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1)  locus equat ion
音轨方程
2)  track equation
轨迹方程
1.
Kinematic analysis for certain and uncertain eccentricity plane lapping processes with the ring polishing machine were studied and compared,pace vector and track equation about one point relative to examination piece on polishing pad were presented.
对修正环形抛光机定偏心和不定偏心平面研磨进行了运动分析,给出了研磨盘上一点相对于工件的速度矢量与轨迹方程,讨论了研磨盘上不同位置的点的相对轨迹。
2.
By explaining the method of conic "not set up " and total elimination and concluding the law of the straight-line where the mid-point trajectory and the mid-point sting are in,this paper demonstrates the method of solving the track equation where the strings of the mid-point trajectory and the mid-point strings are in.
通过圆锥曲线讲解设而不求与整体消元的解题方法,并利用这种方法归纳弦中点轨迹、中点弦所在直线的规律,给出了解决弦中点轨迹方程、中点弦所在直线方程的方法。
3)  locus equation
轨迹方程
1.
Based on the basic principles of differential geometry the locus equation of the movement of the grinding wheel center during clearance face grinding of the major cutting edge of a ball nose end milling cutter with equal orthogonal clearance angle is deduced,which supply the NC grinding of the clearance face of a ball nose end milling cutter with a feasible mathematical mode
利用微分几何的基本理论,建立了球头立铣刀端刃等主后角刃磨时,砂轮中心的运动轨迹方程,从而为球头立铣刀端刃后刀面的数控刃磨加工提供了可行的数学模型。
2.
In this paper, by cross ratio, on affine plane, as to conic, we probe the locus equation of intersection point of two tangent lines with intersectional angle θ, and reveal several special examples about it.
利用交比 ,在仿射平面上 ,对于二阶曲线 ,探求交成θ角的两切线的交点的轨迹方程 ,进而揭示其若干特殊情形 。
3.
The locus equation of the non - locatized interference fringe is given.
本文绘出了非定域干涉条纹的轨迹方程,定量分析了观察屏正截和斜截时所得干涉条纹的几何形状。
4)  orbital equation
轨道方程
1.
The conservation tensor and orbital equation of the isotropic three-dimensional harmonic oscillator;
三维各向同性谐振子的守恒张量及其轨道方程
2.
Based on the Schwarzs Child Gauge, the moving orbital equation of the planets round the sun is derived, from directly finding the solution of the three geodefic equations relevant to r, φ and t.
根据施瓦茨希德度规 ,直接求解关于r,φ ,t的三个短程线方程 ,导出行星绕太阳运动的轨道方程。
3.
In this paper,we give the orbital equations of a classical particle in coulomb poten tial and isotropic oscillate potential and their screened potentials are given.
计算了经典粒子在库仑势场、球谐振子势场及其屏蔽势场中的运动轨道方
5)  orbit equation
轨道方程
1.
The equation can be used to get the orbit equation easily.
并将其应用于有心力问题及抛体问题 ,导出了有心力问题的轨道微分方程Binet公式及抛体轨道方程。
2.
The motion of charged particle acted upon by Lorentz force and other external force are analyzed,calculating formulae of orbit equation and curvature radius are derived.
分析了带电粒子受到洛伦兹力和其他恒定外力作用下的运动情况,导出了轨道方程和曲率半径的计算公式。
6)  Sonic equation
音速方程
补充资料:DTS音轨
所谓DTS音轨,采用的是经由DTS(DigitalTheaterSystems)编码后的5.1声道标准。DTS的最大编码流量与LPCM相同,也就是每秒48000*16*2=1536000bps=1536kbps。相对而言,这远比另一种流行的多声道编码系统——DolbyDigital(AC3)所提供的448kbps来得大,换句话说也就是DTS在多声道音品的压缩过程中失真小得多。这一特点使得DTS在多声道编码系统中有着先天的优势,也正因为如此,与DTS相关的制品和设备也市场上日渐受到消费者的青睐。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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