semiconductor unit-1

semiconductor unit-1

University

50 Qs

quiz-placeholder

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semiconductor unit-1

semiconductor unit-1

Assessment

Quiz

Physics

University

Hard

Created by

Devesh Talatule

Used 2+ times

FREE Resource

50 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

The intrinsic carrier density is 1.5 × 10^16 m^-3 . If the mobility of electron and hole are 0.13 and 0.05 m^2 v^-1 s^-1 . Calculate the conductivity

4.32 × 10^-4 ohm^-1 m^-1

4.60 × 10^-5 ohm^-1 m^-1

5.00 × 10^6 ohm^-1 m^-1

2.24 × 10^3 ohm^-1 m^-1

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In a forward bias P-N junction diode which of the following is correct


It has high resistance

Current flow due to minority charge carrier

Current flowing through diode is small

It has low resistance

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Which of the following is a characteristics of a zener diode?

It consist in forward bias only

It has a sharp breakdown voltage in reverse bias

It has high forward voltage drop

It is not used for voltage regulation

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Applications of zener diode are

  1. 1. voltage regulater

  2. 2. for meter protection

3.rectifier

4.signal diode in communication circuit

5.reference diode in transister circuit

1,2,4

only 2 and 4

1,2,5

only1

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In a Semiconductor the number density of intrinsic charge carriers at 27℃ is 1.5 × 10^16 m^-3 . If the semiconductor is doped with an impurity atom then the hole density increase to 4.5 × 10^22 m^-3 . The electron density in the doped semiconductor is

5 × 10^9 m^-3

6 × 10^9 m^-3

0.05 × 10^9 m^-3

0.5 × 10^-11 m^-3

6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In which semiconductor electrons are majority charge carriers and holes are minority charge carriers

Intrinsic semiconductor

P-Type

Extrinsic semiconductor

N-type

7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In which breakdown mechanism the electric field is weak or not strong enough and why

In field ionaisation, due to lightly doped junction

In impact ionaisation, due to lightly doped junction

In field ionaisation, collision of electron and host atom

In impact ionaisation, due to collision

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