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- Discussion on the Ideal Gas Equation and Joule's Law 关于理想气体状态方程和焦耳定律
- This equation is known as the ideal gas law. 这个等式被叫做理想气体定律。
- The Comparison of Thermo-physical Property Between Real Gas and Ideal Gas Equation Under Low Temperature 低温下实际与理想气体状态方程的热物性比较
- ideal gas equation [化] 理想气体状态方程
- ideal gas equation of state [化] 理想气体状态方程
- the ideal gas equation 理想气体状态方程
- Real gas satisfies approximately ideal gas state equation only in case that the pressure is low and temperature high. 实际气体仅在压力较低、温度较高的情况下近似满足理想气体状态方程式。
- There are two paths for establishment of the state equation of ideal gas, to one path, the Joule's law is independent, to the other, it is not. 摘要建立理想气体状态方程有两条途径,沿第一条途径焦耳定律是独立的,而沿第二条途径则焦耳定律不独立。
- The kinetics base of the special relativity. Equilibrium state, basic concept of gas kinetics, pressure equation and temperature equation of ideal gas. 狭义相对论动力学基础;平衡态,气体动理论的基本概念,理想气体的压强和温度公式。
- The definition of ideal gas is discussed. For gaving this definition, none of the equation of state and Joule"s law can be dispensed with. 讨论了理想气体的定义,指出理想气体状态方程与焦耳定律对于定义理想气体是缺一不可的.
- The application of Maxwell velocity distribution law rigidly proves that the statistical proof on the state equation of ideal gas. 摘要应用麦克斯韦速度分布律严格证明了理想气体状态方程。
- Abstract: The definition of ideal gas is discussed. For gaving this definition, none of the equation of state and Joule"s law can be dispensed with. 文摘:讨论了理想气体的定义,指出理想气体状态方程与焦耳定律对于定义理想气体是缺一不可的.
- Equilibrium state, basic concept of gas kinetics, pressure equation and temperature equation of ideal gas, theorem of equipartition of energy, internal energy of ideal gas. 平衡态,气体动理论的基本概念,理想气体的压强和温度公式。能量均分定理,理想气体的内能。
- A method of studying the characters was proposed by the piecewise process and the polytropic exponent based on ideal gas polytropic equation adapted generally at present. 针对目前普遍采用的理想气体多变方程,提出分段处理多变指数的研究方法。
- The handwritten manuscript titled "Quantum theory of the monatomic ideal gas" was dated December 1924. 命名为"单原子的理想气体量子说"的手稿起始于1924年。
- The density of an ideal gas at constant pressure varies inversely with the temperature. 理想气体在不变的压力下密度与温度成正比。
- Interaction between a reversible engine (A) and a reversible ideal gas Carnot cycle (B). (Illustration courtesy of OCW. 可逆热机(A)和理想气体可逆卡诺循环(B)的相互作用。(图片由开放式课程提供。)
- Thermodynamic system, microscopic quantity and macroscopic quantity, statistical average value, pressure equation, temperature equation, concept of degree of freedom, theorem of equipartition of energy, internal energy of ideal gas. 热力学系统,微观量与宏观量,统计平均值;压强公式,温度公式;自由度的概念,能量均分定理和理想气体的内能。
- Under the assumption of the constant temperature, pressure, smoke concentration within each layer and by using conservation of mass, energy, components and the state equation of the ideal gas, a multi-layer zone model is introduced. 通过假定每个水平控制层内的物理参数(如温度、压强、烟气浓度等)为均匀分布,并运用质量守恒原理、能量守恒原理、组分守恒方程以及理想气体状态方程,建立了一个可以获得火灾发展过程中温度和浓度垂向分布的多层区域模型。
- Understand the principles of the Ideal Gas Law and measure the amount of CO2 gas created in a chemical reaction. 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。