Question 2 a) Nickel (Ni) crystallizes with a face centered cubic structure. Calculate the i) saturation magnetization, M. ii) saturation induction, B. Given density of nickel = 8.90 gcm, net magnetic moment per atom of Nickel = 0.604 Bohr magnetons, and atomic weight, AN = 58.71 gmol", lattice constant, a = 0.35236 nm. b) Calculate the maximum wavelength of a germanium (Ge) photodetector with bandgap energy, Eg = 0.67 eV absorbed.
Question 2 a) Nickel (Ni) crystallizes with a face centered cubic structure. Calculate the i) saturation magnetization, M. ii) saturation induction, B. Given density of nickel = 8.90 gcm, net magnetic moment per atom of Nickel = 0.604 Bohr magnetons, and atomic weight, AN = 58.71 gmol", lattice constant, a = 0.35236 nm. b) Calculate the maximum wavelength of a germanium (Ge) photodetector with bandgap energy, Eg = 0.67 eV absorbed.
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Transcribed Image Text:Question 2
a) Nickel (Ni) crystallizes with a face centered cubic strueture. Calculate the
i) saturation magnetization, M.
ii) saturation induction, B.
Given density of nickel = 8.90 gcm, net magnetic moment per atom of Nickel
= 0.604 Bohr magnetons, and atomic weight, AN = 58.71 gmol", lattice
constant, a = 0.35236 nm.
b) Calculate the maximum wavelength of a germanium (Ge) photodetector with
bandgap energy, E 0.67 eV absorbed.
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