1
JEE Main 2026 (Online) 6th April Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Refer to the logic circuit given below. For two inputs ( $A=1, B=1$ ) and ( $A=0, B=1$ ), output ( Y ) will be $\_\_\_\_$ .

JEE Main 2026 (Online) 6th April Evening Shift Physics - Semiconductor Question 8 English
A

1, 0 respectively

B

0, 1 respectively

C

0, 0 respectively

D

1, 1 respectively

2
JEE Main 2026 (Online) 6th April Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

The maximum rated power of the LED is 2 mW and it is used in the circuit with input voltage of 5 V as shown in the figure below. The current through resistance $R_S$ is 0.5 mA .

The minimum value of the resistance of $R_S$, to ensure that the LED is not damaged is $\_\_\_\_$ $\mathrm{k} \Omega$.

JEE Main 2026 (Online) 6th April Morning Shift Physics - Semiconductor Question 2 English
A

6

B

2

C

4

D

5

3
JEE Main 2026 (Online) 5th April Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

In a semiconductor $p$-n diode, the doping concentrations on $p$-side and $n$-side are $10^{15}$ atoms $/ \mathrm{cm}^3$ and $10^{18}$ atoms $/ \mathrm{cm}^3$, respectively. Which one of the following statements is true?

A

Widths of depletion region on either side of the interface are equal

B

The depletion region width is more on p -side compared to that in n -side

C

The depletion region width is more on $n$-side compared to that in $p$-side

D

No depletion region forms because of unequal doping concentrations on p and n -sides

4
JEE Main 2026 (Online) 5th April Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

For the given logic circuit, which of the following inputs combination will make both LED-1 and LED-2 to glow?

JEE Main 2026 (Online) 5th April Morning Shift Physics - Semiconductor Question 4 English
A

$$ \mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=1 $$

B

$$ \mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=0 $$

C

$$ \mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=1 $$

D

$$ \mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=0 $$

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