理想气体

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  • ideal gas
理想气体理想气体
  1. 多变指数n与理想气体准静态过程

    The Polytropic Exponent n and the Quasi - static Process of ideal Gas

  2. 从一点到二点的,的积分。,from,one,to,two,of,p,dV。,这是理想气体,恒温过程,好的。

    So it 's , this is just the integral pdv And it 's an ideal gas , isothermal , right .

  3. 对于理想气体,我们知道u与体积无关。

    For the ideal gas , we know that u is volume independent .

  4. 在足够高的温度和足够低的压力下,这个比值趋于理想气体的r值。

    At sufficiently high temperature and low pressure this ratio approaches the value R for an ideal gas .

  5. N2O4的状态方程&有分解反应的非理想气体状态方程的讨论

    The equation of state for n_2o_4

  6. 理想气体分子,我们知道cA是,对参考浓度而言的。

    Knowing fully well that behind , that underneath the cA , is this reference concentration of one .

  7. 理想气体星球的Einstein场方程的解

    The Solutions of Einstein 's Field Equations for Ideal Gas Sphere

  8. 理想气体准静态过程的P(V)-(dQ)/(dW)理论及过程的分类

    P ( V ) - ■ Theory and Classification of Quasistatic Process of Ideal Gas

  9. Maxwell理想气体分子能量分布的相对论修正

    Relativistic Correction for Maxwell Energy Distribution of Ideal Gas Molecules

  10. 对于理想气体,温度一定,时偏U偏V等于零。

    Now , for an ideal gas , du / dV under = 0 constant temperature is equal to zero .

  11. 理解理想气体定律和计算在一个化学反应中CO2气体产生总量。

    Understand the principles of the Ideal Gas Law and measure the amount of CO2 gas created in a chemical reaction .

  12. 介现非理想气体的Mayer理论

    Mayer 's Theory for the Microsystem of Imperfect Gas

  13. 等于CvdT,du,is,Cv,dT。,因为是理想气体,所以等于w1一撇。

    Du It 's an ideal gas , and that 's equal to w1 prime .

  14. HFC-134a声速与理想气体比热的试验研究

    Measurement on speed of sound and ideal gas heat capacity for HFC-134a

  15. 本文引入天然气压缩系数Z,对理想气体状态方程进行修正,提高了流量计温压补偿的准确性。

    The natural gas compres - sion factor Z is introduced to modify the perfect gas equation and increase the accuracy of the temperature and pressure compensation for the flow meter .

  16. 最后一章我们给出了解决流体力学问题的数值方法,内容包括雅可比矩阵特征值和特征向量的计算、通量的分裂及理想气体状态的Euler方程的混合格式。

    These include analytical eigenvalues and eigenvectors of the Jacobian matrix , flux splitting and the hybrid scheme for solution of Euler equations using real gas state laws .

  17. 由理想气体方程、黑体辐射的Planck分布及松原函数的协变性给出运动温度收缩关系的新论证;

    The covariance of the state equation about ideal gas , Planck_law about black body radiation and thermodynamic Matsubara_function gives new proof of motion_temperature contraction .

  18. 本文对推导理想气体状态方程的热力学方法中普适气体常数R的引入,提出了自己的看法,进而明确了该方程在热力学中的公理地位。

    This paper has proposed its opinion on the lead - through of the general constant R in the deductive method of thermodynamics of the state equation for ideal gases , and thus explicates the principled state of the equation in the thermodynamics .

  19. HFC-125气相声速和理想气体比定压热容的研究

    Study on speed of sound and ideal - gas heat capacity at constant pressure for HFC-125

  20. 同时对烧蚀产生的等离子体采用理想气体状态方程,结合HD方程组,模拟计算了喷发过程中压力的空间演化过程。

    The pressure evolution profile of plasma generated by IPIB irradiated Al target with high enough beam energy density has also been calculated by combining the ideal gas model of plasma and HD equations .

  21. 用PV图和TS图讨论理想气体状态方程、热力学第一定律及热容C,其优点较为直观。

    This paper discusses the State Equation for Ideal Gases , the First Law of the Thermodynamics and Heat capacity with the PV figures and TS figures which make it easy to find the heat , work and energy change .

  22. 由London理论得知,当维数n<6时,不同维数的经典非理想气体的物态方程的形式基本一样,且与能谱关系无关;

    When the dimension n ( n < 6 ) is different , we get conclusions , by the London 's theory , that the equations of state for classical non-ideal gases are similar and have nothing to do with the relation between energy and spectrum .

  23. 围绕以氢气替代理想气体采用置换法测定摩尔气体常数R的实验,设计了相应的计算程序,并通过学生的实验数据验证该程序的可行性和可靠性。

    In this article , hydrogen is adopted to displace the ideal gas in the experiment of " measuring the Molar gas constant R by displacement method " and a corresponding calculator program is designed . The program is proved feasible and reliable by the students ' experimental data .

  24. 根据实验数据,由热力学关系式得到了HFC152a在四个温度下的理想气体比热容和第二音速维里系数。

    The ideal gas heat capacity as well as the second acoustic virial coefficient has been deduced from the sound velocity measurements .

  25. 由于大功率激光被充满D-T气体的玻壳靶均匀吸收,并把D-T气体作为理想气体处理。

    Giant pulse laser energe is absorbed uniformly by the shell of glass pellet filled with D-T gas . D-T gas is taken as the perfect gas here .

  26. 同时对于爆轰产物采用了JWL状态方程,并将空气简化成理想气体。

    At the same time , for the detonation products , the JWL state equation is adopted , and the air is approximately regarded as the ideal gas .

  27. TE(ThermodynamicPropertiesEstimation)1.0程序是为估算理想气体状态下有机分子(含自由基和部分金属有机分子)的热力学数据而编写。

    TE 1.0 an acronym for Thermodynamic properties Estimation , is a computer code designed to estimate the ideal gas phase thermodynamic properties automatically for organic molecules and radicals , including some organometallic molecules , where the group additivity principles of Benson is used .

  28. 在输气管高达10MPa的高压下,天然气的热物性若用理想气体状态方程进行分析计算,将会产生很大的误差。

    When high transportation pressure close to 10 MPa , it will bring about large error if calculated by using ideal state equation of gas .

  29. 根据Hugoniot方程、理想气体状态方程、等熵方程、质量和动量守恒方程,计算出爆炸后的冲击波参数,如压力、温度、速度、密度等。

    According Hugoniot equation , ideal-gas equation , entropy equation , mass and momentum equation , we will figure out the C-J parameter of gas-phrase detonating , such as pressure , temperature , velocity and density .

  30. 对于理想气体,由该模型得出的爆轰参数与CJ-ZND模型相近。

    For ideal gases , the detonation parameters calculated by this model are near to those calculated by CJ-ZND model .