
Ideal gas law - Wikipedia
The equation of state given here (PV = nRT) applies only to an ideal gas, or as an approximation to a real gas that behaves sufficiently like an ideal gas. There are in fact many different forms of the equation of state.
The Ideal Gas Law - Chemistry LibreTexts
Consider the following equation: The term pV nRT is also called the compression factor and is a measure of the ideality of the gas. An ideal gas will always equal 1 when plugged into this equation. The greater it deviates from the number 1, the more it …
pV=nRT公式中各量含义及其单位 - 百度知道
pV=nRT是理想气体状态公式。 P指压强单位pa,V指体积单位m^3,n指气体的摩尔数(气体质量除以气体的 摩尔质量),R是摩尔气体常量。 一般 国际制单位 中R=8.31J、(mol.K),T为气体温度,一般以开尔文 (K)为单位。 这些都是 国际单位制。
理想气体状态方程_百度百科
大多数情况下,理想气体状态方程指的是克拉伯龙方程,即pV=NkBT,其中p是压强,V是体积,N是粒子数,T是温度,kB 是玻尔兹曼常数。 而波色气体和费米气体属于量子气体,具有全同性。 费米气体还需满足 泡利不相容原理。
Ideal Gas Equation (PV=nRT) - Universal Gas Constant, Laws
The ideal gas equation is formulated as: PV = nRT. In this equation, P refers to the pressure of the ideal gas, V is the volume of the ideal gas, n is the total amount of ideal gas that is measured in terms of moles, R is the universal gas constant, and T is the temperature.
Ideal Gas Law Calculator PV = nRT
2023年10月10日 · Calculate any variable in the equation for the Ideal Gas Law PV = nRT, where pressure times volume equals moles times the ideal gas constant times temperature.
气体常数 - 维基百科,自由的百科全书
气体常数 (又称 理想气体常数 、 普适气体常数,符号为 )是一个在 物态方程式 中联系各个 热力学函数 的 物理常数。 理想气体常数出现于最简单的物态方程,理想气体定律,如下: 其中: 此式亦能被写成: 其中: 同时也出现在 能斯特方程 及 劳仑兹-劳仑次方程 中。 在 国际单位制基本单位的重新定义 后,其值为一精准数字: J/ (K·mol)。 [1] 波兹曼常数 (多记为 )可以被用作其他形式的理想气体常数,在纯用粒子而不用摩尔计算时适用;其因数仅为 阿伏伽德罗数,写成: …
Ideal gases and the ideal gas law: pV = nRT - chemguide
This page looks at the assumptions which are made in the Kinetic Theory about ideal gases, and takes an introductory look at the Ideal Gas Law: pV = nRT.
Ideal Gas law - Definition, Equation, Units, Limitations, Derivation
The ideal gas equation is defined as the relationship between Boyle's law, Charles law & Avogadro's law. It is given as PV=nRT where R is the ideal gas constant. Visit to learn more.
理想气体方程 pV=nRT 如何推导? - 知乎
所以理想气体状态方程为: \frac {PV} {T}=\frac {p_ {0}v_ {0}} {T_ {0}}=nR\Rightarrow PV=nRT ,该方程反映了一定质量气体在同一状态下三个状态参量之间的关系,他是由法国科学家 克拉珀龙 (Benoit Pierre Emile Clapeyron)在波义耳~開尔文三定理的基础上于1834年提出;其中 R 由俄国 ...