a) Calculate Fermi energy of 4.2 x 1021 electrons confined in a box of volume 1 cm³. b) At room temperature (295 K), find the occupation number for a fermion state f(s) that is 0.01 eV above μ. O c) The average energy per electron in one-dimension is 2.5 eV. Calculate the Fermi-energy at 0 K?
a) Calculate Fermi energy of 4.2 x 1021 electrons confined in a box of volume 1 cm³. b) At room temperature (295 K), find the occupation number for a fermion state f(s) that is 0.01 eV above μ. O c) The average energy per electron in one-dimension is 2.5 eV. Calculate the Fermi-energy at 0 K?
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![a) Calculate Fermi energy of 4.2 x 1021 electrons confined in a box of volume 1 cm³.
b) At room temperature (295 K), find the occupation number for a fermion state f(s) that is
0.01 eV above μ. O
c) The average energy per electron in one-dimension is 2.5 eV. Calculate the Fermi-energy
at 0 K?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb212ec34-2d8e-4b27-b6e1-6f5e0a192f05%2F074e938e-5e96-4b1d-a26a-8002b2427974%2F3pwbk19_processed.jpeg&w=3840&q=75)
Transcribed Image Text:a) Calculate Fermi energy of 4.2 x 1021 electrons confined in a box of volume 1 cm³.
b) At room temperature (295 K), find the occupation number for a fermion state f(s) that is
0.01 eV above μ. O
c) The average energy per electron in one-dimension is 2.5 eV. Calculate the Fermi-energy
at 0 K?
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