4) ideal gas
理想气体
1.
Basic differential equation of self-similar motion of one-dimensional nonsteady flow of ideal gas;
理想气体一维不定常流自模拟运动的基本微分方程
2.
A deducing method of the average translational kinetic energy of the ideal gas molecules;
理想气体分子的平均平动能的一种推导方法
3.
Discussion on the state equation of the ideal gas "pV=Nk_BT";
对理想气体方程pV=Nk_BT的讨论
5) perfect gas
理想气体
1.
Analysis for several questions of perfect gas in the process of heat imsulation;
理想气体绝热过程若干问题分析
2.
several method to solve question about perfect gas;
理想气体问题的几种基本解法
3.
The state function, entropy, is introduced by the means of a perfect gas behavior, and the second law of thermodynamics is demonstrated based on the first law.
本文以理想气体的行为为手段引出熵函数,并以热力学第一定律为基础,论证了熵增大原理。
6) Ideal gases
理想气体
1.
A concise derivation of the pressure formula of ideal gases is given by considering the gas molecules moving within spherical container.
本文从球形容器中理想气体入手 ,用一种简单易懂且不失一般性的方法 ,推导出理想气体压强公式 。
2.
which used thermodynamics alone, in line with the hypothe- sis of James Clerk Maxwell velocity distribution and energy, we may derive two course equation on isotherm and heat in- sulation process of ideal gases.
与通常单独从热力学推导相反,本文用能量和麦克斯韦速度分布假设推导出理想气体等温过程和绝热过程的过程方程。
3.
Pressure formula of ideal gases is right.
采用玻耳兹曼统计验证了理想气体压强公式是完全正确的。
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