Using the ideal gas law calculate the following: (a) the volume of 0.510 mol of H2 at 47 °C and 1.6 atm pressure LH2 (b) the number of grams in 16.0 L of CH4 at 27 °C and 600. torr pressure g CH4 (c) the density of CO2 at 4.00 atm pressure and -20.0 °C g/L CO2

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter6: The Gaseous State
Section: Chapter Questions
Problem 6.57QE
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Using the ideal gas law calculate the following:
(a) the volume of 0.510 mol of H2 at 47 °C and 1.6 atm pressure
i
LH2
(b) the number of grams in 16.0 L of CH4 at 27 °C and 600. torr pressure
i
g CH4
(c) the density of CO2 at 4.00 atm pressure and -20.0 °C
i
g/L CO2
Transcribed Image Text:Using the ideal gas law calculate the following: (a) the volume of 0.510 mol of H2 at 47 °C and 1.6 atm pressure i LH2 (b) the number of grams in 16.0 L of CH4 at 27 °C and 600. torr pressure i g CH4 (c) the density of CO2 at 4.00 atm pressure and -20.0 °C i g/L CO2
g CH4
(c) the density of CO2 at 4.00 atm pressure and -20.0 °C
i
g/L CO2
(d) the molar mass of a gas having a density of 2.58 g/L at 27 °C and 1.00 atm pressure
i
g/mol
Atter
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Transcribed Image Text:g CH4 (c) the density of CO2 at 4.00 atm pressure and -20.0 °C i g/L CO2 (d) the molar mass of a gas having a density of 2.58 g/L at 27 °C and 1.00 atm pressure i g/mol Atter Save for Later
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