1
GATE EE 2007
MCQ (Single Correct Answer)
+2
-0.6
The integral $$\,\,{1 \over {2\pi }}\int\limits_0^{2\Pi } {Sin\left( {t - \tau } \right)\cos \tau \,d\tau \,\,\,} $$ equals
A
$$Sin\,t\cos t$$
B
$$0$$
C
$${1 \over 2}\,\,\cos \,t$$
D
$${1 \over 2}\,\,\sin \,t$$
2
GATE EE 2007
MCQ (Single Correct Answer)
+1
-0.3
Divergence of the vector field $$v\left( {x,y,z} \right) = - \left( {x\,\cos xy + y} \right)\widehat i + \left( {y\,\cos xy} \right)\widehat j + \left[ {\left( {\sin {z^2}} \right) + {x^2} + {y^2}} \right]\widehat k\,\,$$
A
$$2z\,\cos {z^2}$$
B
$$\,\sin \,xy + 2z\,\cos {z^2}$$
C
$$x\,\sin xy - \cos z$$
D
none of these
3
GATE EE 2007
MCQ (Single Correct Answer)
+1
-0.3
A single $$-$$ phase fully controlled thyristor bridge $$ac$$ $$-$$ $$dc$$ converter is operating at a firing angle of $${25^ \circ }$$ and an overlap angle of $${10^ \circ }$$ constant $$dc$$ output current of $$20$$ $$A$$. The fundamental power factor (displacement factor) at input $$ac$$ mains is
A
$$0.78$$
B
$$0.827$$
C
$$0.866$$
D
$$0.9$$
4
GATE EE 2007
MCQ (Single Correct Answer)
+1
-0.3
A single phase full $$-$$ wave half $$-$$ controlled bridge converter feeds an inductive load. The two $$SCR's$$ in the converter are connected to a common $$DC$$ bus. The converter has to have a free wheeling diode
A
because the converter inherently does not provide for free - wheeling
B
because the converter does not provide for free - wheeling for high values of triggering angles
C
or else the free - wheeling action of the converter will cause shorting of the $$AC$$ triggering angles
D
or else if a gate pulse to one of the $$SCR$$s is missed, it will subsequently cause a high load current in the other $$SCR$$.
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