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Manometer | 10 mins | 0 completed | Learn Summary |

Partial Pressure | 11 mins | 0 completed | Learn Summary |

The Ideal Gas Law | 47 mins | 0 completed | Learn Summary |

Standard Temperature and Pressure | 19 mins | 0 completed | Learn |

Effusion | 8 mins | 0 completed | Learn Summary |

Root Mean Square Speed | 11 mins | 0 completed | Learn Summary |

Kinetic Molecular Theory | 9 mins | 0 completed | Learn |

Van der Waals Equation | 22 mins | 0 completed | Learn |

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End of Chapter 5 Problems | 74 mins | 0 completed | Learn |

Additional Practice |
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Chemistry Gas Laws |

Ideal Gas Law Density |

Ideal Gas Law Molar Mass |

Gas Stoichiometry |

Collecting Gas Over Water |

Kinetic Energy of Gases |

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Ideal Gas Law |

Boyle's Law |

Combined Gas Law |

Solution: If the pressure exerted by ozone, O 3, in the stratosphere is 3.0 x 10 -3 atm and the temperature is 255 K, how many ozone molecules are in one liter?
a. 6.0 x 1018
b. 6.1 x 10 22
c. 8.6 x 1019
d. 1.4 x 1018
e. 2.7 x 10 20

If the pressure exerted by ozone, O _{3}, in the stratosphere is 3.0 x 10 ^{-3} atm and the temperature is 255 K, how many ozone molecules are in one liter?

a. 6.0 x 10^{18}

b. 6.1 x 10^{ }^{22}

c. 8.6 x 10^{19}

d. 1.4 x 10^{18 }

e. 2.7 x 10^{ }^{20}

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