For the given combination of gates, if the logic states of inputs A, B, C are as follows A=B=C=0, and A =B=1, C=0 then the logic states of output D are:
1. 0, 0
2. 0, 1
3. 1, 0
4. 1, 1
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In the network shown, the current flowing through the battery of negligible internal resistance is:
1. 0.10 A
2. 0.15 A
3. 0.20 A
4. 0.30 A
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This symbol represents:
1. NOT gate
2. OR gate
3. AND gate
4. NOR gate
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In figure assuming the diodes to be ideal:
1. is forward biased and is reverse biased and hence current flows from A to B
2. is reverse biased and is forward biased and hence no current flows from B to A and vice-versa
3. are both forward biased and hence current flows from A to B
4. are both reverse biased and hence no current flows from A to B and vice-versa.
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The conductivity of a semiconductor increases with an increase in temperature because:
1. number density of free current carriers increases
2. relaxation time increases
3. both number density of carriers and relaxation time increase
4. number density of carriers increases, relaxation time decreases but the effect of decrease in relaxation time is much less than the increase in number density
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A 220 V AC supply is connected between points A and B (figure). What will be the potential difference V across the capacitor?
1. 220 V
2. 110 V
3. 0 V
4. V
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Write the name of the following gate that the circuit shown in figure.
1. AND gate
2. OR gate
3. NOr gate
4. XOR gate
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The reverse bias in a junction diode is changed from 8 V to 13 V, then the value of the current changes from . The resistance of the junction diode will be:
1.
2.
3.
4.
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A semiconductor device is connected in a series circuit with a battery and a resistance. A current is found to pass through the circuit. If the polarity of the battery is reversed, the current drops almost to zero. The device may be:
1. a p-type semiconductor
2. an n-type semiconductor
3. a p-n junction
4. an intrinsic semiconductor
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If in a p-n junction diode, a square input signal of 10 V is applied as shown
Then the output signal across will be
1.
2.
3.
4.
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