1
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
Alternating current can not be measured by $$D.C.$$ ammeter because
A
Average value of current for complete cycle is zero
B
$$A.C.$$ Changes direction
C
$$A.C.$$ can not pass through $$D.C.$$ Ammeter
D
$$D.C.$$ Ammeter will get damaged.
2
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
A coil having $$n$$ turns and resistance $$R\Omega $$ is connected with a galvanometer of resistance $$4R\Omega .$$ This combination is moved in time $$t$$ seconds from a magnetic field $${W_1}$$ weber to $${W_2}$$ weber. The induced current in the circuit is
A
$${{\left( {{W_2} - {W_1}} \right)} \over {Rnt}}$$
B
$$ - {{n\left( {{W_2} - {W_1}} \right)} \over {5\,\,Rt}}$$
C
$$ - {{\left( {{W_2} - {W_1}} \right)} \over {5\,\,Rnt}}$$
D
$$ - {{n\left( {{W_2} - {W_1}} \right)} \over {Rt}}$$
3
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
In a uniform magnetic field of induction $$B$$ a wire in the form of a semicircle of radius $$r$$ rotates about the diameter of the circle with an angular frequency $$\omega .$$ The axis of rotation is perpendicular to the field. If the total resistance of the circuit is $$R,$$ the mean power generated per period of rotation is
A
$${{{{\left( {B\pi r\omega } \right)}^2}} \over {2R}}$$
B
$${{{{\left( {B\pi {r^2}\omega } \right)}^2}} \over {8R}}$$
C
$${{B\pi {r^2}\omega } \over {2R}}$$
D
$${{{{\left( {B\pi r{\omega ^2}} \right)}^2}} \over {8R}}$$
4
AIEEE 2004
MCQ (Single Correct Answer)
+4
-1
In a $$LCR$$ circuit capacitance is changed from $$C$$ to $$2$$ $$C$$. For the resonant frequency to remain unchaged, the inductance should be changed from $$L$$ to
A
$$L/2$$
B
$$2L$$
C
$$4L$$
D
$$L/4$$
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