Physical Chemistry
2nd Edition
ISBN: 9781285969770
Author: Ball
Publisher: Cengage
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Chapter 2, Problem 2.49E
Interpretation Introduction
Interpretation:
2.49. For a gas that follows the van der Waals equation of state, the inversion temperature can be approximated as 2a/Rb. Using Table 1.6, calculate the inversion temperatures of He and H2 and compare them to their values of 40 K and 202 K, respectively. What are the implications of these inversion temperatures with regard to liquefaction of these two gases?
Concept introduction:
The phenomenon in the change of temperature produced when a gas is made into expands adiabatically from a region of high pressure to the region of low pressure is called Joul-Thomson effect. The mathematical derivation for the Joule –Thomson effect is called the Joule Thomson coefficient.
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Use the expression below to
⚫ calculate its value and report it to the proper number of significant digits (you may need to
round your answer).
⚫ calculate the % error (or % relative error or % inherent error)
⚫ calculate the absolute error.
(20.54±0.02 × 0.254±0.003) / (3.21±0.05) =
Value:
% Error:
Absolute error: ± |
% (only 1 significant digit)
(only 1 significant digit)
In each case (more ductile, more brittle, more tough or resistant), indicate which parameter has a larger value.
parameter Elastic limit Tensile strength
more ductile
Strain at break Strength Elastic modulus
more fragile
more tough or resistant
Chapter 2 Solutions
Physical Chemistry
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