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多项式的性质 利用带余除法我们得到下面常用的定理 定理7(余数定理)用一次多项式x-a去除多项式f(x),所 得的余式是一个常数这个常数等于函数值f(a) 证明用x-a去除f(x),设商为q(x),余式为一常数c
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数值积分与数值微分 6.1求积公式 由定积分的定义可知,连续函 数f(x)在区间[ab]上的定积分近似 值可以表示为[ab]内的一些点 X,×1,x处的函数值 f(Xo,f(×1),f(xn)的加权和或线性组 合,即 f(x)dx≈∑w·∫(x,)
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范德蒙行列式 例2行列式 d=|aa嗚 称为m级的范德蒙( Vandermonde)行列式,我们来证明,对任 意的r,第级范德蒙行列式等于a1,a2…/an这个数的所有可能 的差a;-a(1≤j
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线性方程组求解代码汇编 问题:求Ax=b的解,A是M阶可逆方阵; 约定:算法中用到的是M×N增广矩阵,N=M+1; 变量:i,j,k等为整型变量,x,y,z为实型变 1.把任意M阶线性方程组化为上三角形方程 组的C语言代码:
文档格式:PPT 文档大小:965.5KB 文档页数:76
5.1 Digital Processing of Continuous-Time Signals Digital processing of a continuous-time signal involves the following basic steps: (1) Conversion of the continuous-time signal into discrete-time signal, ()Processing of the discrete-time signal, (3) Conversion of the processed discrete- time signal back into a continuous-time signal
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Objective-Determination- of realizable transfer function G() approximating a given frequency response specification is an important step in the development of a digital filter If an IIR filter is desired, G() should be a stable real rational function Digital filter design is the process of deriving the transfer function G
文档格式:PPT 文档大小:1.08MB 文档页数:105
2.1 Discrete-Time Signals: Time-Domain Representation Signals represented as sequences of numbers, called samples Sample value of a typical signal or sequence denoted as x[n] with n being an integer in the range-oo≤n≤∞ x[n] defined only for integer values of n and undefined for noninteger values of n Discrete-time signal represented by {x[n]}
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1. Any arbitrary input sequence x[n] can be expressed as a linear combination of delaved and advanced unit sample sequences [n]=x[k][n-k] k=-0 2. .Linear Time-Invariant()System A system satisfying both the linearity and the time-invariance property. .If yiln] is the output due to an input xiln] and y2ln] is the output due to an input x2n] then for an input xn]=axiln]+bx2n] the output is given by ]=]+by2[n]
文档格式:DOC 文档大小:36.5KB 文档页数:2
实验2离散系统的差分方程、冲激响应和卷积分析 实验目的:加深对离散系统的差分方程冲激响应和卷积分析方法 的理解。 实验原理:离散系统
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实验4离散系统的频率响应分析和零、极点分布 实验目的:加深对离散系统的频率响应分析和零、极点分布的概念 理解。 实验原理:离散系统的时域方程为 (n-k)=(n-k) 其变换域分析方法如下:
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