1.
Dissipativity of linear θ-methods for Volterra functional differential equations

Volterra泛函微分方程线性θ-方法的散逸性
2.
ASYMPTOTIC STABILITY OF LINEAR θ-METHODS FOR NONLINEAR NEUTRAL DELAY INTEGRO-DIFFERENTIAL EQUATIONS
非线性中立型延迟积分微分方程线性θ-方法的渐近稳定性
3.
Dissipativity of Linear θ-methods for Nonlinear Volterra Delay-integro-differential Equations with Neutral Type
非线性中立型Volterra延迟积分微分方程线性θ-方法的散逸性
4.
Piecewise-linearized and Linearized θ-Methods for Nonlinear Differential Equations;

用分段线性化方法和线性化θ方法来解非线性的微分方程
5.
The Study on Nonlinear Control System of a Guided Bomb Based on θ-D Technique

基于θ-D技术的制导炸弹非线性控制方法
6.
Periodic Relative Motion Control Based on theθ-D Nonlinear Control Method

基于θ-D非线性控制方法的伴随轨道控制
7.
Dissipativity of θ-methods and One-leg Methods for Nonlinear Neutral Delay Integro-differential Equations
非线性中立型延迟积分微分方程θ-方法和单支方法的散逸性
8.
Mean-Square Asymptotic Stability of θ-Methods for Nonlinear Stochastic Pantograph Differential Equations
非线性随机Pantograph微分方程及其θ-方法的均方渐近稳定性
9.
The aim of this paper is to investigate the asymptotically mean square stability (MS-stable) of the analytical solution and the numerical method (the continuous θ-method) for a linear stochastic pantograph equation.
本文目的是研究线性随机比例方程解析解和数值方法(连续θ-方法)的渐近均方稳定性。
10.
The stability of composite θ-method for stochastic differential delay equation was studied.
研究了随机延迟微分方程复合θ-方法的稳定性。
11.
Stability Analysis of θ-One-Leg-Methods for A Differential Equations;

一类微分方程单支θ-方法的稳定性分析
12.
Stability Analysis of θ-methods for Functional Differential and Functional Equations

泛函微分与泛函方程θ-方法的稳定性分析
13.
Numerical Stability of Parallel Rosenbrock Method and Block θ-Method for Delay Differential Equations;
延迟微分方程并行Rosenbrock方法和块θ-方法数值稳定性
14.
Method of Expansion angle Choosing of Subgrade Pressure;

关于地基压力扩散角θ的取值方法的探讨
15.
The S(n)-closed and S(n)-θ-closed Properties of θ-complex

θ-复形的S(n)-闭性质及S(n)-θ-闭性质
16.
L~p-BOUNDEDNESS FOR THE MAXIMAL MULTILINEAR SINGULAR INTEGRAL OPERATOR OFθ-TYPE CALDERóN-ZYGMUND KERNEL
θ型Calderón-Zygmund核的多线性奇异积分极大算子的L~p-有界性
17.
The results computed show that when0 is a linear phase angle, the matrix is in accord with the original, form.
计算结果表明:当θ线性相位角时,该置乱矩阵和原来的形式一致。
18.
EXPERIMENTS ON SHEAR BEHAVIOR OF PRESTRESSED CONCRETE BEAMS:ANGLES OF PRESTRESSING TENDONS(θ GROUP)
曲线筋PC梁受剪性能试验研究——基于预应力筋角度(θ组)