. Determine the resistivity of a germanium crystal at 300 K that has the simultaneous presence of (i) donor impurity of 1 in 10' and (ii) acceptor impurity of 1 in 108. Given data: Atomic concentration in Germanium is 4.4 x 1022 atoms/cm ³, n₁ = 2.5 × 10¹3 /cm³, He = 3800 cm² /Vs and h = 180 cm² /V s. 3 3

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter10: Statistical Physics
Section: Chapter Questions
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X. Determine the resistivity of a germanium crystal at 300 K that has the simultaneous
presence of (i) donor impurity of 1 in 10' and (ii) acceptor impurity of 1 in 10%. Given
data: Atomic concentration in Germanium is 4.4 x 1022 atoms/cm³, n₁ = 2.5 × 10¹3
/cm³, He = 3800 cm² /Vs and h= 180 cm² /V s.
Transcribed Image Text:X. Determine the resistivity of a germanium crystal at 300 K that has the simultaneous presence of (i) donor impurity of 1 in 10' and (ii) acceptor impurity of 1 in 10%. Given data: Atomic concentration in Germanium is 4.4 x 1022 atoms/cm³, n₁ = 2.5 × 10¹3 /cm³, He = 3800 cm² /Vs and h= 180 cm² /V s.
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