EBK PHYSICS FOR SCIENTISTS & ENGINEERS
EBK PHYSICS FOR SCIENTISTS & ENGINEERS
5th Edition
ISBN: 9780134296074
Author: GIANCOLI
Publisher: VST
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Chapter 40, Problem 32P

(a)

To determine

Find the energy which has 85.0% occupancy probability for copper at 295 k.

(b)

To determine

Find the energy which has 85.0% occupancy probability for copper at 750 k.

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3) The Seebeck voltage for Copper Constantan (Cn) thermocouple is given by the linear relation V = a + bT, where T is the absolute temperature of the hot junction, and a and b are constants. For Cu : a = Calculate the thermoelectric power when the hot junction is at 100 C. 0.6 mV, and b = 0.008 mV/K. For Cn : a = -20 mV, and b -0.056 mV/K. %3D
(i) The total electrical resistivity of metals is the sum of the contributions from thermal vibrations, impurities and plastic deformation; (ii) the resistivity rises linearly with temperature above -200 degree Celsius; (iii) increasing the concentration of impurity results in an enhancement of impurity; (iv) plastic deformation also raises the electrical resistivity due to the increased numbers of electron-scattering dislocations. Which of the above statements is false?  D. (iv) A. (i) C. (iii) E. All of the above B. (ii) Other:
3) The Seebeck voltage for Copper Constantan (Cn) thermocouple is given by the linear relation V = a+ bT, For Cu : a = 0.6 mV, andb=0.008 mV/K. For Cn : a = -20 mV, and b = -0.056 mV/K. Calculate the thermoelectric power when the hot junction is at 100 C. 24 where T is the absolute temperature of the hot junction, and a and b are constants
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