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List of top Material Science and Technology Questions on Energy bands asked in CUET (PG)
The energy gap between the top of the valence band and bottom of the conduction band is called the energy band gap \((E_g)\). Depending upon the materials, the gap can be:
CUET (PG) - 2024
CUET (PG)
Material Science and Technology
Energy bands
The ratio of charge carrier densities in a pure silicon crystal at \(27^\circ \text{C}\) and \(57^\circ \text{C}\) is 1.25. The energy gap of the semiconductor is:
CUET (PG) - 2024
CUET (PG)
Material Science and Technology
Energy bands
A semiconductor has acceptor levels \(57 \, \text{meV}\) above the valence band. The maximum wavelength of light which can excite an electron is:
CUET (PG) - 2024
CUET (PG)
Material Science and Technology
Energy bands
The energy of a photon of sodium light (\(\lambda = 589 \, \text{nm}\)) is equal to the band gap of a semiconducting material. The minimum energy required to create a hole-electron pair is:
CUET (PG) - 2024
CUET (PG)
Material Science and Technology
Energy bands