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What is an intrinsic semiconductor? How ...

What is an intrinsic semiconductor? How can this material semiconductor? How can this material be converted into
p-type extrinsic semiconductor? Explain with the help of energy band diagrams?

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Explore conceptually related problems

What is an intrinsic semiconductor? How can this material semiconductor? How can this material be converted into p-type extrinsic semiconductor? Explain with the help of energy band diagrams?

How can intrinsic semiconductor material be converted into n-type extrinsic semiconductor? Explain with the help of energy band diagrams?

What are intrinsic semiconductors? Describe P-type and N-type semiconductors.

What are extrinsic semiconductor? Explain acceptor-type semi-conductors.

What are extrinsic semiconductor ? Explain acceptor-type semi-conductors.

What is extrinsic semiconductor? Describe N-type semiconductor.

What are extrinsic semiconductors? Describe p-type semiconductor?

MODERN PUBLICATION-Solids-EXERCISE
  1. On the basis of the energy band diagrams distinguish between metals, i...

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  2. Explain the formation of energy bands in solids and hence define condu...

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  3. What is an intrinsic semiconductor? How can this material semiconducto...

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  4. What is doping? What are the necessary conditions for it? State any me...

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  5. What are extrinsic semiconductors ? Explain how p-type and n-type semi...

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  6. Derive an expressin for electrical conductiity of semiconductors.

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  7. Using the concept of free electrons in a conductor, derive the express...

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  8. Energy band gap of gallium arsenide phosphate is 1.98 eV.Calculate the...

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  9. The enrgy gap of silicon is 1.14 eV.Find the maximum wavelength ,at wh...

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  10. The energy liberated in the combination of a hole-electron pair is con...

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  11. The energy liberated in the ecombination of hole-electron pair is con...

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  12. A p-type semiconductor has acceptor energy levels 57 meV(millielectron...

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  13. A semiconductor has accpetor level 1.57 eV above the valence band.What...

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  14. A semiconductor has equal electron and hole concentration of 4.2 xx 10...

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  15. A semiconductor has equal electron and hole concentration of 4.2 xx 10...

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  16. A semiconductor has equal electron and hole concentration 6xx10^8 m^(-...

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  17. A semiconductor has equal electron and hole concentration of 6 xx 10^8...

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  18. A semiconductor has equal electron and hole concentration of 6 xx 10^4...

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  19. A semiconductor has equal electron and hole concentration of 2 xx 10^8...

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  20. A semiconductor has equal electron and hole concentration of 6 xx 10^8...

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