51. The core of any transformer is laminated so as to

A reduce the energy loss due to eddy currents
B make it light weight
C make it robust and strong
D increase the secondary voltage
Answer :   reduce the energy loss due to eddy currents
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52. Charges on the capacitors in four oscillating $$LC$$  circuits vary as follows : $$\left( 1 \right)\,q = 2\cos \,4t,\,\left( 2 \right)\,q = 4\cos \,t,\,\left( 3 \right)\,q = 3\cos \,4t,\left( 4 \right)\,q = 4\cos \,2t,$$       with $$q$$ in coulomb and $$t$$ in second. In which circuit(s) current amplitude is greatest?

A $$\left( 1 \right)$$
B $$\left( 2 \right)$$
C $$\left( 3 \right)$$
D $$\left( 4 \right)$$
Answer :   $$\left( 3 \right)$$
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53. In an $$L-R$$  circuit, the value of $$L$$ is $$\left( {\frac{{0.4}}{\pi }} \right)$$  henry and the value of $$R$$ is 30 ohm. If in the circuit, an alternating emf of 200 volt at 50 cycles per second is connected, the impedance of the circuit and current will be:

A 11.4 ohm, 17.5 ampere
B 30.7 ohm, 6.5 ampere
C 40.4 ohm, 5 ampere
D 50 ohm, 4 ampere.
Answer :   50 ohm, 4 ampere.
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54. If we increase the driving frequency in a circuit with a purely capacitive load, then

A amplitude $${V_C}$$ increases
B amplitude $${V_C}$$ decreases
C amplitude $${i_C}$$ increases
D amplitude $${i_C}$$ decreases
Answer :   amplitude $${i_C}$$ increases
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55. A transformer is used to light a $$100\,W$$  and $$110\,V$$  lamp from a $$220\,V$$  mains. If the main current is $$0.5\,A,$$  the efficiency of the transformer is approximately

A $$30\% $$
B $$50\% $$
C $$90\% $$
D $$10\% $$
Answer :   $$90\% $$
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56. The primary of a winding transformer has $$400$$  turns while the secondary has $$2000$$  turns. If the power output from the secondary at $$1000\,V$$  is $$12\,kW,$$  what is the primary voltage?

A $$200\,V$$
B $$300\,V$$
C $$400\,V$$
D $$500\,V$$
Answer :   $$200\,V$$
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57. The magnetic field of a plane electromagnetic wave is given by :
$$\vec B = {B_0}\hat i\left[ {\cos \left( {kz - \omega t} \right)} \right] + {B_1}\hat j\cos \left( {kz + \omega t} \right)$$
Where $${B_0} = 3 \times {10^{ - 5}}T$$    and $${B_1} = 2 \times {10^{ - 6}}T.$$
The $$rms$$  value of the force experienced by a stationary charge $$Q = {10^{ - 4}}C$$   at $$z = 0$$  is closest to:

A $$0.6 N$$
B $$0.1 N$$
C $$0.9 N$$
D $$3 \times {10^{ - 2}}N$$
Answer :   $$0.6 N$$
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58. If $${i_1} = 3\sin \omega t$$   and $${i_2} = 4\cos \omega t,$$   then $${i_3}$$ is
Alternating Current mcq question image

A $$5\sin \left( {\omega t + {{53}^ \circ }} \right)$$
B $$5\sin \left( {\omega t + {{37}^ \circ }} \right)$$
C $$5\sin \left( {\omega t + {{45}^ \circ }} \right)$$
D $$5\cos \left( {\omega t + {{53}^ \circ }} \right)$$
Answer :   $$5\sin \left( {\omega t + {{53}^ \circ }} \right)$$
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59. Figure shows one cycle of an alternating current with the segments $$AB, BC, CD, DE$$    being symmetrical and parabolic. The root mean square value of this current over one cycle is $$x\,mA,$$  find $$x.$$
Alternating Current mcq question image

A $$1\,mA$$
B $$2\,mA$$
C $$3\,mA$$
D $$4\,mA$$
Answer :   $$1\,mA$$
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60. In the circuit shown, the symbols have their usual meanings, The cell has emf $$E.X$$  is initially joined to $$Y$$ for a long time. Then, $$X$$ is joined to $$Z.$$ The maximum charge on $$C$$ at any later time will be
Alternating Current mcq question image

A $$\frac{E}{{R\sqrt {LC} }}$$
B $$\frac{{ER}}{{2\sqrt {LC} }}$$
C $$\frac{{E\sqrt {LC} }}{{2R}}$$
D $$\frac{{E\sqrt {LC} }}{R}$$
Answer :   $$\frac{{E\sqrt {LC} }}{R}$$
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