he atomic heat capacity of solid Mo is given by the equation 0.503x105 Cp = = 5.69 + 1.88x10-3 T – T2 ind the change in entropy which accompanies the heating of 2 atomic weights of Mo from °C to its melting point, 2620 °C.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Round off final answers to 4 decimal places and use floating values for intermediate answers.

The atomic heat capacity of solid Mo is given by the equation
0.503x105
Cp
= 5.69 + 1.88x10-3 T –
Find the change in entropy which accompanies the heating of 2 atomic weights of Mo from
0 °C to its melting point, 2620 °C.
Transcribed Image Text:The atomic heat capacity of solid Mo is given by the equation 0.503x105 Cp = 5.69 + 1.88x10-3 T – Find the change in entropy which accompanies the heating of 2 atomic weights of Mo from 0 °C to its melting point, 2620 °C.
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