• The sum formulas of several kinds of ordinary series with function term are deduced by using the method of solving linear differential equation.

    本文试应用求解一阶线性微分方程方法导出常见函数级数求和公式

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  • Based on the method of solving heat balance differential equation, a novel over-load protection criterion for electric motor is presented in the paper considering the heat accumulation of motor.

    保护为研究对象,充分考虑了电机积累现象,通过求解热平衡微分方程方法给出新的电动机过载保护判据

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  • This paper proposes a new method of solving the high order linear partial differential equation by means of Walsh Series.

    本文提出了沃尔什级数求解线性微分方程一种方法

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  • An effective method for solving a partial differential equation of secondary hydrocarbon migration is put forward.

    本文给出一种高效率求解油气二次运移微分方程方法

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  • The results are same to those got by solving differential equation definite conditions problem.

    这一结果通过求解微分方程解问题得到的结果完全一致的。

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  • The highly precise direct integration scheme is used for solving modal dynamic differential equation of the structure nd a dynamic load identification method by the modal responses is proposed.

    采用无条件稳定的精细逐步积分求解结构动力学微分方程,构造了通过结构的模态响应反求荷载列阵的迭代算法

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  • This paper presents a numerical simulation algorithm based on numerically solving differential equation system by means of the Transmission Line Modeling (TLM) for lumped inductor.

    应用集总电感元件传输线建模方法(TLM)构造了一种基于数值求解微分方程数字仿真算法

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  • The concrete solving process can be reduced to finding derivative, differential equation or integral.

    具体求解方法归结导数求解微分方程求积分

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  • The differential model not has model error. Solving the differential equation has rounding error.

    微分模型没有模型误差,微分方程求解存在舍入误差。

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  • Many of the exact solutions of (3 + 1) dimensional breaking soliton equation are obtained by using a simple transformation relation and solving the ordinary differential equation.

    首先通过变换关系求解简单微分方程得到了(3 +1)破裂孤子方程丰富的孤立波解和周期波解。

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  • The effect of the shear deformation on the buckling load can be calculated by solving the differential equation for the buckling broblem.

    剪切对轴压稳定临界载荷影响,可用微分方程解决

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  • Secondly, solving differential equation in LAPLACE transformation with MATLAB validates the acquired parameters.

    拉普拉斯变换MATLAB求解电路微分方程验证得到的各元件参数。

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  • The universality of the conclusion can be spread to mathematics and mechanics science also and give a popular method to solving this third-order nonlinear differential equation qualitatively.

    结论普遍性可以推广数学力学学科给出一类三阶非线性微分方程求定性的一般方法

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  • The mathematical deduction and confirmation of the algorithm are introduced in the paper, which is a powerfully effective one for solving the quaternion matrix differential equation.

    为此给出了解元数矩阵微分方程一个强有力算式,给出了详细的数学推导证明

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  • In solving partial differential equation (i. e. pricing model), the author adopted the finite difference method to get its numerical solution.

    本文采用有限差分求解微分方程(定价模型)的数值

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  • In order to study chaos movement, Accurate solution of non-linear free vibration differential equation is by solving a kind of free vibration equation of non-linear dynamics system.

    为了研究混沌运动,对一类非线性动力系统自由振动方程进行了求解,继之给出了单层扁锥面网壳非线性自由振动微分方程的准确

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  • This paper gives a general solution of differential equation for solving bending problem of rectangular plates on elastic foundations.

    本文建立弹性地基矩形弯曲微分方程一般

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  • Method of leading variables is method of solving linear ordinary differential equation of first order.

    常数变易作为求解线性方程解法给出的。

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  • The result shows that it is effective for solving ordinary differential equation with variable coefficients.

    结果表明方法对于求解各类系数微分方程十分有效的。

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  • A new Weighted Residual Method for solving Partial differential equation is presented in this paper.

    本文提出一种求解微分方程加权残数

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  • Among ordinary differential equation equations, differential inequality is a useful tool which helps research on properties of equation-solving.

    微分方程论中,微分不等式研究方程解各种属性的有用工具

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  • This paper presents a novel algorithm for solving differential equation of distance protection which adopts an adaptive window length based on noise level control.

    研究传统微分方程距离保护采用固定长的基础上,提出了一种基于噪声水平控制的变窗长算法

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  • By solving the differential equation groups to describe the train system, a series of simulation results about hunting motion stability, dynamic negotiation and ride comfort were worked out.

    通过求解描述列车系统运动微分方程组,得出了列车蛇行运动稳定性动态曲线通过性能运行平稳性等方面的一系列数值仿真结果

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  • Stochastic sand trajectories in wind-blown sand were obtained by solving the differential equation which describes the vertical fluctuating velocity of sand grains.

    通过描述沙粒向运动速度脉动分量随机微分方程的直接求解获得了风沙流中沙粒运动的随机轨迹。

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  • It offers step-by-step techniques, practical tips, numerous exercises, and clear, concise examples to help readers improve their differential equation-solving skills and boost their test scores.

    提供了一步一步技术实用技巧练习清晰简明例子帮助读者提高差分方程的技巧增强他们的测试成绩。

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  • The truncation errors in finite differential equation are corrected in solving the model.

    求解过程,将有限差分截断误差进行了修正。

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  • Finally, some numerical examples are provided to show that the fractional order linear multiple step method for solving the fractional order ordinary differential equation is an effective method.

    最后给出了一些数值例子证实这个分数线性步法分数微分方程有效方法。

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  • In this paper, we present a circuit simulation algorithm based on the partial differential equation (PDE) model of MOSFETs, together with a fast algorithm for solving the PDE.

    研究基于MOSFET微分方程(PDE)模型电路仿真算法提出一种求解pde的快速算法。

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  • In this paper, we present a circuit simulation algorithm based on the partial differential equation (PDE) model of MOSFETs, together with a fast algorithm for solving the PDE.

    研究基于MOSFET微分方程(PDE)模型电路仿真算法提出一种求解pde的快速算法。

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