Beview I Consta Gemanium has a band gap of 0.67 eV. Doping with arsenic adds donor levels in the gap 0.01 eV below the bottom of the conduction band. At a temperature of 300 K. the probability is 4.4 x 10 that an electron state is oupied at the bottom of the conduction band. Part A Where is the Fermi level relative to the conduction band in this case? Express your answer in electron volts. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of umping a.band.gao. AX Ey 0.199 eV below the conduction band. Submit Previous Answers Request Anwer
Beview I Consta Gemanium has a band gap of 0.67 eV. Doping with arsenic adds donor levels in the gap 0.01 eV below the bottom of the conduction band. At a temperature of 300 K. the probability is 4.4 x 10 that an electron state is oupied at the bottom of the conduction band. Part A Where is the Fermi level relative to the conduction band in this case? Express your answer in electron volts. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of umping a.band.gao. AX Ey 0.199 eV below the conduction band. Submit Previous Answers Request Anwer
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Transcribed Image Text:Review I Constants
Germanium has a band gap of O.67 eV. Doping
with arsenic adds donor levels in the gap 0.01 eV
below the bottom of the conduction band. At a
temperature of 300 K, the probability is
4.4 x 10 that an electron state is osupied at
the bottom of the conduction band.
Part A
Where is the Fermi level relative to the conduction band in this case?
Express your answer in electron volts.
For related problem-solving tips and strategies, you
may want to view a Video Tutor Solution of
Jumping a band gap.
Ey
0.199
eV below the conduction
band.
Submit
Previous Answers Request Answer
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