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- thermal molecular flow 热分子流
- The distributions of the molecular flow field in spherical and pillar systems are simula-ted by Monte Carlo method in this paper. 本文利用蒙特卡罗方法模拟了球形和柱形系统中分子流场的分布,给出了分布曲线。
- Two methods of measuring conductance are introduced under the condition of molecular flow,namely,with constant volume method and constant pressure method. 在分子流条件下,给出了定容法和恒压法测量流导的方法,分析了测量不确定度。
- The measurement characteristic of SRG was analyzed, and the conclusion was that the rates of the rotational decay of SRG caused by the different gas species could be added up in the molecular flow regime. 分析了磁悬浮转子规的测量特点,指出在分子流范围内,不同气体成分引起的磁悬浮转子规转速衰减率具有可线性迭加性。
- The one dimensional simulation revealed the agreement of the method with the free molecular flow, the exact solution of the continuum flow and the precise solution of the Boltzmann equation. 一维模拟显示其与自由分子流,连续介质的准确解和玻尔兹曼精确数值解相符。
- Mean Free Path and Molecular Flow 气体分子平均自由程与分子
- It is this molecular motion that we call heat. 就是这种分子运动我们称之为热。
- Magnetism is considered as a molecular phenomenon. 电磁被认为是一种分子运动。
- A term sometimes applied to a stylus in a thermal matrix printer. 有时用来指热敏点阵打印机的触针的一个术语。
- A plasma globulin of high molecular weight. 大球蛋白细胞分子中较重的血球蛋白
- Optimal wing configuration of a Tethered Satellite system in free molecular flow 自由分子流中系留卫星系统的最佳机翼构型
- Orifice method for measuring molecular flow conductance with linear vacuum gauge 用线性真空规测量小孔分子流流导的方法研究
- Keywords Ni+;molecular flows of n-alkanes;gas-phase reaction; 镍离子;气相反应;分子束流;
- A hot, dry thermal sat there like a brooding hen. 干热低压槽犹如抱窝的母鸡赖着不走。
- STUDY ON METHOD OF MEASURING ORIFICE MOLECULAR FLOW CONDUCTANCE BY INCREASING PRESSURE 升压法测量小孔分子流流导的方法研究
- Some precision gages used a thermal compensator. 有些精密仪器用了热补偿器。
- We think of magnetism as a molecular phenomenon. 我们认为电磁是一种分子现象。
- A COMPARISON STUDY ON THE DISTRIBUTIONS OF THE MOLECULAR FLOW FIELD IN SPHERICAL AND PILLAR SYSTEMS 球形和圆柱形系统内分子流场分布的对比研究
- There must be a threshold of thermal noise. 必有一个热噪声的门限值。
- Thermal conductivity varies for different gases. 热传导率因不同气体而异。