Digital Electronics, Logic gates and Digital Circuit
Semiconductor Electronics Material Devices and Simple Circuits

151273 The value of \(Y_1\) and \(Y_2\), respectively in the following logic circuit if both \(A\) and \(B\) are 1 .
original image

1 1,1
2 1,0
3 0,1
4 0,0
Semiconductor Electronics Material Devices and Simple Circuits

151274 Match the following list I with List II.
{|l|l|l|l|}
| { List I } {c|}{ List II }\)|
|---|---|
\( (A) {l}
Small Scale\)
\(integration (SSI) (i) Logic gates \( \lt 100\)\)
\(\hline (B) {l}
|Medium Scale\)|
|---|
\(integration (MSI) (ii) Logic gates \(>1000\)\)
\(\hline (C) {l}
|Large Scale\)|
|---|
\(integration (LSI) (iii) Logic gates \(\leq 10\)\)
\(\hline (D) {l}
|Very Large Scale\)|
|---|
\(Integration (VLSI) (iv) Logic gates \( \lt 1000\)\)
\(\hline
\end{tabular}
The correct answer is
A B C D

1 (i) (iii) (i) (iv)
2 (iv) (i) (ii) (iii)
3 (i) (iv) (iii) (ii)
4 (iii) (i) (iv) (ii)
Semiconductor Electronics Material Devices and Simple Circuits

151275 For the combination of logic gates shown in the figure, the equivalent logic gate is
original image

1 AND
2 NOT
3 NAND
4 NOR
Semiconductor Electronics Material Devices and Simple Circuits

151276 For given logic diagram, output \(F=1\), then inputs are
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151273 The value of \(Y_1\) and \(Y_2\), respectively in the following logic circuit if both \(A\) and \(B\) are 1 .
original image

1 1,1
2 1,0
3 0,1
4 0,0
Semiconductor Electronics Material Devices and Simple Circuits

151274 Match the following list I with List II.
{|l|l|l|l|}
| { List I } {c|}{ List II }\)|
|---|---|
\( (A) {l}
Small Scale\)
\(integration (SSI) (i) Logic gates \( \lt 100\)\)
\(\hline (B) {l}
|Medium Scale\)|
|---|
\(integration (MSI) (ii) Logic gates \(>1000\)\)
\(\hline (C) {l}
|Large Scale\)|
|---|
\(integration (LSI) (iii) Logic gates \(\leq 10\)\)
\(\hline (D) {l}
|Very Large Scale\)|
|---|
\(Integration (VLSI) (iv) Logic gates \( \lt 1000\)\)
\(\hline
\end{tabular}
The correct answer is
A B C D

1 (i) (iii) (i) (iv)
2 (iv) (i) (ii) (iii)
3 (i) (iv) (iii) (ii)
4 (iii) (i) (iv) (ii)
Semiconductor Electronics Material Devices and Simple Circuits

151275 For the combination of logic gates shown in the figure, the equivalent logic gate is
original image

1 AND
2 NOT
3 NAND
4 NOR
Semiconductor Electronics Material Devices and Simple Circuits

151276 For given logic diagram, output \(F=1\), then inputs are
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151273 The value of \(Y_1\) and \(Y_2\), respectively in the following logic circuit if both \(A\) and \(B\) are 1 .
original image

1 1,1
2 1,0
3 0,1
4 0,0
Semiconductor Electronics Material Devices and Simple Circuits

151274 Match the following list I with List II.
{|l|l|l|l|}
| { List I } {c|}{ List II }\)|
|---|---|
\( (A) {l}
Small Scale\)
\(integration (SSI) (i) Logic gates \( \lt 100\)\)
\(\hline (B) {l}
|Medium Scale\)|
|---|
\(integration (MSI) (ii) Logic gates \(>1000\)\)
\(\hline (C) {l}
|Large Scale\)|
|---|
\(integration (LSI) (iii) Logic gates \(\leq 10\)\)
\(\hline (D) {l}
|Very Large Scale\)|
|---|
\(Integration (VLSI) (iv) Logic gates \( \lt 1000\)\)
\(\hline
\end{tabular}
The correct answer is
A B C D

1 (i) (iii) (i) (iv)
2 (iv) (i) (ii) (iii)
3 (i) (iv) (iii) (ii)
4 (iii) (i) (iv) (ii)
Semiconductor Electronics Material Devices and Simple Circuits

151275 For the combination of logic gates shown in the figure, the equivalent logic gate is
original image

1 AND
2 NOT
3 NAND
4 NOR
Semiconductor Electronics Material Devices and Simple Circuits

151276 For given logic diagram, output \(F=1\), then inputs are
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151273 The value of \(Y_1\) and \(Y_2\), respectively in the following logic circuit if both \(A\) and \(B\) are 1 .
original image

1 1,1
2 1,0
3 0,1
4 0,0
Semiconductor Electronics Material Devices and Simple Circuits

151274 Match the following list I with List II.
{|l|l|l|l|}
| { List I } {c|}{ List II }\)|
|---|---|
\( (A) {l}
Small Scale\)
\(integration (SSI) (i) Logic gates \( \lt 100\)\)
\(\hline (B) {l}
|Medium Scale\)|
|---|
\(integration (MSI) (ii) Logic gates \(>1000\)\)
\(\hline (C) {l}
|Large Scale\)|
|---|
\(integration (LSI) (iii) Logic gates \(\leq 10\)\)
\(\hline (D) {l}
|Very Large Scale\)|
|---|
\(Integration (VLSI) (iv) Logic gates \( \lt 1000\)\)
\(\hline
\end{tabular}
The correct answer is
A B C D

1 (i) (iii) (i) (iv)
2 (iv) (i) (ii) (iii)
3 (i) (iv) (iii) (ii)
4 (iii) (i) (iv) (ii)
Semiconductor Electronics Material Devices and Simple Circuits

151275 For the combination of logic gates shown in the figure, the equivalent logic gate is
original image

1 AND
2 NOT
3 NAND
4 NOR
Semiconductor Electronics Material Devices and Simple Circuits

151276 For given logic diagram, output \(F=1\), then inputs are
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=1\)