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Gas Stoichiometry

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If we know the pressure, volume, and temperature for a sample of gas, we can ... Quicklime, CaO, is produced by heating calcium carbonate, CaCO3. ... – PowerPoint PPT presentation

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Title: Gas Stoichiometry


1
Gas Stoichiometry
2
Ideal Gas Law
  • We can now see how useful the ideal gas law.
  • If we know the pressure, volume, and temperature
    for a sample of gas, we can calculate the number
    of moles present by using
  • n PV/RT

3
Gas Stoichiometry Calculating Volume
  • Calculate the volume of oxygen gas produced at
    1.00 atm and 25ºC by the complete decomposition
    of 10.5 g of potassium chlorate.
  • The balanced equation for the reaction is
  • 2KClO3(s) ? 2KCl(s) 3O2(g)
  • Find the moles of KClO3 in 10.5 g.
  • Find the moles of O2 produced.
  • Find the volume of oxygen produced.
  • Answer 3.13L

4
Review of Definitions!
  • Molar volume The volume of an ideal gas at
    standard temperature and pressure is 22.4 L
  • Standard Temperature 0ºC (273K)
  • Standard Pressure 1.0 atm

5
Calculations Involving Gases at STP
  • A sample of nitrogen gas has a volume of 1.75 L
    at STP. How many moles of N2 are present?
  • Could solve using the ideal gas law.
  • But lets use a shortcut!
  • Answer 7.81 x 10-2 mol N2

6
Reactions Involving Gases at STP
  • Quicklime, CaO, is produced by heating calcium
    carbonate, CaCO3. Calculate the volume of CO2
    produced at STP from the decomposition of 152 g
    of CaCO3 according to the reaction
  • CaCO3(s) ? CaO(s) CO2(g)
  • Using molar mass of CaCO3, calculate the number
    of moles of CaCO3.
  • Find moles of CO2.
  • Convert moles to volume, using molar volume.
  • Answer 34.1 L CO2

7
Transitional Page
8
Your Topic Goes Here
  • Your subtopics go here

9
Elements
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