Calculate the pressure exerted by 1.0 mol of hydrogen at 0°C in a vessel with volume of 5.0 dm3 using: a. The ideal gas law b. The Van der Waals equation (for constants see Table 1C.3, Resource section, p. 869)

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Chapter1: Chemical Foundations
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Book reference: Atkins' Physical Chemistry 11 ed.
Calculate the pressure exerted by 1.0 mol of hydrogen at 0°C in a vessel with volume of 5.0 dm³
using:
a. The ideal gas law
b. The Van der Waals equation (for constants see Table 1C.3, Resource section, p. 869)
C.
The Dieterici equation (for formula, refer to table of EOS in slide no. 63)
d. The virial EOS up to 2nd virial coefficient (use constant from Table 1C.1, p. 868)
Transcribed Image Text:Calculate the pressure exerted by 1.0 mol of hydrogen at 0°C in a vessel with volume of 5.0 dm³ using: a. The ideal gas law b. The Van der Waals equation (for constants see Table 1C.3, Resource section, p. 869) C. The Dieterici equation (for formula, refer to table of EOS in slide no. 63) d. The virial EOS up to 2nd virial coefficient (use constant from Table 1C.1, p. 868)
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