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How did fossil fuels form?
 500 million years ago living matter-
  mostly plants- died and was buried in
  sediment.
 Pressure, heat, and microbes converted
  the organic matter into petroleum.

   Buried sunshine?
Potential Energy
   Stored energy or energy of position
Kinetic Energy
 Energy related to motion
 video clip
Chemical energy
   A form of potential energy that is stored
    in the bonds of chemical compounds.

   Burning hydrocarbons releases energy
    in the form of heat and light
Types of energy in chemical
reactions
   Endothermic: energy “enters” the
    reaction
   Feels ________________

   Exothermic: energy “exits” the reaction
   Feels ________________
Reactions take place in 2 steps:
 1) Bonds must be broken in the starting
  reactants.
 * When bonds are broken, energy is
  released. So this is an exothermic
  process.

   CH4 + 2O2  C + 4H + 4O + Energy
Step 2:
   Separated atoms now join to form a new
    bonds to make the products.

   It takes energy to form bonds, so this
    process is endothermic.

   Energy + C + 4H + 4O  CO2 + 2 H2O
CH4 + 2O2  C + 4H + 4O
Net equation for burning of
methane
   CH4 + 2O2  CO2 + 2H2O + energy

 Notice the energy shows up as a
  product so more energy was released
  so the reaction is exothermic.
 gummy bear experiment
Energy + 2H2O  2H2 + O2
   Is more energy put into the reaction or
    released by the reaction?

 Is the reaction endothermic or
  exothermic?
 endothermic reaction

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Exothermic and endothermic

  • 1.
  • 2. How did fossil fuels form?  500 million years ago living matter- mostly plants- died and was buried in sediment.  Pressure, heat, and microbes converted the organic matter into petroleum.  Buried sunshine?
  • 3.
  • 4. Potential Energy  Stored energy or energy of position
  • 5. Kinetic Energy  Energy related to motion  video clip
  • 6. Chemical energy  A form of potential energy that is stored in the bonds of chemical compounds.  Burning hydrocarbons releases energy in the form of heat and light
  • 7. Types of energy in chemical reactions  Endothermic: energy “enters” the reaction  Feels ________________  Exothermic: energy “exits” the reaction  Feels ________________
  • 8. Reactions take place in 2 steps:  1) Bonds must be broken in the starting reactants.  * When bonds are broken, energy is released. So this is an exothermic process.  CH4 + 2O2  C + 4H + 4O + Energy
  • 9. Step 2:  Separated atoms now join to form a new bonds to make the products.  It takes energy to form bonds, so this process is endothermic.  Energy + C + 4H + 4O  CO2 + 2 H2O
  • 10. CH4 + 2O2  C + 4H + 4O
  • 11. Net equation for burning of methane  CH4 + 2O2  CO2 + 2H2O + energy  Notice the energy shows up as a product so more energy was released so the reaction is exothermic.  gummy bear experiment
  • 12. Energy + 2H2O  2H2 + O2  Is more energy put into the reaction or released by the reaction?  Is the reaction endothermic or exothermic?  endothermic reaction