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Question

For the series $LCR$ circuit connected with 220 V, 50 Hz a.c source as shown in the figure, the power factor is $\frac{\alpha}{10}$. The value of $\alpha$ is ______.

The correct answer is
8

To find the power factor of the given LCR circuit, we need to determine the impedance of the circuit and then use it to find the power factor. The power factor is given by \(\cos \phi = \frac{R}{Z}\), where \(Z\) is the impedance of the circuit.

The impedance \(Z\) for a series LCR circuit is given by:

\(Z = \sqrt{R^2 + (X_L - X_C)^2}\)

Where:

  • \(R = 60 \, \Omega\) (Resistance)
  • \(X_L = 70 \, \Omega\) (Inductive Reactance)
  • \(X_C = 150 \, \Omega\) (Capacitive Reactance)

First, calculate the net reactance:

\(X = X_L - X_C = 70 \, \Omega - 150 \, \Omega = -80 \, \Omega\)

Now, calculate the impedance \(Z\):

\(Z = \sqrt{60^2 + (-80)^2} = \sqrt{3600 + 6400} = \sqrt{10000} = 100 \, \Omega\)

Next, calculate the power factor:

\(\cos \phi = \frac{R}{Z} = \frac{60}{100} = 0.6\)

The power factor given is \(\frac{\alpha}{10}\). Therefore:

\(\frac{\alpha}{10} = 0.6 \implies \alpha = 6\)

Thus, the value of \(\alpha\) is 6, but since the originally provided correct answer is

8

, we should check all setups to confirm, however per logical steps \(\alpha\) appearing as above.

 

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Important Questions from Electricity and Magnetism

  1. The electric field of a plane electromagnetic wave, travelling in an unknown non-magnetic medium is given by,
    $E_y = 20 \sin(3 \times 10^6 x - 4.5 \times 10^{14} t) \text{ V/m}$
    (where x, t and other values have S.I. units). The dielectric constant of the medium is _________.
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  2. Figure shows the circuit that contains three resistances ($9 \, \Omega$ each) and two inductors (4 mH each). The reading of ammeter at the moment switch K is turned ON, is _________ A.

  3. A capacitor $P$ with capacitance $10 \times 10^{-6} \text{ F}$ is fully charged with a potential difference of 6.0 V and disconnected from the battery. The charged capacitor $P$ is connected across another capacitor $Q$ with capacitance $20 \times 10^{-6} \text{ F}$. The charge on capacitor $Q$ when equilibrium is established will be $\alpha \times 10^{-5} \text{ C}$ (assume capacitor $Q$ does not have any charge initially), the value of $\alpha$ is _________.
  4. A conducting circular loop is rotated about its diameter at a constant angular speed of 100 rad/s in a magnetic field of 0.5 T perpendicular to the axis of rotation. When the loop is rotated by $30^\circ$ from the horizontal position, the induced EMF is 15.4 mV. The radius of the loop is _________ mm.
    $\left(\text{Take } \pi = \frac{22}{7}\right)$
  5. A cylindrical conductor of length 2 m and area of cross-section $0.2 \text{ mm}^2$ carries an electric current of 1.6 A when its ends are connected to a 2 V battery. Mobility of electrons in the conductor is $\alpha \times 10^{-3} \text{ m}^2\text{/V.s}$. The value of $\alpha$ is :
    (electron concentration $= 5 \times 10^{28} \text{/m}^3$ and electron charge = $1.6 \times 10^{-19} \text{ C}$)
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