The sum of the random distribution of kinetic and potential energies within a system of molecules
When an exam question asks you to define “internal energy”, you can lose a mark for not mentioning the “random motion” of the particles or the “random distribution” of the energies, so make sure you include one of these in your definition!
ΔU ∝ ΔT

As the container is heated up, the gas molecules move faster with higher kinetic energy and therefore higher internal energy
A student suggests that, when an ideal gas is heated from 50?oC to 150?oC, the internal energy of the gas is trebled.State and explain whether the student’s suggestion is correct.
Step 1: ??????????
Write down the relationship between internal energy and temperature
The internal energy of an ideal gas is directly proportional to its temperature
ΔU ∝?ΔT
Step 2: ??????????
Determine whether the change in temperature (in K) increases by three times
The temperature change is the?thermodynamic?temperature ie. Kelvin
The temperature change in degrees from 50?oC to 150?oC increases by three times
The temperature change in Kelvin is:
50?oC + 273.15 = 323.15 K
150?oC + 273.15 = 423.15 K

Therefore, the temperature change, in Kelvin, does?not?increase by three times
Step 3: ??????????
Write a concluding statement relating the temperature change to the internal energy
The internal energy is directly proportional to the temperature
The thermodynamic temperature has not trebled, therefore, neither has the internal energy
Therefore, the student is incorrect
If an exam question about an ideal gas asks for the?total internal energy, remember that this is equal to the?total kinetic energy?since an ideal gas has?zero potential energy
轉載自savemyexams
以上就是關于【CIE A Level Physics復習筆記16.1.1 Internal energy】的解答,如需了解學校/賽事/課程動態,可至翰林教育官網獲取更多信息。
往期文章閱讀推薦:
2026 ALEVEL 夏考A率出爐!愛德思vs牛津AQA,哪些科目真的“好出分”?
2026 AMC10/12美國數學競賽新賽季!【翰林教育 × 清華大學出版社】獨家教材全面發售!

? 2026. All Rights Reserved. 滬ICP備2023009024號-1