm{L}-\mathrm{C}-\mathrm{R}$ circuit, the inductive reactance is twice the resistance and the capacitive reactance is $1 / 3^{\text {rd }}$ of the inductive reactance. The power factor of the circuit is

1 1.5
2 1.15
3 0.6
4 0.5
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Alternating Current

155134 In series $L C R$ circuit ' $R$ ' represents an electric bulb. If the frequency of ac supply is doubled, the value of ' $L$ ' and ' $C$ ' should be

1 both doubled simultaneously.
2 four times the original value.
3 eight times the original value.
4 both halved simultaneously.
Alternating Current

155135 For a series LCR circuit at resonance, the statement which is not true is

1 Wattless current is zero
2 Power factor is zero
3 Peak energy stored by a capacitor $=$ peak energy stored by an inductor
4 Average power= apparent power
Alternating Current

155136 A sinusoidal voltage having maximum value of $283 \mathrm{~V} \&$ frequency of $50 \mathrm{~Hz}$ is applied to LCR series connection where $R=3 \Omega, L=25.48 \mathrm{mH}$ $\& \mathrm{C}=796 \mu \mathrm{F}$. Then impedance is at resonance condition.

1 $15 \Omega$
2 $5 \Omega$
3 $3 \Omega$
4 $4 \Omega$
Alternating Current

155137 In a series $\mathrm{L}-\mathrm{C}-\mathrm{R}$ circuit, the inductive reactance is twice the resistance and the capacitive reactance is $1 / 3^{\text {rd }}$ of the inductive reactance. The power factor of the circuit is

1 1.5
2 1.15
3 0.6
4 0.5
Alternating Current

155134 In series $L C R$ circuit ' $R$ ' represents an electric bulb. If the frequency of ac supply is doubled, the value of ' $L$ ' and ' $C$ ' should be

1 both doubled simultaneously.
2 four times the original value.
3 eight times the original value.
4 both halved simultaneously.
Alternating Current

155135 For a series LCR circuit at resonance, the statement which is not true is

1 Wattless current is zero
2 Power factor is zero
3 Peak energy stored by a capacitor $=$ peak energy stored by an inductor
4 Average power= apparent power
Alternating Current

155136 A sinusoidal voltage having maximum value of $283 \mathrm{~V} \&$ frequency of $50 \mathrm{~Hz}$ is applied to LCR series connection where $R=3 \Omega, L=25.48 \mathrm{mH}$ $\& \mathrm{C}=796 \mu \mathrm{F}$. Then impedance is at resonance condition.

1 $15 \Omega$
2 $5 \Omega$
3 $3 \Omega$
4 $4 \Omega$
Alternating Current

155137 In a series $\mathrm{L}-\mathrm{C}-\mathrm{R}$ circuit, the inductive reactance is twice the resistance and the capacitive reactance is $1 / 3^{\text {rd }}$ of the inductive reactance. The power factor of the circuit is

1 1.5
2 1.15
3 0.6
4 0.5
Alternating Current

155134 In series $L C R$ circuit ' $R$ ' represents an electric bulb. If the frequency of ac supply is doubled, the value of ' $L$ ' and ' $C$ ' should be

1 both doubled simultaneously.
2 four times the original value.
3 eight times the original value.
4 both halved simultaneously.
Alternating Current

155135 For a series LCR circuit at resonance, the statement which is not true is

1 Wattless current is zero
2 Power factor is zero
3 Peak energy stored by a capacitor $=$ peak energy stored by an inductor
4 Average power= apparent power
Alternating Current

155136 A sinusoidal voltage having maximum value of $283 \mathrm{~V} \&$ frequency of $50 \mathrm{~Hz}$ is applied to LCR series connection where $R=3 \Omega, L=25.48 \mathrm{mH}$ $\& \mathrm{C}=796 \mu \mathrm{F}$. Then impedance is at resonance condition.

1 $15 \Omega$
2 $5 \Omega$
3 $3 \Omega$
4 $4 \Omega$
Alternating Current

155137 In a series $\mathrm{L}-\mathrm{C}-\mathrm{R}$ circuit, the inductive reactance is twice the resistance and the capacitive reactance is $1 / 3^{\text {rd }}$ of the inductive reactance. The power factor of the circuit is

1 1.5
2 1.15
3 0.6
4 0.5