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matlab求解偏微分方程的具体实现方法以实例操作。-matlab solving partial differential equations of the concrete implementation methods to instances of action.
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这是在计算微分方程时遇到扩散系数时的程序,很有效。-This is the calculation of partial differential equations encountered discrete diffusion coefficient of procedures, very effective.
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有数值计算中常用的Visual Fortran子过程近200个,内容包括:解线性代数方程组、插值、数值积分、特殊函数、函数逼近、随机数、排序、特征值问题、数据拟合、方程求根和非线性方程组求解、函数的极值和最优化、傅里叶变换谱方法、数据的统计描述、解常微分方程组、两点边值问题的解法和解偏微分方程组,每一个子程序都包括功能、方法、使用说明、子程序和例子五部分。本书的所有子过程都在Visual Fortran 5.0版本上进行过验证,程序都能正确运行。同时配书发行光盘,包括所有子过程、验证过程及所有验
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常微分方程的初值问题与偏微分方程的数值求解问题-Initial value problems for ordinary differential equations and partial differential equations numerical solving problems
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The ebook guides new users of Matlab to solve PDE equations. Easy reading and useful
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偏微分方程数值解法的MATLAB源码 偏微分方程数值解法的MATLAB源码 -Numerical Solution of Partial Differential Equations MATLAB source
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Finite element methods represent a powerful and general class of techniques for
the approximate solution of partial differential equations the aim of this course is
to provide an introduction to their mathematical theory, with special emphasis on
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matlab相关的程序,包括求解常微分方程、偏微分方程,绘制直方图-Matlab related procedures, including the solution of ordinary differential equations, partial differential equations, the histogram drawing etc.
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A discrete cosine transform (DCT) expresses a finite sequence of data points in terms of a sum of cosine functions oscillating at different frequencies. DCTs are important to numerous applications in science and engineering, lossy compression of audi
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这是一个介绍课程谱方法求解 偏微分方程(pde)。 我们将提供一些基本的 理论 结果光谱近似以及实用的算法 实现光谱方法。 我们将特别强调如何 设计高效、精确的光谱算法求解pde 当前的兴趣。-This is an introduction course on spectral methods for solving partial differential equations (PDEs). We shall present some basic theoretical results on
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利用分数微积分理论讨论下列三阶线性常微分方程式(方程式略) 及偏微分方程式(方程式略) 之解。-Solutions of the third order linear ordinary differential equation (The equation is abbreviated. ) and partial differential equation of the form (The equation is abbreviated. ) are discussed. 跟读
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All Runge–Kutta methods mentioned up to now are explicit methods. Explicit Runge–Kutta methods are generally unsuitable for the solution of stiff equations because their region of absolute stability is small in particular, it is bounded.[14] This iss
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验证可用,保证准确无误,是学习通信的好帮手,使用大量的有限元法求解偏微分方程。- Verification is available, Ensure accurate communication is learning a good helper, Using a large number of finite element method to solve partial differential equations.
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使用大量的有限元法求解偏微分方程,连续相位调制信号(CPM)产生,基于多相结构的信道化接收机。- Using a large number of finite element method to solve partial differential equations, Continuous phase modulation signal (CPM) to produce, Channelized receiver based on multi-phase structure.
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加入重复控制,使用大量的有限元法求解偏微分方程,相控阵天线的方向图(切比雪夫加权)。- Join repetitive control, Using a large number of finite element method to solve partial differential equations, Phased array antenna pattern (Chebyshev weights).
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matlab实现了五类灰色关联度模型的计算,使用大量的有限元法求解偏微分方程,光纤无线通信系统中传输性能的研究。- matlab implements five gray correlation degree computing model, Using a large number of finite element method to solve partial differential equations, Fiber Transmission wireless communication
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使用大量的有限元法求解偏微分方程,包含光伏电池模块、MPPT模块、BOOST模块、逆变模块,一个计算声子晶体结构的一维传递矩阵法。- Using a large number of finite element method to solve partial differential equations, PV modules contain, MPPT module, BOOST module, inverter module, A one-dimensional transfer matri
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使用大量的有限元法求解偏微分方程,包含了阵列信号处理的常见算法,模拟数据分析处理的过程。- Using a large number of finite element method to solve partial differential equations, Contains a common array signal processing algorithm, Analog data analysis processing.
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使用大量的有限元法求解偏微分方程,算法优化非常好,几乎没有循环,经典的灰度共生矩阵纹理计算方法。- Using a large number of finite element method to solve partial differential equations, Algorithm optimization is very good, almost no circulation, Classic GLCM texture calculation method.
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使用大量的有限元法求解偏微分方程,利用自然梯度算法,GPS和INS组合导航程序。- Using a large number of finite element method to solve partial differential equations, Use of natural gradient algorithm, GPS and INS navigation program.
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