9. A gas obeys the van der Waals equation with P, = 3.040 x10 Pa and T. 473 K. Calculate the value of the van der Waals constant b. [ 1.62 x 10) Calculate the pressure exerted by 1.00 mol of C:Hs at 1000 K in 100 cm', using (a) the ideal gas equation, and (b) the van der Waals equation. The van der Waals constants for C,H, are: a= 5.562 bar dm mol; b= 0.06380 dm mol". [831; 1.72 x 10')
9. A gas obeys the van der Waals equation with P, = 3.040 x10 Pa and T. 473 K. Calculate the value of the van der Waals constant b. [ 1.62 x 10) Calculate the pressure exerted by 1.00 mol of C:Hs at 1000 K in 100 cm', using (a) the ideal gas equation, and (b) the van der Waals equation. The van der Waals constants for C,H, are: a= 5.562 bar dm mol; b= 0.06380 dm mol". [831; 1.72 x 10')
Chemistry
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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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![9. A gas obeys the van der Waals equation with P. = 3.040 x10° Pa and T, = 473 K. Calculate
the value of the van der Waals constant b. [ 1.62 x 10*)
Calculate the pressure exerted by 1.00 mol of C:Ho at 1000 K in 100 cm', using (a) the ideal gas
equation, and (b) the van der Waals equation. The van der Waals constants for C;H, are: a = 5.562
bar dm° mol; b= 0.06380 dm mol". [831; 1.72 x 10']](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5e06d591-e323-4004-a0b2-4c560c1b8ba6%2F49e9b461-6f40-43bb-a6e3-f6918653deb8%2F35d0p3i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:9. A gas obeys the van der Waals equation with P. = 3.040 x10° Pa and T, = 473 K. Calculate
the value of the van der Waals constant b. [ 1.62 x 10*)
Calculate the pressure exerted by 1.00 mol of C:Ho at 1000 K in 100 cm', using (a) the ideal gas
equation, and (b) the van der Waals equation. The van der Waals constants for C;H, are: a = 5.562
bar dm° mol; b= 0.06380 dm mol". [831; 1.72 x 10']
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