IB Physics: Core Concepts and Formulas of Thermodynamics | IB物理:热力学核心概念与公式梳理

📚 IB Physics: Core Concepts and Formulas of Thermodynamics | IB物理:热力学核心概念与公式梳理

Thermodynamics is a central topic in IB Physics, linking microscopic particle behaviour with macroscopic measurable quantities. This article consolidates the core concepts and formulas you need for exams.

热力学是IB物理的核心主题,将微观粒子行为与宏观可测量量联系起来。本文旨在系统梳理考试所需的核心概念与公式。


1. Temperature and Heat | 温度与热

Temperature is a measure of the average kinetic energy of the particles in a substance. It is not the same as heat; heat is energy transferred from a hotter body to a colder body due to a temperature difference.

温度是物质粒子平均动能的量度。它与热不同;热是由于温差而从高温物体传递到低温物体的能量。

In IB Physics, thermodynamic temperature must be expressed in kelvin (K). To convert from Celsius:

在IB物理中,热力学温度必须以开尔文(K)为单位。从摄氏度转换时:

T(K) = T(°C) + 273.15

Note that a change of 1°C equals a change of 1 K, so temperature differences are identical in both scales.

注意1°C的变化等于1K的变化,因此两种温标的温度差相同。


2. Internal Energy | 内能

Internal energy U is the total kinetic and potential energy of the molecules in a system. For an ideal gas, intermolecular potential energy is negligible, so U depends only on temperature.

内能U是系统内所有分子动能与势能的总和。对于理想气体,分子间势能可忽略,因此U仅取决于温度。

For a monatomic ideal gas:

对于单原子理想气体:

U = (3/2)nRT

For a diatomic gas, U = (5/2)nRT. In general, the change in internal energy is given by ΔU = nCVΔT, where CV is the molar heat capacity at constant volume.

对于双原子气体,U = (5/2)nRT。一般而言,内能变化为ΔU = nCVΔT,其中CV是定容摩尔热容。


3. Work and P-V Diagrams | 功与P-V图

Work done by a gas is related to the area under the pressure-volume (P-V) curve. When the volume changes, the work done by the gas is given by:

气体做功与压强-体积(P-V)曲线下的面积相关。当体积变化时,气体对外做功为:

W’ = ∫ P dV

For an isobaric (constant pressure) process:

对于等压(定压)过程:

W’ = PΔV

If a gas expands, it does positive work on the surroundings; if compressed, negative work is done. In P-V diagrams, the work is the area between the curve and the volume axis. A cyclic process forms a closed loop, and the net work equals the area enclosed by the loop.

如果气体膨胀,它对外界做正功;如果被压缩,则做负功。在P-V图中,功等于曲线与体积轴之间的面积。循环过程形成闭合回路,净功等于回路所围的面积。


4. The First Law of Thermodynamics | 热力学第一定律

The first law is a statement of energy conservation. It relates the change in internal energy ΔU to heat Q absorbed by the system and work W done on the system:

第一定律是能量守恒的表述。它将内能变化ΔU与系统吸收的热量Q和外界对系统做的功W联系起来:

ΔU = Q + W

Here, W is positive when work is done on the system (compression), and Q is positive when heat enters the system. An equivalent form uses work done by the system:

这里,当外界对系统做功(压缩)时W为正,当热量进入系统时Q为正。等价形式使用系统对外做功:

ΔU = Q – W’

where W’ is the work done by the system. Always state your sign convention in exam solutions to avoid errors.

其中W’是系统对外做的功。在考试答题中务必说明你的符号约定以避免错误。


5. Ideal Gas Law and Kinetic Theory | 理想气体定律与分子动理论

Published by TutorHao | IB Physics Revision Series | aleveler.com

更多咨询请联系16621398022(同微信)

Comments

屏轩国际教育cambridge primary/secondary checkpoint, cat4, ukiset,ukcat,igcse,alevel,PAT,STEP,MAT, ibdp,ap,ssat,sat,sat2课程辅导,国外大学本科硕士研究生博士课程论文辅导

This site uses Akismet to reduce spam. Learn how your comment data is processed.

Discover more from aleveler.com

Subscribe now to keep reading and get access to the full archive.

Continue reading