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Internal Energy, Absolute Zero and the Kelvin Scale

Internal energy is the total kinetic and potential energy of the particles in a body, counted over their random motion rather than the motion of the body as a whole. Absolute zero is where that random kinetic energy is as low as it can go, and the kelvin scale starts there.

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What a learner can do afterwards

  • Separates internal energy from the kinetic energy of the whole object
  • Converts between degrees Celsius and kelvin and explains why a difference is the same size in both
  • Says which part of the internal energy changes during melting, when the temperature does not

1 · Read

Internal energy totals the kinetic and potential energy of the particles themselves, counted over their random motion. It never includes the motion of the whole body, so a speeding cold football has no extra internal energy.

Try it together

Ice melting at zero degrees keeps the same temperature while it melts. The incoming heat breaks bonds instead, raising the potential part while the kinetic part stays flat.

Absolute zero is where random kinetic energy is as low as it can go, and the kelvin scale starts there. Add 273 to a Celsius reading to get kelvin, and note that one step is the same size on both scales.

Good to know

Write kelvin without the degree sign, as in 298 K. A rise of 10 degrees Celsius is exactly a rise of 10 kelvin, since only the zero points differ.

Internal energy belongs to the particles, and kelvin counts the same steps from absolute zero.

2 · Watch

Take it off screen

Print a worksheetA4 with an answer key page for grown-ups. No screen, no internet.

Where it sits

Where this leads

Jobs that lean on this skill. Follow one to see everything it is built on.

Then practise

8 questions wait behind this lesson, each with its answer explained. Every answer feeds the sky: stars light as they are learned, and dim when it is time to come back.

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Internal Energy, Absolute Zero and the Kelvin Scale · Science, ages 16 to 17 · LightMySky