• This method is effective for linear ordinary differential equations whose non-homogeneous term belongs to the set described above.

    方法齐次属于该类函数的线性微分方程行之有效

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  • In this paper, we study an approximate solution of the second-order linear ordinary differential equations with variable coefficients.

    本文研究二阶系数线性微分方程一种近似求解方法

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  • A set of linear ordinary differential equations in the case of sm all deflections is determined by application of the Galerkin's method.

    变形情况下运用辽金方法,可将偏微分方程转换线性微分方程组进行求解。

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  • Precise integration method for a kind of non-homogeneous linear ordinary differential equations is presented. This method can give precise numerical results approaching the exact solution.

    提出了求解一类非齐次线性微分方程精细积分方法,通过方法可以得到逼近计算机精度结果

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  • We assume that the motion of controlled object is describedby linear ordinary differential equations with variable coefficient, and the final states ofthe system form a convex region of phase space.

    受控系统运动设为系数线性微分方程组所描述,系统终点状态空间内的某一凸性区域

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  • With the ordinary theory of Heat Exchange in physics this essay visualizes the essence of second-order homogenous linear partial differential equations.

    本文利用物理学常见热传导理论形象阐释了二阶齐次线性微分方程本质

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  • Exact response of damped linear vibrating systems to arbitrarily excitation is obtained according to theory of ordinary differential equations.

    利用微分方程组理论一般条件下求出了线性有阻尼多自由度振动系统任意外激励精确响应

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  • This paper suggests a new way of finding solutions for linear systems of ordinary differential equations with constant coefficients.

    本文给出系数线性微分方程组一种新的求解方法

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  • This paper suggests a new way of finding solutions for linear systems of ordinary differential equations with constant coefficients.

    本文给出系数线性微分方程组一种新的求解方法

    youdao

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