• 但是拉普拉斯展开小型矩阵有效

    However, Laplace expansion is efficient for small matrices only.

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  • 拉普拉斯78岁逝世时依然年轻

    Laplace at seventy-eight died young.

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  • 引进了拉普拉斯级数广义黎斯可和算子

    The generalized Riesz summability operators of Laplace series are introduced.

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  • 拉普拉斯变换适用于线性电路分析

    The laplace-transform method is only applicable to the frequency domain analysis for linear circuits.

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  • 最后应用拉普拉斯数值反演技术得到时间

    Finally, by applying Laplace numerical inversion technique the solutions in time domain can be obtained.

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  • (3.54)的括号的算叫做拉普拉斯

    The operator in parentheses in (3. 54) is. called the Laplacian operator.

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  • 其经典算法局部平均法、中值滤波、拉普拉斯算法

    There are some classic arithmetic such as partly average algorithm, median filter technology, and Laplacian algorithm.

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  • 边界元方法求解平面拉普拉斯方程必须计算两个矩阵

    Two matrices have to be calculated when solving plane Laplace equation by the use of BEM.

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  • 实现拉普拉斯实现锐化效果图大家可以一下。

    Realize the use of Laplacian sharpening realize, have the effect of map, we can look at.

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  • 利用拉普拉斯变换,将定问题转换到拉普拉斯域内求解。

    With Laplace transforms, the question can be solved in Laplace d.

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  • 首先点源函数格林函数法,推导出拉普拉斯空间线源

    This paper presents the solutions in Laplace space derived by point-source function and Green's function.

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  • 一个VC图象处理源代码拉普拉斯锐化进行边缘检测

    This is a VC image processing source code, using Laplacian sharpening edge detection.

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  • 本文提出了拉普拉斯变换求复杂网络反应动力学速度常数方法

    A method for determining kinetics rate constants of complex reactions by using Laplace transform is proposed.

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  • 数学中,我们发现真理主要工具归纳模拟。——拉普拉斯

    In mathematics, we found that the truth is the main tool and simulation.

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  • 运用拉普拉斯变换推导出其两种求解方法直接求解法状态空间法。

    Two solving methods are deduced using Laplace transform: the direct solving method and the state-space method.

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  • 泊松定理莫佛-拉普拉斯定理给出二项分布近似计算公式

    Poisson theorem and De Moivre-Laplace theorem present the approximate calculation formula of binomial distribution.

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  • 首先通过拉普拉斯金字塔变换将图像分解各级分辨率的子图像。

    Firstly, the source images are decomposed into sub-images at different scales through Laplacian pyramid transform.

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  • 通过拉普拉斯变换弹性问题归结为空间中类似弹性力学问题。

    After Laplace transformation of the above equations, the viscoelastic problems become elastic problems under the phase space.

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  • 解决这个问题拉普拉斯金字塔算法哈尔变换算法实现纹理递进传输

    To solve this problem we have implemented the texture progressive transmission with the classic Laplacian pyramid algorithm and the Haar transform algorithm.

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  • 解决这个问题拉普拉斯金字塔算法哈尔变换算法实现纹理递进传输

    To solve this problem we have implemented the texture progressive transmission with the classic Laplacian pyramid.

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  • 在此基础上运用数值拉普拉斯变换(nilt)分析互连电路时域响应

    Then the numerical inversion of Laplace transform (NILT) is employed for the time domain response of the interconnect circuits.

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  • 然后利用多维拉普拉斯变换推导出双线性系统非线性传递函数矩阵计算公式

    Then by using multi-dimension Laplace transform, the computation formula of nonlinear transfer function matrices for MIMO bilinear system are deduced.

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  • 应用顶点分类方法提出一种加权均值滤波拉普拉斯光顺相结合混合算法

    With the method of classifying the mesh vertices, a hybrid algorithm combined weighted median method and Laplacian method was presented.

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  • 利用拉普拉斯变换技术,得到饱和两相多孔介质一维问题动力响应解析

    By using the Laplace transform technique, the one-dimensional analytical solution of dynamic response for biphasic saturated porous media.

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  • 使用多元复合函数微商法则,导出拉普拉斯柱面坐标系球面坐标系中表达式。

    The Laplacian in the columnar and spherical coordinates is deduced by using the derivative principle of the multivariable functions.

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  • 拉普拉斯提出并一项不朽的著作中回答了这个问题这个著作就是著名的《天体力学》。

    But he himself answered the question in an immortal work, "the Mechanics of the Heavens."

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  • 本文根据水下航行体侧-滚运动方程组,经拉普拉斯变换,求解了运动参数传递函数

    This paper solves side-roll equation of a submersible to give the transfer function of maneuvering motion parameters by means of Laplace'S transform.

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  • MathCAD组合了一个庞大功能包括微积分拉普拉斯变换贝塞尔函数统计财务函数。

    MathCAD combines a large library of functional capability including calculus, Laplace transforms, Bessel functions, statistics, and financial functions.

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  • MathCAD组合了一个庞大功能包括微积分拉普拉斯变换贝塞尔函数统计财务函数。

    MathCAD combines a large library of functional capability including calculus, Laplace transforms, Bessel functions, statistics, and financial functions.

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