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polynomial coefficient相关的网络例句

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In the temperature sensing, the theory of fiber Bragg grating temperature sensing has first been proposed, the characteristic of the FBG temperature sensing was analyzed, it was deduced that the sensitivity coefficients of first-order and second-order ,and experimental findings was protracted, the gained polynomial better inosculate with the theory value. The experiment was processed in the low temperature , the thermo-optic coefficient was emended in the polynomial of the normal temperature ,the result was accorded with the sensing character of the normal and low temperature ,and it was resolved that the theory account of the normal and low temperature did not accord with the experiment.

在温度传感方面,主要从光纤布拉格光栅的温度传感模式出发,对光纤布拉格光栅的温度传感特性进行了分析,推导出了光纤光栅的一阶与二阶温度灵敏度系数,并对实验数据进行了拟和,所得多项式和理论值吻合的很好,并对低温传感进行了实验,将在常温下得出的多项式进行了热光系数的修正,所得的结果同时符合常温与低温的传感特性,解决了低温与常温情况下的理论计算与实验的不一致性。

To create a polynomial in Matlab, simply enter each coefficient of the polynomial into the vector in descending order.

要创建一个Matlab的多项式,只需输入向量的顺序递减到每个系数多项式。

Secondly, linear algebra, can create a polynomial coefficient and multiple lines between the matrix-style counterparts, so as to transform line for the primary use of the domain P polynomial the greatest common factor.

其次,在线性代数中,可以建立多项式的系数与多行矩阵表示式之间的对应关系,从而利用初等行变换求数域P上的多项式的最大公因式。

This paper by Eisenstein and Criterion On a few of the conclusions presented several integer coefficients irreducible polynomials way of judging, but the discussion of not more than four times the whole of the polynomial coefficients can be about issues, by some three to four times the entire polynomial coefficient about the summary judgment method.

本文由艾森斯坦因判别法及数论中的有关结论给出了几个整系数多项式不可约的判定方法,同时讨论了不高于四次的整系数多项式的可约性问题,得到了某些三次,四次整系数多项式可约性的简易判定方法。

The paper available mapping of integral coefficient polynomial and rational number, obtain factorization from factorization of polynomial by the way of sieve in true fraction series.

利用整系数多项式与正有理数的对应,将多项式因式分解通过对真分数序列筛选的办法求得因式,给出了整系数多项式因式分解的一种新方法。

Ray tracing theory is used to obtain phase and universal polynomial function of grating,and the coefficient of the polynomial function is optimized by genetic algorithm.

该方法根据光线追迹原理设计获得光栅相位和面形多项式函数通式,采用遗传算法优化面形多项式函数系数,分别设计了分束比为1:2×2、1:3×3、1:4×4的光栅分束器件;其衍射效率分别为81.83%、81.11%和74.01%;三个器件的光强均匀性分别达到0.02394、0.1838和0.1912,并用Matlab进行了仿真。

Ray tracing theory is used to obtain phase and universal polynomial function of grating, and the coefficient of the polynomial function is optimized by genetic algorithm. Several grating splitters with ratio 1:2×2, 1:3×3, 1:4×4 and diffraction efficiency 81.83%, 81.11% and 74.01% respectively are designed based on the method.

该方法根据光线追迹原理设计获得光栅相位和面形多项式函数通式,采用遗传算法优化面形多项式函数系数,分别设计了分束比为1:2×2、1:3×3、1:4×4的光栅分束器件;其衍射效率分别为81.83%、81.11%和74.01%;三个器件的光强均匀性分别达到0.02394、0.1838和0.1912,并用Matlab进行了仿真。

The polynomial function bases are used to form the approximately matching function. Moreover, the discrete values of grey image is transformed to polinomial function that are exact fit at the considered pixel locations. As a result, The mathematical operations performed such as derivation, integration, and gradient evaluation also give out the polynomial functions, therefore, the system of undetermined coefficient equations is derived to be a system of linear algebraic equations.

我们把立体匹配过程看作泛函的极小化过程,因此选用变分问题近似解法的Ritz法构造数值算法,以多项式函数为基构作匹配函数的近似解,进而又利用多项式过样值点的拟合将离散的灰度图象变换为多项式函数,因此计算中所需的求导,积分,及梯度运算的结果仍然是多项式函数,最终将待定系数方程组化为线性代数方程组。

Based on Wu's elimination method and "divide-and-conquer" strategy, the undetermined coefficient method for constructing polynomial conservation laws of nonlinear differential-difference equations was improved. Furthermore, a Maple package CLawDDEs was developed to automatically derive conserved densities and associated fluxes of polynomial differential-difference equations.

基于吴消元法和"分治"策略,改进了基于标度不变性构造非线性微分差分方程多项式形式守恒律的待定系数算法,并在计算机代数系统Maple上实现了改进后的算法,其中的软件包CLawDDEs可自动推导出微分差分方程的守恒密度及连带流。

Firstly, we prove a proposition : the leading coefficient regarded as a polynomial in q~n, q~(1/2 of the recurrence is not equal to zero for all n ≥ [m/2] + 1, where m is the degree in q~(1/2) of the leading coefficient.

首先,我们证明了一个命题:迭代关系的首项系数关于q~n,q~(1/2的多项式对所有的n≥1[m/2]+1均不为零,其中m为首项系数中q~(1/2)的次数。

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