1.
Lattice Boltzmann model for particle Brownian motion
模拟颗粒布朗运动的格子Boltzmann模型
2.
Arithmetic for Microfluidic Temperature Measurement Based on the Image Analysis for Brownian Motion of Nano-meter Particles
基于纳米颗粒群布朗运动图像分析的微流体温度测量算法
3.
Monte-Carlo Simulation of the Undamped Brownian Particle's Two-dimensional Motion
无阻尼布朗粒子二维运动的Monte-Carlo模拟
4.
Particles in Brownian motion can often be seen in colloids under special conditions of illumination.
布朗运动中的颗粒在特殊的照明条件下可以通过胶体的形式被观察到。
5.
BROWNIAN MOTION IN A PERIODIC POTENTIAL DRIVEN BY COLORED NOISE
色燥声驱动的布朗粒子在周期势场中的运动
6.
Numerical Simulation of Airflow and Tracks of Particles in Air-conditioned Room;
空调室内流场及颗粒物运动分布的数值模拟
7.
Research on Transport Model of Ultrafine Particle in the Indoor Environment;
室内超细颗粒物的运动分布模型的研究
8.
Brown had noticed that tiny particles, such as those inside pollen grains, move haphazardly[ see box on opposite page].
布朗注意到微小的粒子,如花粉中的微粒,会随意地运动(48页〈拳伺候〉。
9.
Direct Numerical Simulation of Turbulent-Brownian Particle Collisions in Isotropic Turbulence;
均匀湍流内湍流—布朗颗粒碰撞的直接模拟研究
10.
The path of a particle in Brownian motion is erratic and frequently changes direction.
一个布朗运动粒子的路径是不规则的,并且常常改变方向。
11.
This simple result is at the root of the arithmetic and algebra of Brownian motion and particle diffusion.
这个简单的结果是粒子扩散和布朗运动的算术和代数基
12.
In 1827, upon observing a suspension of pollen grains in water, he discovered BROWNIAN MOTION.
在1827年,在观察水中悬浮的花粉粒时,发现了布朗运动。
13.
Brownian Motion of a Charged Test Particle Near a Dielectric Half-space or a Perfectly Reflecting Plane;
均匀介质或全反射平面边界附近荷电试验粒子的布朗运动
14.
Diffusion Properties of Interacting Brownian Particles in Concentrated Colloidal suspensions
浓悬浮液中相互作用布朗运动粒子的扩散特性研究
15.
Application of fractional Brownian motion particle tracking model to coastal contaminant dispersion
加速分数型布朗运动粒子追踪模型在水面污染扩散中的应用
16.
This article introduces a particles movement simulation system based on distributed computing.
本文介绍了—个基于分布式计算的颗粒运动仿真系统。
17.
Research on Characteristic of the Particle Concentration Distribution and Flow at the Exit Zone in Circulating Fluidized Bed Boilers;
循环流化床锅炉出口区域颗粒浓度分布和运动特性的研究
18.
These devices exploit the fact that Brownian motion displaces small particles farther than it does big ones.
这些元件利用的原理是,布朗运动让较小的粒子移动得比大的粒子远。