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Types of Material Semiconductor - Free MCQ Practice Test with solutions,


MCQ Practice Test & Solutions: Test: Types of Material of Semiconductor (10 Questions)

You can prepare effectively for NEET Physics Class 12 with this dedicated MCQ Practice Test (available with solutions) on the important topic of "Test: Types of Material of Semiconductor". These 10 questions have been designed by the experts with the latest curriculum of NEET 2026, to help you master the concept.

Test Highlights:

  • - Format: Multiple Choice Questions (MCQ)
  • - Duration: 10 minutes
  • - Number of Questions: 10

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Test: Types of Material of Semiconductor - Question 1

When a pure semiconductor is heated, its resistance:

Detailed Solution: Question 1

As temperature increases electrons from the valence band go to the conduction band, so conductivity increases hence resistance decreases.

Test: Types of Material of Semiconductor - Question 2

What is the order of forbidden gap in the energy bands of silicon?​

Detailed Solution: Question 2

Silicon has a forbidden gap of 1.1 eV at 300 K temperature.
 

Test: Types of Material of Semiconductor - Question 3

The densities of electrons and holes in an extrinsic semiconductor are 8 x 1015 cm-3 and 5 x 1012 cm-3 respectively. The mobilities of electrons and holes are respectively 23 x 103 cm3 / Vs and 102 cm3 / Vs. Which type of semiconductor is it?​

Detailed Solution: Question 3

It is an N-type semiconductor because the density of electrons is more here.

Test: Types of Material of Semiconductor - Question 4

A semiconductor is formed by:

Detailed Solution: Question 4

  • The electrons surrounding each atom in a semiconductor are part of a covalent bond. A covalent bond consists of two atoms "sharing" a single electron.
  • Each atom forms 4 covalent bonds with the 4 surrounding atoms. Therefore, between each atom and its 4 surrounding atoms, 8 electrons are being shared.

Test: Types of Material of Semiconductor - Question 5

Arrange the materials in ascending order of energy band gaps:

Detailed Solution: Question 5

  • In the case of insulators, the energy gap is very large while in the case of conductors energy gap is very short.
  • This energy gap refers to the energy difference between the valence band and conduction band whereas, in semiconductors, this band gap value is in between that of conductors and insulators.

Test: Types of Material of Semiconductor - Question 6

In a semiconductor, current conduction is due to:

Detailed Solution: Question 6

There are two types of semiconductors: p-type and n-type. Therefore both holes and electrons conduct current respectively.

Test: Types of Material of Semiconductor - Question 7

Electrons moving like molecules of gas exist in:

Detailed Solution: Question 7

In metallic solids, electrons are free to move among the positively charged metal ions, creating a delocalized 'sea of electrons'. This movement resembles the behaviour of gas molecules, where particles are free to move in any direction.

  • Electrons in metallic solids behave like gas molecules.
  • They are not fixed in place.
  • Movement is random and allows conductivity.

Test: Types of Material of Semiconductor - Question 8

What is the value of the dielectric constant of air?

Detailed Solution: Question 8

The dielectric constant of a medium K = ∈/∈
where ∈ is the permittivity of the medium.
For air, ∈ = ∈0
⟹ K = 1

Test: Types of Material of Semiconductor - Question 9

Mobilities of electrons and holes in a sample of intrinsic germanium semiconductor at room temperature are 0.36m2/volt-sec and 0.17 m2/volt-sec respectively. If the electron and hole densities are each equal to 2.5 X 1019/m3, the conductivity is ______.​

Detailed Solution: Question 9

Given in question,

Mobilities of electrons μe ​= 0.36×m2V−1s−1

Mobilities of holes μh ​= 0.17×m2V−1s−1

densities of electron= densities of holes=2.5×1019m−3

As we know, conductivity,
σ=1/p​=e(μe​ne​+μn​nn​)
=1.6×10−19[0.36×2.5×1019+0.17×2.5×1019)]
=2.12Sm−1

So the electrical conductivity of germanium is 2.12Sm−1

Test: Types of Material of Semiconductor - Question 10

In a semiconductor, the forbidden energy gap between the valence band and conduction band is about​:

Detailed Solution: Question 10

In semiconductors, the forbidden gap between the valence band and conduction band is very small. It has a forbidden gap of about 1 electron volt (eV).

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