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- Thereby we break a new path to find the greatest common factor of polynomials. 从而开辟了一条求解多项式最大公因式的新途径。
- Generally speaking, division algorithm and factor resolution can be used to find the greatest common factor of the two multinomial. 摘要求两个多项式的最大公因式,可以用辗转相除法及分解因式法。
- Thus we gave a kind of new method for solving the greatest common factor of two-variable polynomials. 给出一种求解二元多项式最大公因式的新方法。
- In this paper, the question about greatest common factor of Fn and Fn+k is discussed. By using the number theoretic method, the greatest common factor of Fn and Fn+kis given, where n be positive integer, k = 3, 4, 5,6. 利用数论方法;进一步探讨了F_n与F_(n+k)的最大公因数;其中n是正整数;k=3;4;5;6.
- This paper gives a method that through elementary transformming the row of the matrix, the greatest common factor of the Euclidean Ring's factors can be found. 给出了利用矩阵的初等行变换求欧氏环中多个元素的最大公因子的方法。
- Elementary Transformation of Greatest Common Factor 最大公因式的初等变换求法
- greatest common factor (or divisor) 最大公因子
- greatest common factor [GCF / gcf] 最大公因数
- A New Method of Finding the Greatest Common Factor to Multinomials 求多项式最大公因式的一种新方法
- THE GREATEST COMMON FACTOR OF A FINITE NUMBER OF MATRIXES 有限个矩阵的最大公因子
- Application of the Bezout Theorem About Greatest Common Factor 裴蜀定理的应用
- Solution of Polynomials'Greatest Common Factor by Means of Matrix 矩阵法求多项式的最大公因式
- Realization of Algorithm for Solving the Greatest Common Factor 一个最大公因式求解的算法实现
- The Sequence Sum of the Greatest Common Factors 最大公因数序列的和
- A Matrix Method for Greatest Common Factor and Least Common Multiple 最大公因数与最小公倍数的矩阵求法
- The greatest common divisor of 24 and 30 is 6 24. 和 30 的最大公约数为6。
- A united method for greatest common factor and least common multiple in euclidean ring 欧氏环中最大公因子与最小公倍子的统一求法
- A MATRIX METHOD OF THE GREATEST COMMON FACTOR OF THE EUCLIDEAN RING'S FACTORS 欧氏环中元素最大公因子的矩阵求法
- The Seeking Unified Method of the Greatest Common Factor and Coefficients Polynomial 最大公因式及其系数多项式的统一求法
- A Way to Evaluate the Greatest Common Factor Based on the Oblique Elementary Operation of Matrix 基于矩阵斜消变换的最大公因式求解