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  • Home
  • About
  • Blog
    • Recent Posts
  • Resources
    • Lessons By Topic >
      • Physics >
        • Motion
        • Forces
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        • Circular Motion
        • Waves
        • Electricity
        • Atomic Physics
        • Astrophysics
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        • Chemical Reactions
      • Science Practices >
        • Nature of Science
        • Engineering
    • Collections >
      • Demonstrations
      • Mystery and Breakout Tasks
      • Team Building
      • Mystery Pixel Art
      • Google Form Walk Arounds
      • Design Problems
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      • Online/Hybrid Lessons
    • Posters
    • 3D Printed Kits >
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      • Radioactive Dice
      • Tangram Square Challenge
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      • Button Battery LED Holder
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      • Cup Balance
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      • Science Songs
      • Top Tweets
  • Notes
    • Science Skills
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    • Force Fields
    • Circular Motion
    • Energy
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Thermal Physics

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Content Guide - Thermal Physics (pdf)
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Content Guide - Thermal Physics (editable)
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Content Guide - Thermal Physics - KEY (pdf)
File Size: 348 kb
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Content Guide - Thermal Physics - KEY (editable)
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1 - Heat vs Temperature

  • I can explain the relationship between temperature and molecular kinetic energy
  • I can describe the energies present in an object’s total internal energy
  • I can convert between Celsius and Kelvin
  • I can describe the nature of molecules when at a temperature of absolute zero
  • I can compare temperature (average KE) and heat (total KE)
  • I can relate average molecular kinetic energy with absolute temperature
  • I can calculate the average molecule speed for a molecule at a certain temperature
  • I can describe the molecular process that allows heat to flow
1 - Heat vs Temperature - COMPLETE (pdf)
File Size: 1248 kb
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1 - Heat vs Temperature - COMPLETE (editable)
File Size: 4696 kb
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1 - Heat vs Temperature - STUDENT (pdf)
File Size: 1221 kb
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1 - Heat vs Temperature - STUDENT (editable)
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2 - Specific Heat Capacity

  • I can define specific heat capacity with proper units
  • I can describe the effect of larger or smaller specific heat values 
  • I can relate specific heat capacity to the heat energy and temperature change
  • I can describe how a calorimeter uses the conservation of heat to study a material’s specific heat
  • I can experimentally determine the specific heat capacity of a material
2 - Specific Heat Capacity - COMPLETE (pdf)
File Size: 514 kb
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2 - Specific Heat Capacity - COMPLETE (editable)
File Size: 456 kb
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2 - Specific Heat Capacity - STUDENT (pdf)
File Size: 470 kb
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2 - Specific Heat Capacity - STUDENT (editable)
File Size: 433 kb
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3 - Specific Latent Heat

  • I can identify key features in a material’s heating curve
  • I can describe why a heating curve plateaus during phase changes
  • I can describe the different ways that the heat added to a system can become internal energy
  • I can define specific latent heat with proper units
  • I can calculate the heat required to cause a certain amount of a substance to change phases
  • I can compare the processes of evaporation and boiling
3 - Specific Latent Heat - COMPLETE (pdf)
File Size: 613 kb
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3 - Specific Latent Heat - COMPLETE (editable)
File Size: 1045 kb
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3 - Specific Latent Heat - STUDENT (pdf)
File Size: 544 kb
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3 - Specific Latent Heat - STUDENT (editable)
File Size: 996 kb
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4 - Conduction, Convection, and Radiation

  • I can define the thermal transfer processes of conduction, convection, and radiation
  • I can quantify and calculate thermal conductivity
  • I can describe convection in terms of fluid density differences
4 - Conduction, Convection, & Radiation - COMPLETE (pdf)
File Size: 988 kb
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4 - Conduction, Convection, & Radiation - COMPLETE (editable)
File Size: 1338 kb
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4 - Conduction, Convection, & Radiation - STUDENT (pdf)
File Size: 948 kb
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4 - Conduction, Convection, & Radiation - STUDENT (editable)
File Size: 1315 kb
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5 - Gas Properties

  • I can define pressure with appropriate fundamental and derived units
  • I can describe the importance of having a large quantity like the “mole” defined
  • I can use the average atomic weight of an element to convert between mass and moles
5 - Gas Properties - COMPLETE (pdf)
File Size: 1366 kb
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5 - Gas Properties - COMPLETE (editable)
File Size: 2601 kb
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5 - Gas Properties - STUDENT (pdf)
File Size: 1332 kb
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5 - Gas Properties - STUDENT (editable)
File Size: 2488 kb
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6 - Gas Laws

  • I can describe the conditions necessary for a substance to be considered an ideal gas
  • I can describe the relationship between volume, pressure, and temperature for an ideal gas
  • I can describe changes in pressure in terms of kinetic molecular theory
  • I can use the Ideal Gas Law to solve for pressure, volume, amount, or temperature
  • I can use the Ideal Gas Law to describe how changing one or more variable(s) affects another
  • I can calculate the total internal energy for an ideal gas
6 - Gas Laws - COMPLETE (pdf)
File Size: 1278 kb
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6 - Gas Laws - COMPLETE (editable)
File Size: 3300 kb
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6 - Gas Laws - STUDENT (pdf)
File Size: 939 kb
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6 - Gas Laws - STUDENT (editable)
File Size: 3204 kb
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7 - Heat, Mechanics, and Electricity

  • I can use conservation to calculate the temperature change when mechanical energy is converted to heat
  • I can relate power and time to the applied heat energy
  • I can connect electrical power to heat energy for electrical heating elements
7 - Heat, Mechanics, & Electricity - COMPLETE (pdf)
File Size: 434 kb
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7 - Heat, Mechanics, & Electricity - COMPLETE (editable)
File Size: 340 kb
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7 - Heat, Mechanics, & Electricity - STUDENT (pdf)
File Size: 198 kb
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7 - Heat, Mechanics, & Electricity - STUDENT (editable)
File Size: 230 kb
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