Boolean Algebra
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365159 The value of \(\bar A \cdot A\) in Bollean algebra is

1 \(A\)
2 \({\bar A}\)
3 \(0\)
4 \(1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365160 If \(A = B = 1\), then in terms of Boolean algebra the value of \(A.B + A\) is not equal to

1 \(B.A + B\)
2 \(B + A\)
3 \(B\)
4 \(\overline A \, \cdot B\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365161 In a certain oscillator \({A_V} = 50.\) The attenuation of the feedback circuit must be

1 \(1\)
2 \(0.01\)
3 \(10\)
4 \(0.02\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365162 In the Boolean algebra, which gate is expressed as \(Y = \overline {A + B} \)

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

365163 The Boolean algebra uses

1 two digits 0 and 1
2 two digits 1 and 2
3 two digits 0 and 2
4 10 digits 0, 1, 2, 3, 4, 5, 6, 7, 8, 9.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365159 The value of \(\bar A \cdot A\) in Bollean algebra is

1 \(A\)
2 \({\bar A}\)
3 \(0\)
4 \(1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365160 If \(A = B = 1\), then in terms of Boolean algebra the value of \(A.B + A\) is not equal to

1 \(B.A + B\)
2 \(B + A\)
3 \(B\)
4 \(\overline A \, \cdot B\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365161 In a certain oscillator \({A_V} = 50.\) The attenuation of the feedback circuit must be

1 \(1\)
2 \(0.01\)
3 \(10\)
4 \(0.02\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365162 In the Boolean algebra, which gate is expressed as \(Y = \overline {A + B} \)

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

365163 The Boolean algebra uses

1 two digits 0 and 1
2 two digits 1 and 2
3 two digits 0 and 2
4 10 digits 0, 1, 2, 3, 4, 5, 6, 7, 8, 9.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365159 The value of \(\bar A \cdot A\) in Bollean algebra is

1 \(A\)
2 \({\bar A}\)
3 \(0\)
4 \(1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365160 If \(A = B = 1\), then in terms of Boolean algebra the value of \(A.B + A\) is not equal to

1 \(B.A + B\)
2 \(B + A\)
3 \(B\)
4 \(\overline A \, \cdot B\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365161 In a certain oscillator \({A_V} = 50.\) The attenuation of the feedback circuit must be

1 \(1\)
2 \(0.01\)
3 \(10\)
4 \(0.02\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365162 In the Boolean algebra, which gate is expressed as \(Y = \overline {A + B} \)

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

365163 The Boolean algebra uses

1 two digits 0 and 1
2 two digits 1 and 2
3 two digits 0 and 2
4 10 digits 0, 1, 2, 3, 4, 5, 6, 7, 8, 9.
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365159 The value of \(\bar A \cdot A\) in Bollean algebra is

1 \(A\)
2 \({\bar A}\)
3 \(0\)
4 \(1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365160 If \(A = B = 1\), then in terms of Boolean algebra the value of \(A.B + A\) is not equal to

1 \(B.A + B\)
2 \(B + A\)
3 \(B\)
4 \(\overline A \, \cdot B\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365161 In a certain oscillator \({A_V} = 50.\) The attenuation of the feedback circuit must be

1 \(1\)
2 \(0.01\)
3 \(10\)
4 \(0.02\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365162 In the Boolean algebra, which gate is expressed as \(Y = \overline {A + B} \)

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

365163 The Boolean algebra uses

1 two digits 0 and 1
2 two digits 1 and 2
3 two digits 0 and 2
4 10 digits 0, 1, 2, 3, 4, 5, 6, 7, 8, 9.
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365159 The value of \(\bar A \cdot A\) in Bollean algebra is

1 \(A\)
2 \({\bar A}\)
3 \(0\)
4 \(1\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365160 If \(A = B = 1\), then in terms of Boolean algebra the value of \(A.B + A\) is not equal to

1 \(B.A + B\)
2 \(B + A\)
3 \(B\)
4 \(\overline A \, \cdot B\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365161 In a certain oscillator \({A_V} = 50.\) The attenuation of the feedback circuit must be

1 \(1\)
2 \(0.01\)
3 \(10\)
4 \(0.02\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365162 In the Boolean algebra, which gate is expressed as \(Y = \overline {A + B} \)

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

365163 The Boolean algebra uses

1 two digits 0 and 1
2 two digits 1 and 2
3 two digits 0 and 2
4 10 digits 0, 1, 2, 3, 4, 5, 6, 7, 8, 9.