The Clausius-Clapyron equation relates the latent heat of vaporization to temperature and vapor pressure according to the following equation: AH ΔΗ, In(p)= RT +k Data for water are shown below (units are K for T. mmHg for p. and J/mol. K for R.) a.) Use linear regression to find the heat of vaporization of water. The published value is -540 cal/g b.) What will be the vapor pressure in mmHg of water at 99°C

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3. The Clausius-Clapyron equation
relates the latent heat of vaporization to
temperature and vapor pressure
according to the following equation:
AH
In(p) =
RT
Data for water are shown below (units
are K for T, mmHg for p. and J/mol. K for
R.)
a.) Use linear regression to find the
heat of vaporization of water.
The published value is -540 cal/g
b.) What will be the vapor pressure
in mmHg of water at 99°C
c.) Determine the Pearson r and
interpret the result.
Transcribed Image Text:3. The Clausius-Clapyron equation relates the latent heat of vaporization to temperature and vapor pressure according to the following equation: AH In(p) = RT Data for water are shown below (units are K for T, mmHg for p. and J/mol. K for R.) a.) Use linear regression to find the heat of vaporization of water. The published value is -540 cal/g b.) What will be the vapor pressure in mmHg of water at 99°C c.) Determine the Pearson r and interpret the result.
interpret the result.
1/T
0.002755
0.002740
0.002725
0.002710
0.002695
0.002681
0.002667
0.002653
0.002639
0.002625
0.002611
Your answer
Quilgo Submission ID (do not edit)
In(P)
6.2649
6.3404
6.4149
6.4886
6.5615
6.6333
617043
6.7743
6.8436
6.9121
6.9797
Transcribed Image Text:interpret the result. 1/T 0.002755 0.002740 0.002725 0.002710 0.002695 0.002681 0.002667 0.002653 0.002639 0.002625 0.002611 Your answer Quilgo Submission ID (do not edit) In(P) 6.2649 6.3404 6.4149 6.4886 6.5615 6.6333 617043 6.7743 6.8436 6.9121 6.9797
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