On the analogy of the magnetic and gravitational buoyancy forces, the concept of the magnetic acceleration is proposed.
通过对磁浮升力与重力浮升力的类比,提出磁加速度的概念。
Unlike the gravitational acceleration, the magnetic acceleration is a location-dependent variable and its magnitude and direction vary with the magnetic circuit configuration.
与重力加速度相比,磁加速度是一个依赖于空间位置的变量,其大小和方向随外磁场的磁路布置发生改变。
From the definition for the magnetic acceleration, the ideal magnetic field model and the magnetic field intensity profile needed for creating the micro-gravity environment are presented.
由磁加速度的定义出发,提出了理想磁场模型和实现微重力环境所要求的磁场强度分布。
Application of magnetic fluid acceleration sensor is a new subject in the country, which is of great significance for the development of new sensor.
将磁性液体应用到加速度传感器领域,这在国内还是一个崭新的课题,对于新型传感器的开发有重要意义。
Sensor devices: driver and application software development of sensor devices such as magnetic, humiture, acceleration and other kinds, as well as the technical support for customers in China.
传感器:地磁、温湿度、加速度等各种传感器的驱动及应用软件的开发,以及中国区客户的技术支持。
The initial acceleration is due to the strong shock-related magnetic field compression.
开始的加速是由于强激波相关的磁场压缩导致的。
Important questions are discussed: transport equations of waves through weak inhomogeneous media, turbulent acceleration and magnetic dynamo.
讨论了如下重要课题:弱非均匀性介质中波的传播方程,湍动加速和磁发电机制。
The mounting resonant frequency of vibration measurement system formed with piezoelectric acceleration sensor YD-1 and mounted magnetic base CZ-4 is addressed.
介绍了YD - 1型压电式加速度传感器与CZ - 4型磁座构成的磁座安装测振系统的安装谐振频率。
The speed and the acceleration of the key movement about external circle magnetic force grinder are analyzed.
对外圆磁力研磨机摆动机构关键点的运行速度、加速度进行了分析计算。
In this thesis, magnetic fluid was used in designing an acceleration sensor. And this is an advanced subject.
本文将磁流体用于加速度传感器的设计还是一项比较先进的课题。
The existence of electric current in the conductor(not closed)which is cut-ting the magnetic lines of force(B-lines) variably in the magnetic field is pointed out, and the acceleration is discussed.
指出了在磁场中做变速切割磁力线(线)运动的导体(不闭合)中有电流存在,讨论了其运动加速度。
We suggest that the powerful electromotive force caused by the rapid changes of the magnetic flux created the conditions of acceleration of electrons and protons.
我们猜想,可能是磁通量的迅速变化引起的强大电动势造成了电子和质子加速的条件。
The electron beam transverse temperature variations with anode region and acceleration tube design parameters as well as the uniform solenoidal magnetic field are presented.
给出了电子束的横向温度随电极结构和螺线管纵向磁场的变化情况。
By the classical electromagnetic theory, the effect of applied electrical and magnetic field on THz emission can be attributed to the acceleration motion of carriers in semiconductors.
借助于经典电磁理论的定性分析,认为太赫兹发射光谱在外加电场、磁场作用下的增强起源于半导体中载流子的加速运动受外加电场和磁场的影响。
While the magnetic pulses of shorter-period appeared at the last stage of the experiment, may be induced by instantaneous electric current of the accumulated charge during the cracking acceleration.
而在主破裂阶段,积累电荷的急速运动形成瞬间电流,激发了脉冲式的磁场异常。
Field acceleration method is a new control method for induction motor. Its electro-magnetic process can be analysed with the transient equivalent circuit.
磁场加速法是一种新型、高性能的感应电动机控制方法,其电磁过程可用暂态等值电路进行分析。
All this adds up to unexpectedly rapid cosmic-ray acceleration in a magnetic field amplified by a factor of more than 100.
所有这些因素加在一起,造成在一个被放大了100倍以上的磁场中宇宙射线的加速异乎寻常地快。
Since both KAWs and SKAWs have the magnetic-filed-aligned electric field, these waves are applied to the acceleration and heating of plasmas in magnetosphere widely.
KAW和SKAW均携带平行于背景磁场的电场,因此被广泛应用于带电粒子的加速和加热。
Since both KAWs and SKAWs have the magnetic-filed-aligned electric field, these waves are applied to the acceleration and heating of plasmas in magnetosphere widely.
KAW和SKAW均携带平行于背景磁场的电场,因此被广泛应用于带电粒子的加速和加热。
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