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量微分
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  signal differential
     This paper states the essences and necessities of PID control in the closed automatic control system and explores the PID control tactics algorithm, digital filter, uncompleted differential PID, feedback signal differential PID algorithm, as well as calculation formula of PID and explores ways and the means what PID control for the Programmable Logic Controller.
     阐述了在闭环自动控制系统中PID的重要性和必要性,并介绍了可编程序控制器中“PID”的控制方式、PID的算法、数字滤波、不完全微PID、反馈量微分PID算法以及PID的计算公式;
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  “量微分”译为未确定词的双语例句
     A(a) Stability Analysis of Runge-kutta Methods for Neutral Linear Delay Systems
     中立型多滞量微分系统Runge-Kutta方法的A(a)稳定性分析
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     Superlinear Delayed Differential Equation
     超线性单滞量微分方程的研究
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     Starting from the current-voltage equation given by A. Van der Ziel (1976), a dif-ferential equation of the normalized fluctuation is developed.
     从 A. Van der Ziel(1976)提出的电流电压方程出发,导出一个归一化扰动量微分方程。
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     The Existence of Pseudo-almost Periodic Solutions of Second-order Neutral Delay Differential Equations with Piecewise Constant Argument
     二阶中立型含逐段常滞量微分方程的伪概周期解的存在性
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     The Existence of Non-negative Periodic Solution for a Class of Differential Equations with Multiple Delays
     一类多滞量微分方程非负周期解的存在性
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     Theory of Values of Singular Point in Complex Autonomous Differential Systems
     论复自治微分系统的奇点
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     Superlinear Delayed Differential Equation
     超线性单滞微分方程的研究
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     On Quantity
     论
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     water resources quantity;
     水资源
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     The Pattern of Differential
     微分模式
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  signal differential
If the FETs obey the pure square law characteristics, this circuit is a perfectly linear large signal differential transconductor.
      


Starting from the current-voltage equation given by A. Van der Ziel (1976), a dif-ferential equation of the normalized fluctuation is developed. Expanding the Pourier transform of the fluctuation into a power series in the parameter jω and solving the equation developed, we get all order analytical solutions of the Fourier transform of the fluctuation in drain and gate. The spectral desities of noise current of drain and gate as well as the correlation coefficient are also obtained. The effect of the higher...

Starting from the current-voltage equation given by A. Van der Ziel (1976), a dif-ferential equation of the normalized fluctuation is developed. Expanding the Pourier transform of the fluctuation into a power series in the parameter jω and solving the equation developed, we get all order analytical solutions of the Fourier transform of the fluctuation in drain and gate. The spectral desities of noise current of drain and gate as well as the correlation coefficient are also obtained. The effect of the higher order solutions of the equation on the noise spectra is shown in the conelusion.

从 A.Van der Ziel(1976)提出的电流电压方程出发,导出一个归一化扰动量微分方程。将归一化扰动量的傅氏变换按j的幂级数形式展开并且求解,得到在漏、栅端扰动量傅氏变换的各阶解析解,同时也就得到了漏、栅极的噪声电流谱和相关系数,在结论中,指出了方程的高阶解对噪声谱的影响。

This paper describes the results of studies on the anionic copolymeri-zation of butadiene and styrene initiated by n-BuLi-THF in cyclohexane. From the experimental data obtained, integral and differential composition distribution curves of incoporated styrene in copolymer at various B/S ratio have been ploted. By adjusting conc.of THE and n-BuLi, B/S, ratio and temperature, the molecular design of butadiene-styrene copolymer with different molecular weight, Tg, styrene content and microstructure of polybutadienc...

This paper describes the results of studies on the anionic copolymeri-zation of butadiene and styrene initiated by n-BuLi-THF in cyclohexane. From the experimental data obtained, integral and differential composition distribution curves of incoporated styrene in copolymer at various B/S ratio have been ploted. By adjusting conc.of THE and n-BuLi, B/S, ratio and temperature, the molecular design of butadiene-styrene copolymer with different molecular weight, Tg, styrene content and microstructure of polybutadienc chain segment could be realized.

本文论述了在环己烷中,用n-BuLi-THE引发的丁苯阴离子共聚合的结果,画出了不同丁/苯配比下进入共聚物中苯乙烯量的微分和积分组成曲线,并探讨了有关的分子设计问题.

This paper considered to indicate the response of the random process of signal-system in the presence of noise by method of spectra analysis, and gave the method specially to get the mean-squared response passing through to construct moment diffrencial equation. The fundmental thought of spectra analysis took from L.A.Zadeh、D.B.Duncan and J.H.Laning φ R.H. Battin.

本文主要讨论用谱分析法描述有干扰的信号系统的随机过程的干扰反应问题,特别探讨了用矩量微分方程求均方反应的方法。有关谱分析的基本思想取自L·A·Zadeh[1]、D·B·Duncan[2]及J·H·Lianing d R·H·Battin[4]。

 
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