The density of gray and white tin are 5.77 x 10³ kg/m³ and 7.37 × 10³ kg/m³. The latent heat for the transition between gray and white tin is 2.20 × 10³ J/mol. The atomic weight of tin is 118.7. Calculate the slope of the tangent of the coexistence curve of gray and white tin at T = 366 K. Select one: dP dT a. O b. OC. O d. dP dT dP dT dP = -15.8 Pa/K = -14.7 atm/K = -13.3 atm/K = -16.6 Pa/K
The density of gray and white tin are 5.77 x 10³ kg/m³ and 7.37 × 10³ kg/m³. The latent heat for the transition between gray and white tin is 2.20 × 10³ J/mol. The atomic weight of tin is 118.7. Calculate the slope of the tangent of the coexistence curve of gray and white tin at T = 366 K. Select one: dP dT a. O b. OC. O d. dP dT dP dT dP = -15.8 Pa/K = -14.7 atm/K = -13.3 atm/K = -16.6 Pa/K
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![The density of gray and white tin are 5.77 × 10³ kg/m³ and 7.37 × 10³ kg/m³. The latent heat for the transition between gray and white tin is
2.20 x 10³ J/mol. The atomic weight of tin is 118.7. Calculate the slope of the tangent of the coexistence curve of gray and white tin at T = 366 K.
Select one:
dP
dT
a.
b.
d.
dT
dP
dP
= -15.8 Pa/K
= -14.7 atm/K
= -13.3 atm/K
= -16.6 Pa/K](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F81711e19-b09b-4b97-8792-34ab3b2273b0%2F231e266a-285d-43c2-8c94-edfbabe8f70f%2F9w2bylq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The density of gray and white tin are 5.77 × 10³ kg/m³ and 7.37 × 10³ kg/m³. The latent heat for the transition between gray and white tin is
2.20 x 10³ J/mol. The atomic weight of tin is 118.7. Calculate the slope of the tangent of the coexistence curve of gray and white tin at T = 366 K.
Select one:
dP
dT
a.
b.
d.
dT
dP
dP
= -15.8 Pa/K
= -14.7 atm/K
= -13.3 atm/K
= -16.6 Pa/K
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