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GATE EE 2015 Set 1
Numerical
+1
-0
For the given circuit the Thevenin equivalent is to be determined. The Thevenin voltage, VTh (in volt), seen from terminal AB is _________. GATE EE 2015 Set 1 Electric Circuits - Network Theorems Question 28 English
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2
GATE EE 2015 Set 1
MCQ (Single Correct Answer)
+1
-0.3
An inductor is connected in parallel with a capacitor as shown in the figure. GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 59 English As the frequency of current i is increased, the impedance (Z) of the network varies as
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GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 59 English Option 1
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GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 59 English Option 2
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GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 59 English Option 3
D
GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 59 English Option 4
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GATE EE 2015 Set 1
Numerical
+2
-0
The circuit shown in the figure has two sources connected in series. The instantaneous voltage of the AC source (in volt) is given by v(t) = 12sint. If the circuit is in steady-state, then the rms value of the current (in Ampere) flowing in the circuit is ______. GATE EE 2015 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 48 English
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4
GATE EE 2015 Set 1
Numerical
+2
-0
In a linear two-port network, when 10 V is applied to Port 1, a current of 4 A flows through Port 2 when it is short-circuited. When 5V is applied to Port1, a current of 1.25 A flows through a 1 Ω resistance connected across Port 2. When 3V is applied to Port 1, then current (in Ampere) through a 2 Ω resistance connected across Port 2 is _________.
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