A 1.00 L rigid cylinder contains one mole of neon gas at 25 °C. Calculate the pressure using (a) the ideal gas law, and (b) the van der Waals equation. (c) A much more accurate equation is the virial equation, pVm RT - 1+ B(T) Vm + C(T) V here B(T) and C(T) are functions of temperature. For neon at 25°C, the values of B(T) and C(T) are 11.42 cm³.mol-¹ and 221 cm³.mol², espectively. Assuming the pressure calculated using the virial equation is the "true" value, determine the percent error by using ideal gas law and an der Waals equation. B I U 2= EE ▶¶ ¶₁ Σ PA
A 1.00 L rigid cylinder contains one mole of neon gas at 25 °C. Calculate the pressure using (a) the ideal gas law, and (b) the van der Waals equation. (c) A much more accurate equation is the virial equation, pVm RT - 1+ B(T) Vm + C(T) V here B(T) and C(T) are functions of temperature. For neon at 25°C, the values of B(T) and C(T) are 11.42 cm³.mol-¹ and 221 cm³.mol², espectively. Assuming the pressure calculated using the virial equation is the "true" value, determine the percent error by using ideal gas law and an der Waals equation. B I U 2= EE ▶¶ ¶₁ Σ PA
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:A 1.00 L rigid cylinder contains one mole of neon gas at 25 °C. Calculate the pressure using (a) the ideal gas law, and (b) the van der Waals
equation. (c) A much more accurate equation is the virial equation,
pVm
B(T)
C(T)
= 1 +
+
RT
Vm
where B(T) and C(T) are functions of temperature. For neon at 25°C, the values of B(T) and C(T) are 11.42 cm3.mol1 and 221 cmê.mol2,
respectively. Assuming the pressure calculated using the virial equation is the "true" value, determine the percent error by using ideal gas law and
van der Waals equation.
非盖三 三三三
BIU
I I
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