Physics . Determine the number of conduction electrons/m3 in pure silicon AND silicon’s conductivity σ for a) T = 10 K b) T = 100 K c) T = 1000 K d) Conceptually, why does Si’s conductivity get better with increasing temperature? (For intrinsic Si, me* = 1.08me, μe = 1400cm2/V∙s, mh* = 0.60me, μh = 450cm2/V∙s, at. wt. = 28.085 g/mol, density = 2.329 g/cm3).
Physics . Determine the number of conduction electrons/m3 in pure silicon AND silicon’s conductivity σ for a) T = 10 K b) T = 100 K c) T = 1000 K d) Conceptually, why does Si’s conductivity get better with increasing temperature? (For intrinsic Si, me* = 1.08me, μe = 1400cm2/V∙s, mh* = 0.60me, μh = 450cm2/V∙s, at. wt. = 28.085 g/mol, density = 2.329 g/cm3).
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Physics
. Determine the number of conduction electrons/m3 in pure silicon AND silicon’s conductivity σ
for
a) T = 10 K
b) T = 100 K
c) T = 1000 K
d) Conceptually, why does Si’s conductivity get better with increasing temperature?
(For intrinsic Si, me* = 1.08me, μe = 1400cm2/V∙s, mh* = 0.60me, μh = 450cm2/V∙s, at. wt. = 28.085
g/mol, density = 2.329 g/cm3).
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