Advertisements
Advertisements
प्रश्न
A radio can tune over the frequency range of a portion of MW broadcast band: (800 kHz to 1200 kHz). If its LC circuit has an effective inductance of 200 µH, what must be the range of its variable capacitor?
[Hint: For tuning, the natural frequency i.e., the frequency of free oscillations of the LC circuit should be equal to the frequency of the radio wave.]
उत्तर
The range of frequency (v) of a radio is 800 kHz to 1200 kHz.
Lower tuning frequency, v1 = 800 kHz = 800 × 103 Hz
Upper tuning frequency, v2 = 1200 kHz = 1200 × 103 Hz
Effective inductance of circuit L = 200 μH = 200 × 10−6 H
Capacitance of variable capacitor for v1 is given as:
`"C"_1 = 1/(ω_1^2 "L")`
Where,
ω1 = Angular frequency for capacitor C1
`= 2pi "v"_1 = 2pi xx 800 xx 10^3 "rad s"^-1`
∴ `"C"_1 = 1/((2pi xx 800 xx 10^3)^2 xx 200 xx 10^-6)`
`= 1.9809 xx 10^-10`
F = 198.1 pF
Capacitance of variable capacitor for v2,
`"C"_2 = 1/(ω_2^2 "L")`
Where,
ω2 = Angular frequency for capacitor C2
`= 2pi "v"_2 = 2pi xx 1200 xx 10^3 "rad s"^-1`
∴ `"C"_2 = 1/((2pi xx 120 xx 10^3)^2 xx 200 xx 10^-6)`
= 88.04 pF
Hence, the range of the variable capacitor is from 88.04 pF to 198.1 pF.
APPEARS IN
संबंधित प्रश्न
Discuss the composition of two S.H.M.s along the same path having same period. Find the resultant amplitude and intial phase.
Calculate the quality factor of a series LCR circuit with L = 2.0 H, C = 2μF and R = 10 Ω. Mention the significance of quality factor in LCR circuit.
Calculate the quality factor of a series LCR circuit with L = 4.0 H, C = 1, μF and R = 20 Ω.
Mention the significance of quality factor in LCR circuit.
Derive an expression for the impedance of an LCR circuit connected to an AC power supply. Draw phasor diagram.
Answer in brief.
The total impedance of a circuit decreases when a capacitor is added in series with L and R. Explain why?
Calculate the value of the capacity in picofarad, which will make 101.4 microhenry inductance to oscillate with a frequency of one megahertz.
A charged 10 microfarad capacitor is connected to an 81 mH inductor. What is the angular frequency of free oscillations of the circuit?
A radio can tune over the frequency range of a portion of the MW broadcast band (800kHz -1200kHz). If its LC circuit has an effective inductance of 200mH, what must be the range of its variable condenser?
The frequency of the output signal becomes ____________ times by doubling the value of the capacitance in the LC oscillator circuit.
Electrical oscillations of desired frequency can be obtained by ______.
The magnetic field energy in an inductor changes from maximum value to minimum value in 10 ms, when connected to an a.c. source. The frequency of the source is ______.
In an oscillating LC circuit, the maximum charge on the capacitor is Q. The charge on the capacitor, when the energy is stored equally between the electric and magnetic field is ____________.
An LC circuit contains a 20 mH inductor and a 50 µF capacitor with an initial charge of 10 mC. The resistance of the circuit is negligible. Let the instant the circuit is closed be t = 0.
(a) What is the total energy stored initially? Is it conserved during LC oscillations?
(b) What is the natural frequency of the circuit?
(c) At what time is the energy stored
(i) completely electrical (i.e., stored in the capacitor)?
(ii) completely magnetic (i.e., stored in the inductor)?
(d) At what times is the total energy shared equally between the inductor and the capacitor?
(e) If a resistor is inserted in the circuit, how much energy is eventually dissipated as heat?
When an oscillator completes 100 oscillations its amplitude reduces to `1/3` of its initial value. What will be its amplitude, when it completes 200 oscillations?
In an oscillating system, a restoring force is a must. In an LC circuit restoring force is provided by ______.
When a charged condenser is allowed to discharge through the inductor the electrical oscillations are produced called ______
An inductor coil, capacitor, and an A.C. source of rms voltage 24 V are connected in series. When the frequency of the source is varied, a maximum rms current of 6.0 A is observed. If this inductor coil is connected to a battery of emf 12 V and of internal resistance 4Ω, the current will be ______ Amp.