Fundamentals of Physics, Volume 1, Chapter 1-20
Fundamentals of Physics, Volume 1, Chapter 1-20
10th Edition
ISBN: 9781118233764
Author: David Halliday
Publisher: WILEY
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Chapter 41, Problem 23P
To determine

To show:

that at T= 0K, the average Eave of conduction electrons in a metal is equal to 3/5Ef.

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Assuming that there are 1.5 free electrons per gold atom. The electrical conductivity and density for Au are 4.3 x 10' (0-m)* and 19.32 g/cm?, respectively. (a) Calculate the number of free electrons per cubic meter for gold (b) Compute the electron mobility for gold.
Calculate the number density (number per unit volume) for (a) molecules of oxygen gas at 0.0°C and 1.0 atm pressure and (b) conduction electrons in copper. (c) What is the ratio of the latter to the former? What is the average distance between (d) the oxygen molecules and (e) the conduction electrons, assuming this distance is the edge length of a cube with a volume equal to the available volume per particle (molecule or electron)?
At what pressure, in atmospheres, would the number of molecules per unit volume in an ideal gas be equal to the number density of the conduction electrons in copper, with both gas and copper at temperature T =300 K?
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