Boyle's law states that: The rates of effusion of gases are inversely O a. proportional to the square roots of their molar masses. The volume of a fixed amount of gas is directly b. proportional to its temperature in Kelvin at constant pressure. The volume of a fixed amount of gas is Oc. inversely proportional to its pressure at constant temperature. The total pressure of a mixture of gases is the d. simple sum of the partial pressure of all of the gaseous compounds. Equal amounts of gases occupy the same е. volume at constant temperature and pressure.

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Chapter5: The Gaseous State
Section: Chapter Questions
Problem 5.127QP: A 1.000-g sample of an unknown gas at 0C gives the following data: P(atm) V (L) 0.2500 3.1908 0.5000...
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Boyle's law states that:
The rates of effusion of gases are inversely
a. proportional to the square roots of their molar
masses.
The volume of a fixed amount of gas is directly
O b.proportional to its temperature in Kelvin at
constant pressure.
The volume of a fixed amount of gas is
c. inversely proportional to its pressure at
constant temperature.
The total pressure of a mixture of gases is the
d. simple sum of the partial pressure of all of the
gaseous compounds.
Equal amounts of gases occupy the same
е.
volume at constant temperature and pressure.
Transcribed Image Text:Boyle's law states that: The rates of effusion of gases are inversely a. proportional to the square roots of their molar masses. The volume of a fixed amount of gas is directly O b.proportional to its temperature in Kelvin at constant pressure. The volume of a fixed amount of gas is c. inversely proportional to its pressure at constant temperature. The total pressure of a mixture of gases is the d. simple sum of the partial pressure of all of the gaseous compounds. Equal amounts of gases occupy the same е. volume at constant temperature and pressure.
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