题目
单项选择题
There are two adjustable parameters, 𝑎 and 𝑏 that appear in the Van der Waals gas equation of state. Based on what you understand their roles to be, how would they compare between C F 4 and C F 2 C l 2 ? (The carbon atom is central in each compound.)
选项
A.Both
𝑎
and
𝑏
would be smaller for
C
F
2
C
l
2
.
B.Probably
𝑎
would be smaller for
C
F
2
C
l
2
but and
𝑏
would be larger.
C.None of the others.
D.Both
𝑎
and
𝑏
would be larger for
C
F
2
C
l
2
.
E.Probably
𝑎
would be larger for
C
F
2
C
l
2
but and
𝑏
would be smaller.
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标准答案
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思路分析
To approach this, recall what the Van der Waals constants mean and how molecular size and polarizability influence them.
Option 1: 'Both a and b would be smaller for CF4Cl2.' This would imply that the larger molecule has weaker intermolecular attractions and a smaller excluded volume, which contradicts the general trend that bigger, more polarizable molecules exhibit stronger dispersion forces and occupy more space. So this is unlikely to be correct.
Option 2: 'Probably a would be smaller for CF4Cl2 but b......Login to view full explanation登录即可查看完整答案
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类似问题
The physical state of a gaseous substance is specified by giving its volume, pressure, temperature and chemical amount. There are two equations interrelating these four variables, namely the perfect gas equation and the van der Waals equation. 2.0 mol C2H6 is confined at 273.15K in 22.414L. What is the repulsive term (in atm) of the gas under this condition when it behaves as a van der Waals gas? R = 8.314 J/molK = 0.08206 L atm/molK a = 5.507 L2atm mol-2 b = 6.51*10-2 L mol-1
A physical chemist happened to know that the 𝑏 value for a gas that followed the Van der Waals equation was 𝑏 = 0.05 L / m o l . But he didn't know the 𝑎 value. He got 1.00 mole of the gas at a pressure of 1.00 atm at 10.0 °C and found that it had a volume of 23.0 L. Based on this single measurement, what is the probable value of 𝑎 ? Note that ( 𝑝 + 𝑎 𝑛 2 𝑉 2 ) ( 𝑉 − 𝑛 𝑏 ) = 𝑛 𝑅 𝑇 is the Van der Waals equation of state, 𝑅 = 0.08206 L a t m m o l − 1 K − 1
Which of the following describes the van der Waals equation of state?
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