Use the ideal gas equation to evaluate the average volume of a gas at the following conditions: Pressure (atm) No. of moles Temperature (K) 0.2 0.08 1.2 0.5 2.5 0.8 0.4 25 a. 24.26 L b. C. d. 26.20 L 20.20 L 20.26 L e. 26.26 L 55 28 325 310

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter9: The Gaseous State
Section: Chapter Questions
Problem 38P
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Use the ideal gas equation to evaluate the average volume of a gas at the following conditions:
Pressure (atm) No. of moles
Temperature (K)
0.2
0.08
1.2
0.5
2.5
0.8
0.4
25
a.
b.
C.
d.
20.20 L
20.26 L
e. 26.26 L
The absorbance of known concentration of a metal complex is obtained by UV-vis Time left 0:47:51
spectrophotometer. The results are tabulated:
conc
0.2
24.26 L
26.20 L
0.3
0.4
0.5
a. 0.44
b. 0.36
c. 0.40
d. 0.38
e. 0.42
b.
Calculate the concentration of an unknown sample of the complex that has an absorbance of 0.51
C.
Consider the following data to determine the molar entropy AS*:
Temp (°C)
20
40
60
80
e.
a. 25.69 J/K.mol
abs
0.27
0.41
0.55
0.69
Keq
0.3
0.55
0.85
1.3
55
28
325
310
61.28 J/K.mol
7.38 J/K.mol
d. 94.36 J/K.mol
301.40 J/K.mol
Transcribed Image Text:Use the ideal gas equation to evaluate the average volume of a gas at the following conditions: Pressure (atm) No. of moles Temperature (K) 0.2 0.08 1.2 0.5 2.5 0.8 0.4 25 a. b. C. d. 20.20 L 20.26 L e. 26.26 L The absorbance of known concentration of a metal complex is obtained by UV-vis Time left 0:47:51 spectrophotometer. The results are tabulated: conc 0.2 24.26 L 26.20 L 0.3 0.4 0.5 a. 0.44 b. 0.36 c. 0.40 d. 0.38 e. 0.42 b. Calculate the concentration of an unknown sample of the complex that has an absorbance of 0.51 C. Consider the following data to determine the molar entropy AS*: Temp (°C) 20 40 60 80 e. a. 25.69 J/K.mol abs 0.27 0.41 0.55 0.69 Keq 0.3 0.55 0.85 1.3 55 28 325 310 61.28 J/K.mol 7.38 J/K.mol d. 94.36 J/K.mol 301.40 J/K.mol
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