1
GATE EE 2001
MCQ (Single Correct Answer)
+2
-0.6
An Intel $$8085$$ processor is executing the program given below.
$$\eqalign{ & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,MVIA,\,\,10H \cr & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,MVIB,\,\,10H \cr & BACK:\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,NOP \cr & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,ADD\,\,B \cr & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,RLC \cr & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,JNC\,\,BACK \cr & \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,HLT \cr} $$

The number of times that the operation $$NOP$$ will be executed is equal to

A
$$1$$
B
$$2$$
C
$$3$$
D
$$4$$
2
GATE EE 2001
MCQ (Single Correct Answer)
+1
-0.3
Two incandescent light bulbs of $$40$$ $$W$$ and $$60$$ $$W$$ rating are connected in series across the mains. Then
A
the bulbs together consume $$100$$ $$W$$
B
the bulbs together consume $$50$$ $$W$$
C
the $$60$$ $$W$$ bulbs glows brighter
D
the $$40$$ $$W$$ bulb glows brighter
3
GATE EE 2001
MCQ (Single Correct Answer)
+1
-0.3
Given two coupled inductors $${L_1}$$ and $${L_2}$$, their mutual inductance $$M$$ satisfies
A
$$M = \sqrt {L_1^2 + L_2^2} $$
B
$$M > {{\left( {{L_1} + {L_2}} \right)} \over 2}$$
C
$$M > \sqrt {{L_1}\,{L_2}} $$
D
$$M \le \sqrt {{L_1}{L_2}} $$
4
GATE EE 2001
MCQ (Single Correct Answer)
+2
-0.6
Consider the star network shown in Fig. The resistance between terminals $$A$$ and $$B$$ with $$C$$ open is $$6\,\Omega ,$$ between terminals $$B$$ and $$C$$ with $$A$$ open is $$11\,\Omega ,$$ and between terminals $$C$$ and $$A$$ with $$B$$ open is $$9\,\Omega $$ . The values of $${R_A},\,\,{R_B},\,\,{R_C}$$ are: GATE EE 2001 Electric Circuits - Network Elements Question 22 English
A
$${R_A} = 4\,\Omega ,\,\,{R_B} = 2\,\Omega ,\,\,{R_C} = 5\,\Omega $$
B
$${R_A} = 2\,\Omega ,\,\,{R_B} = 4\,\Omega ,\,\,{R_C} = 7\,\Omega $$
C
$${R_A} = 3\,\Omega ,\,\,{R_B} = 3\,\Omega ,\,\,{R_C} = 4\,\Omega $$
D
$${R_A} = 5\,\Omega ,\,\,{R_B} = 1\,\Omega ,\,\,{R_C} = 10\,\Omega $$
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