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

151376 A NOR gate and a NAND gate are connected as shown in the figure. Two different sets of inputs are given to this setup. In the first case, the inputs to the gates are \(\mathbf{A}=0, \mathrm{~B}=0, \mathrm{C}=0\). In the second case, the inputs are \(A=1, B=0\), \(C=1\). The output \(D\) in the first case and second case respectively are
original image

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

151378 Which type of gate the following truth table represents?
{|c|c|c|}
| { Input } Output\)|
|---|
\( \(\) \(\) \(\)\)
\( 0 0 1\)
\( 0 1 1\)
\( 1 0 1\)
\( 1 1 0\)
\(

1 NOT
2 AND
3 OR
4 NAND
Semiconductor Electronics Material Devices and Simple Circuits

151379 To write the decimal number 37 in binary, how many binary digits are required?

1 5
2 6
3 7
4 4
Semiconductor Electronics Material Devices and Simple Circuits

151383 Which logic gates mentioned below have the output value ' 0 ' when both the inputs are ' 1 '

1 OR, NAND
2 AND, NOR
3 AND, OR
4 NOR, NAND
Semiconductor Electronics Material Devices and Simple Circuits

151384 The behavior of the circuit is like gate
original image

1 \(\mathrm{OR}\)
2 NOR
3 NAND
4 AND
Semiconductor Electronics Material Devices and Simple Circuits

151376 A NOR gate and a NAND gate are connected as shown in the figure. Two different sets of inputs are given to this setup. In the first case, the inputs to the gates are \(\mathbf{A}=0, \mathrm{~B}=0, \mathrm{C}=0\). In the second case, the inputs are \(A=1, B=0\), \(C=1\). The output \(D\) in the first case and second case respectively are
original image

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

151378 Which type of gate the following truth table represents?
{|c|c|c|}
| { Input } Output\)|
|---|
\( \(\) \(\) \(\)\)
\( 0 0 1\)
\( 0 1 1\)
\( 1 0 1\)
\( 1 1 0\)
\(

1 NOT
2 AND
3 OR
4 NAND
Semiconductor Electronics Material Devices and Simple Circuits

151379 To write the decimal number 37 in binary, how many binary digits are required?

1 5
2 6
3 7
4 4
Semiconductor Electronics Material Devices and Simple Circuits

151383 Which logic gates mentioned below have the output value ' 0 ' when both the inputs are ' 1 '

1 OR, NAND
2 AND, NOR
3 AND, OR
4 NOR, NAND
Semiconductor Electronics Material Devices and Simple Circuits

151384 The behavior of the circuit is like gate
original image

1 \(\mathrm{OR}\)
2 NOR
3 NAND
4 AND
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Semiconductor Electronics Material Devices and Simple Circuits

151376 A NOR gate and a NAND gate are connected as shown in the figure. Two different sets of inputs are given to this setup. In the first case, the inputs to the gates are \(\mathbf{A}=0, \mathrm{~B}=0, \mathrm{C}=0\). In the second case, the inputs are \(A=1, B=0\), \(C=1\). The output \(D\) in the first case and second case respectively are
original image

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

151378 Which type of gate the following truth table represents?
{|c|c|c|}
| { Input } Output\)|
|---|
\( \(\) \(\) \(\)\)
\( 0 0 1\)
\( 0 1 1\)
\( 1 0 1\)
\( 1 1 0\)
\(

1 NOT
2 AND
3 OR
4 NAND
Semiconductor Electronics Material Devices and Simple Circuits

151379 To write the decimal number 37 in binary, how many binary digits are required?

1 5
2 6
3 7
4 4
Semiconductor Electronics Material Devices and Simple Circuits

151383 Which logic gates mentioned below have the output value ' 0 ' when both the inputs are ' 1 '

1 OR, NAND
2 AND, NOR
3 AND, OR
4 NOR, NAND
Semiconductor Electronics Material Devices and Simple Circuits

151384 The behavior of the circuit is like gate
original image

1 \(\mathrm{OR}\)
2 NOR
3 NAND
4 AND
Semiconductor Electronics Material Devices and Simple Circuits

151376 A NOR gate and a NAND gate are connected as shown in the figure. Two different sets of inputs are given to this setup. In the first case, the inputs to the gates are \(\mathbf{A}=0, \mathrm{~B}=0, \mathrm{C}=0\). In the second case, the inputs are \(A=1, B=0\), \(C=1\). The output \(D\) in the first case and second case respectively are
original image

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

151378 Which type of gate the following truth table represents?
{|c|c|c|}
| { Input } Output\)|
|---|
\( \(\) \(\) \(\)\)
\( 0 0 1\)
\( 0 1 1\)
\( 1 0 1\)
\( 1 1 0\)
\(

1 NOT
2 AND
3 OR
4 NAND
Semiconductor Electronics Material Devices and Simple Circuits

151379 To write the decimal number 37 in binary, how many binary digits are required?

1 5
2 6
3 7
4 4
Semiconductor Electronics Material Devices and Simple Circuits

151383 Which logic gates mentioned below have the output value ' 0 ' when both the inputs are ' 1 '

1 OR, NAND
2 AND, NOR
3 AND, OR
4 NOR, NAND
Semiconductor Electronics Material Devices and Simple Circuits

151384 The behavior of the circuit is like gate
original image

1 \(\mathrm{OR}\)
2 NOR
3 NAND
4 AND
Semiconductor Electronics Material Devices and Simple Circuits

151376 A NOR gate and a NAND gate are connected as shown in the figure. Two different sets of inputs are given to this setup. In the first case, the inputs to the gates are \(\mathbf{A}=0, \mathrm{~B}=0, \mathrm{C}=0\). In the second case, the inputs are \(A=1, B=0\), \(C=1\). The output \(D\) in the first case and second case respectively are
original image

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

151378 Which type of gate the following truth table represents?
{|c|c|c|}
| { Input } Output\)|
|---|
\( \(\) \(\) \(\)\)
\( 0 0 1\)
\( 0 1 1\)
\( 1 0 1\)
\( 1 1 0\)
\(

1 NOT
2 AND
3 OR
4 NAND
Semiconductor Electronics Material Devices and Simple Circuits

151379 To write the decimal number 37 in binary, how many binary digits are required?

1 5
2 6
3 7
4 4
Semiconductor Electronics Material Devices and Simple Circuits

151383 Which logic gates mentioned below have the output value ' 0 ' when both the inputs are ' 1 '

1 OR, NAND
2 AND, NOR
3 AND, OR
4 NOR, NAND
Semiconductor Electronics Material Devices and Simple Circuits

151384 The behavior of the circuit is like gate
original image

1 \(\mathrm{OR}\)
2 NOR
3 NAND
4 AND