1
GATE EE 1999
MCQ (Single Correct Answer)
+1
-0.3
For the circuit shown in Figure, the capacitance measured between terminals $$B$$ and $$Y$$ will be GATE EE 1999 Electric Circuits - Network Elements Question 43 English
A
$${C_C} + \left( {{C_S}/2} \right)$$
B
$${C_S} + \left( {{C_c}/2} \right)$$
C
$$\left( {{C_S} + 3{C_c}} \right)/2$$
D
$$3{C_c} + 2{C_s}$$
2
GATE EE 1999
Subjective
+5
-0
Solve the circuit shown in Fig. using the mesh method of analysis and determine the mesh currents $${{\rm I}_1},\,{{\rm I}_2},$$ and $${{\rm I}_3}$$. Evaluate the power developed in the $$10$$ $$V$$ voltage source. GATE EE 1999 Electric Circuits - Network Elements Question 25 English
3
GATE EE 1999
MCQ (Single Correct Answer)
+2
-0.6
Currents $${{\rm I}_1},\,{{\rm I}_2}$$ and $${{\rm I}_3}$$ meet at a junction (node) in a circuit. All currents are marked as entering the node. If $${{\rm I}_1} = - 6\sin \left( {\omega t} \right)$$ $$mA$$ and $${{\rm I}_2} = 8\cos \,\left( {\omega t} \right)\,mA,$$ then $${{\rm I}_3}$$ will be
A
$$10\,\cos \,\left( {\omega t + 36.87} \right)mA.$$
B
$$14\,\cos \,\left( {\omega t + 36.87} \right)mA.$$
C
$$-14\,\sin \,\left( {\omega t + 36.87} \right)mA.$$
D
$$-10\,\cos \,\left( {\omega t + 36.87} \right)mA.$$
4
GATE EE 1999
MCQ (Single Correct Answer)
+1
-0.3
A series $$R-L-C$$ circuit when excited by a $$10$$ $$V$$ sinusoidal voltage source of variable frequency, exhibits resonance at $$100$$ $$Hz$$ and has a $$3$$ $$dB$$ bandwidth of $$5$$ $$Hz.$$ The voltage across the inductor $$L$$ at resonace is

A
$$10$$ $$V$$
B
$$10\sqrt 2 V$$
C
$$10/\sqrt 2 V$$
D
$$200$$ $$V$$