Logic Gates
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365232 The circuit is equivalent to
supporting img

1 AND gate
2 NAND gate
3 NOR gate
4 OR gate
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365233 In the following combinations of logic gates, the outputs of \(A\), \(B\) and \(C\) are respectively
supporting img

1 \(0,1,1\)
2 \(0,1,0\)
3 \(1,1,0\)
4 \(1,0,1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365234 The output of a 2-input OR gate is zero only when its

1 Both inputs are 0
2 Either input is 1
3 Both inputs are 1
4 Either input is zero.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365235 The truth table given below is for (\({A\,\& B}\) are the inputs and \(Y\) is the output)
supporting img

1 NOR
2 AND
3 \(\mathrm{XOR}\)
4 NAND
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365236 In the logic circuit diagram, \(A, B\) and \(C\) are the inputs, \(Y\) is the output. The output \(Y\) is 'HIGH'.
supporting img

1 For all the inputs 'LOW'.
2 when \(A=1, B=0, C=0\)
3 when \(A=1, B=0, C=1\)
4 for all inputs 'HIGH'.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365232 The circuit is equivalent to
supporting img

1 AND gate
2 NAND gate
3 NOR gate
4 OR gate
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365233 In the following combinations of logic gates, the outputs of \(A\), \(B\) and \(C\) are respectively
supporting img

1 \(0,1,1\)
2 \(0,1,0\)
3 \(1,1,0\)
4 \(1,0,1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365234 The output of a 2-input OR gate is zero only when its

1 Both inputs are 0
2 Either input is 1
3 Both inputs are 1
4 Either input is zero.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365235 The truth table given below is for (\({A\,\& B}\) are the inputs and \(Y\) is the output)
supporting img

1 NOR
2 AND
3 \(\mathrm{XOR}\)
4 NAND
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365236 In the logic circuit diagram, \(A, B\) and \(C\) are the inputs, \(Y\) is the output. The output \(Y\) is 'HIGH'.
supporting img

1 For all the inputs 'LOW'.
2 when \(A=1, B=0, C=0\)
3 when \(A=1, B=0, C=1\)
4 for all inputs 'HIGH'.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365232 The circuit is equivalent to
supporting img

1 AND gate
2 NAND gate
3 NOR gate
4 OR gate
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365233 In the following combinations of logic gates, the outputs of \(A\), \(B\) and \(C\) are respectively
supporting img

1 \(0,1,1\)
2 \(0,1,0\)
3 \(1,1,0\)
4 \(1,0,1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365234 The output of a 2-input OR gate is zero only when its

1 Both inputs are 0
2 Either input is 1
3 Both inputs are 1
4 Either input is zero.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365235 The truth table given below is for (\({A\,\& B}\) are the inputs and \(Y\) is the output)
supporting img

1 NOR
2 AND
3 \(\mathrm{XOR}\)
4 NAND
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365236 In the logic circuit diagram, \(A, B\) and \(C\) are the inputs, \(Y\) is the output. The output \(Y\) is 'HIGH'.
supporting img

1 For all the inputs 'LOW'.
2 when \(A=1, B=0, C=0\)
3 when \(A=1, B=0, C=1\)
4 for all inputs 'HIGH'.
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365232 The circuit is equivalent to
supporting img

1 AND gate
2 NAND gate
3 NOR gate
4 OR gate
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365233 In the following combinations of logic gates, the outputs of \(A\), \(B\) and \(C\) are respectively
supporting img

1 \(0,1,1\)
2 \(0,1,0\)
3 \(1,1,0\)
4 \(1,0,1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365234 The output of a 2-input OR gate is zero only when its

1 Both inputs are 0
2 Either input is 1
3 Both inputs are 1
4 Either input is zero.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365235 The truth table given below is for (\({A\,\& B}\) are the inputs and \(Y\) is the output)
supporting img

1 NOR
2 AND
3 \(\mathrm{XOR}\)
4 NAND
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365236 In the logic circuit diagram, \(A, B\) and \(C\) are the inputs, \(Y\) is the output. The output \(Y\) is 'HIGH'.
supporting img

1 For all the inputs 'LOW'.
2 when \(A=1, B=0, C=0\)
3 when \(A=1, B=0, C=1\)
4 for all inputs 'HIGH'.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365232 The circuit is equivalent to
supporting img

1 AND gate
2 NAND gate
3 NOR gate
4 OR gate
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365233 In the following combinations of logic gates, the outputs of \(A\), \(B\) and \(C\) are respectively
supporting img

1 \(0,1,1\)
2 \(0,1,0\)
3 \(1,1,0\)
4 \(1,0,1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365234 The output of a 2-input OR gate is zero only when its

1 Both inputs are 0
2 Either input is 1
3 Both inputs are 1
4 Either input is zero.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365235 The truth table given below is for (\({A\,\& B}\) are the inputs and \(Y\) is the output)
supporting img

1 NOR
2 AND
3 \(\mathrm{XOR}\)
4 NAND
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365236 In the logic circuit diagram, \(A, B\) and \(C\) are the inputs, \(Y\) is the output. The output \(Y\) is 'HIGH'.
supporting img

1 For all the inputs 'LOW'.
2 when \(A=1, B=0, C=0\)
3 when \(A=1, B=0, C=1\)
4 for all inputs 'HIGH'.