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   非线性微分 的翻译结果: 查询用时:0.465秒
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非线性微分
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  nonlinear differential
     The positive solutions are obtained by the fixed point theorem of cone expansion-compression for(n+1)order two- point nonlinear differential equation,-u~(n+1)(t)=f(t,u(t)),0<t<1,u(0)=u'(0)=L=u~(n+1)(0)=u(1)=0.
     应用锥压缩与锥拉伸不动点定理,证明了n+1阶两点非线性微分方程-u~(n+1)(t)=f(t,u(t)),0<t<1,u(0)=u(0)=L=u~(n+1)(0)=u(1)=0的正解的存在性.
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     The Oscillation of certain second order nonlinear differential equations(a(t)ψ(y(t))φ(y′(t)))′+q(t)f(y(g(t)))=0,t≥t0 is considered in this paper.
     研究了二阶非线性微分方程(a(t)ψ(y(t))φ(y′(t)))′+q(t)f(y(g(t)))=0,t≥t0的振动性.
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     The Graphical Construction of the Phase Paths of Nonlinear Differential Equations +f(x)=0 and +φ (x, )+f(x)=0
     +f(x)=o型及+φ(x_1)+f(x)=o型非线性微分方程相轨迹的绘制
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     (h_0,h,M_0)-Uniform Boundedness Properties for Nonlinear Differential Systems
     非线性微分系统的(h_0,h,M_0)-一致有界性质
短句来源
     (h_0, h, M_0)-Uniform Boundeness Properties of Nonlinear Differential Systems
     非线性微分系统的(h_0,h,M_0)-一致有界性质
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  “非线性微分”译为未确定词的双语例句
     A differential equation in physics such as θ ¨+∑Nn=0α nθ n=0 is stuedied.
     研究了物理学中形如θ¨ +∑Nn=0 αnθn=0的非线性微分方程 .
短句来源
     CRITERIA OF (h_0,h,M_0)-UNIFORM BOUNDEDNESS PROPERTIES FOR NONLIEAR DIFFERENTIAL SYSTEMS
     非线性微分系统的(h_0,h,M_0)-一致有界性的判别准则
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     The definations of (h_0, h, M_0 )-uniform boundeness properties and several results on (h_0, h, M_0 )-uniformboundeness properties by using Lyapunov 's direct mothod are given.
     给出了(h_0,h,M_0)-一致有界性质的定义,并用Lyapunov直接方法得到非线性微分系统(h_0,h,M_0)一致有界性质的若干结果。
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     L_2-gain analysis and state feedback H_∞ control for a class of nonlinear differential-algebraic systems
     一类非线性微分代数系统的L_2-增益分析及状态反馈H_∞控制
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     Weak Carathéodory Solutions of Nonlinear Second OrderDifferential Equations in Banach Spaces
     Banach空间二阶非线性微分方程的弱Carathéodory解
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  相似匹配句对
     (一) nonlinear differential equation;
     (一)非线性微分方程;
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     Extremal Point Solutions of Nonlinear Differential Inclusions
     非线性微分包含的极点解
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  nonlinear differential
Existence of solutions of nonlinear two and three-point boundary value problems for fourth order nonlinear differential equation
      
In this paper, the two and three-point boundary problems (with nonlinear boundary conditions) for the general nonlinear differential equations of fourth order are discussed.
      
The thermistor problem is an initial-boundary value problem of coupled nonlinear differential equations.
      
First order nonlinear differential inequalities with deviating arguments
      
In this paper, some new properties of solutions of the first order nonlinear differential inequalities with deviating arguments are given.
      
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In this paper the author has made a complete topological analysis on a machine oscillation problem governed by a third order nonlinear differential equation of the following form:

在本论文里,作者对一个由下列形式的三阶非线性微分方程A(d~3δ/dt~3)+(d~2δ/dt~2)-Acotδ(dδ/dt)(d~2δ/dt~2)+((P_iA/M)cotδ+Csin~2δ)(dδ/dt)+ +Bsinδ-(P_i/M)=0 。所表征的电力机械振荡问题,进行了透彻的拓扑形象分析,并提出了一简易图解法来计算这振荡系统的性能。文中还举出一实例来说明这种分析方法。

By the method suggested by Dorodnitsizn a solution of the simultaneous non-linear differential equations for the thermal convection are obtained. The rapid dissipation of cumulus is investigated. The cumulus dissipation starts from the cloud top and propagates rapidly downward. In this case the effects of non-linearity and unstable stratification are important. It is pointed out that the downdraft is a chief feature in the cumulus dissipation.

本文利用A.A.德罗特尼村所提出的方法解出了描写积云发展的非线性微分方程组来研究一种形成、发展很快,而崩溃又很突然的积云发展过程。计算据果表明:积云的崩溃过程是从云顶开始向下崩溃的;非线性项的作用和大气层结的不稳定,在对流运动崩溃过程中起着很重要的作用;下沉运动是使积云崩溃的极重要的因素。

In this paper, a detailed analysis of the compensation of transfer correction for the turning error of a gyro-artificial-horizon with the constant characteristic has been made. The phase plane method is used for solving the non-linear equations of the gyro throughout this paper. The physical explanation and compensating result of the transfer correction method are performed with the combined consideration of small disturbation and turning effect of the air-eraft. The expressions for calculating the remainder...

In this paper, a detailed analysis of the compensation of transfer correction for the turning error of a gyro-artificial-horizon with the constant characteristic has been made. The phase plane method is used for solving the non-linear equations of the gyro throughout this paper. The physical explanation and compensating result of the transfer correction method are performed with the combined consideration of small disturbation and turning effect of the air-eraft. The expressions for calculating the remainder of the turning error of a gyro-artificial-horizon are developed, including the error of friction and hysteresis. The theoretical analysis herein will be helpful for the design of new gyro artificial-horizons.

本文对具有常数修正特性的陀螺地平仪采用转换修正法来补偿盘旋误差问题进行了较仔细的分析。在求解陀螺地平仪的非线性微分方程时,采用了分区描绘陀尖轨迹相图法。文中采用小扰动与飞机盘旋效应相结合的观点来解释了转换修正补偿法的物理过程及其补偿效果。文中给出了陀螺地平仪的剩余盘旋误差计算式,包括了摩擦停滞误差和迟滞误差。本文的理论分析对改进陀螺地平仪的设计问题是有益的。

 
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