Home
Class 12
PHYSICS
A 200 km telephone wire has capacity of ...

A 200 km telephone wire has capacity of `0.014 muF km^(-1)`. If it carries an alternating current oif frequency 50kHz, what should be the value of an inductance required to be connected in series so that impedance is minimumn ?

Text Solution

Verified by Experts

Capacitance `C=0.014xx200 mu F = 2.8 xx 10^(-6)F`
Frequency ` f = 50 kC//s = 50 xx 10^(3)` cycles/s.
The impedance will be minimum at resonant frequency, when applied frequency will be same as resonant frequency `(f_(0)=f)`.
The resonant frequency `f_(0) = (1) / ( 2pi sqrt(LC))rArr L = (1) / ( 4 pi^(2) f_(0)^(2)C)`
`L=(1)/(4xx(22)/(7)xx(22)/(7) xx (50xx10^(3))^(2)xx(2.8xx10^(-6)))=0.36xx10^(-3)H`
Promotional Banner

Topper's Solved these Questions

  • ALTERNATING CURRENT

    AAKASH INSTITUTE|Exercise Try Yourself|15 Videos
  • ALTERNATING CURRENT

    AAKASH INSTITUTE|Exercise Assignment (Section - A) ( Objective Type Questions ( One option is correct))|34 Videos
  • ATOMS

    AAKASH INSTITUTE|Exercise ASSIGNMENT SECTION J (Aakash Challengers )|4 Videos

Similar Questions

Explore conceptually related problems

A 200 km long telegraph wire has a capacitance of 0.025 mu F//km . It carries an alternating current of 50 KHz. What should be the value of an inductance required to be connected in series, so that the impedance is minimum. (take pi^(2)=10 )

A 200km long telegraph wire has capacitance of 0.014 mu F//km If it carries an alternating current of 50 xx 10^(3) Hz what should be the value of an inductance required to be connected in series in series so that impedance isw minimum .

A 100 km telegraph wire hasd capacity of 0.02 mu F//km , if it carries an alternating current of frequency 5 kHZ . The value of an inductrance required to be connected in series so that the impedance is minimum.

A telephone wire of length 200 km has a capacitance of 0.01 4 (muF)/(km) . If it carries an AC of frequency 5kHz what should be the value of an inductor required to be connected in series so that impedence of the circuit is minimum ?

A telephone wire of length 200km has a capacitance of 0.0125 muFper km.If it carries an ac of frequency 5KHz.What should be the value of an inductor required to be connected in series.So that the impedance of the circuit is minimum (pi^(2)=10)

A coil of inductance L = 5//8 H and of resistance R = 62.8 (Omega) is connected to the mains alternating voltage of frequency 50 Hz. What can be the capacitance of the capacitor (in (mu)F) connected in series with the coil if the power dissipated has to remain unchanged? Take (pi)^(2) = 10 .

An inductor of inductance 100 mH is connected in series with a resistance, a variable capacitance and an AC source of frequency 2.0 kHz . What should be the value of the capacitance so that maximum current may be drawn into the circuit?

A coil of inductance L=5H and resistance R=55Omega is connected in series to the mains alternating voltage of frequency f=50Hz in series. What can be the non-zero capacitance of the capacitor (in muF ) connected in series with the coil, if the power dissipated has to remain unchanged. (take pi^(2)=10 )

A coil of inductance L=0.2 H and of resistance R= 62.8 Omega is connected to the mains alternating voltage of frequency 50Hz. What can be the capacitance of the capacitor connected in series with the coil if the useful power has to remain unchanged?

A capacitor of 100 muF , a resistor of 20 Omega and an inductor of inductance L are connected in series with an a.c. source of frequency 50 Hz. Calculate the value of inductance L of the inductor, if phase angle between current and voltage is zero.