greatest common divisor

美 [ˈgreɪtəst ˈkɑːmən dɪˈvaɪzər]英 [ˈgreɪtɪst ˈkɒmən dɪˈvaɪzə(r)]
  • n.最大公约数;最大公因子
greatest common divisorgreatest common divisor

noun

1
the largest integer that divides without remainder into a set of integers
Synonym: greatest common factor highest common factor

数据来源:WordNet

  1. A new method for finding the greatest common divisor of two polynomial matrices

    两个多项式阵最大公因子的计算

  2. Greatest Common Divisor Matrix and Least Common Multiple Matrix

    最大公因子矩阵与最小公倍数矩阵

  3. The Problem of Finding the Coefficients for the Linear Expression of the Greatest Common Divisor

    最大公约数线性表达式系数的求解问题

  4. Structure of Greatest Common Divisor of Matrix

    矩阵的最大公因子的结构

  5. The greatest common divisor of 24 and 30 is 6 24 .

    和30的最大公约数为6。

  6. A method of finding the greatest common divisor by omitting the head and the tail

    求多项式最大公团式的消首去尾方法

  7. Greatest Common Divisor Matrix and Euler Matrix

    最大公因子矩阵与欧拉矩阵

  8. On the Generalization of the Greatest Common Divisor Matrices

    关于最大公因子矩阵的推广

  9. Further Study about Maximum Common Factor of Multinomial A NEW METHOD FOR FINDING THE GREATEST COMMON DIVISOR OF TWO POLYNOMIAL MATRICES

    关于多项式最大公因式的进一步探讨两个多项式阵最大公因子的计算

  10. Calculating Greatest Common Divisor of n Polynomials and Judging Stability of Linear System with Constant Complex Coefficients Through Matrix Transformation

    利用矩阵变换求n个多项式的最大公因式及判断复常系数线性系统的稳定性

  11. A computer program for expressing the greatest common divisor of two positive integers using their linear combination is given here .

    给出了用其整系数线性组合表示两个正整数的最大公约数的计算机程序。

  12. Greatest common divisor and modular inversion are resolved with Euclid algorithm and extended Euclid algorithm , respectively .

    分别使用Euclid算法和扩展Euclid算法求解最大公约数和模逆。

  13. By using the row elementary opration the matrix method of calculating the greatest common divisor of several polynomials is given with concrete applications .

    利用多项式矩阵的行初等变换给出了求几个多项式的最大公因式的新方法,并给出了这种方法的具体应用。

  14. This paper gives a proof of a conjecture on the relation between the greatest common divisor matrix and the factor closed set under a certain condition .

    本文在一个较弱的条件下证明了关于最大公因子矩陈与因子封闭集的关系的一个猜想。

  15. A solution to the greatest common divisor for a class of polynomial with one un-known is derived by using the elementary row transformation of matrix in digital domain .

    介绍了一种利用数域上矩阵的初等行变换求一组一元n次多项式的最大公因式的方法。

  16. SEARCH OUT THE GREATEST COMMON DIVISOR OF A GROUP OF INTEGERS AND ITS COMBINATION BY MATRIX ELEMENTARY OPERATIONS ; Study of Complex Electrical Field on Valve Side Winding of Converter Transformer

    用矩阵初等变换求最大公因数及组合的方法混合电场作用下换流变压器阀侧绕组电场分析

  17. In this paper , we obtain several solutions to the greatest common divisor of polynomial of one indeterminate by using the division algorithm and elementary transformation and oblique elementary transformation of matrix .

    文章从辗转相除、矩阵的初等变换以及矩阵的斜消变换等不同角度给出了一元多项式的最大公因式的不同求法。

  18. Based on C / C + + language the author devises programs of positive integer greatest common divisor algorithms . By analyzing algorithms , the author presents some suggestions of programming language teaching .

    设计出了基于C/C++语言最大公约数算法程序,通过分析算法,提出了程序设计语言教学的几点建议。

  19. The paper compares the divisibility of polynomial in several elements with the divisibility of polynomial in one element , and discusses problems about the greatest common divisor and the unique factorization .

    本文比较了多元多项式与一元多项式的可除性,讨论了最大公因子、唯一因子分解等问题。

  20. In this paper , an algorithm , which is called the extended Euclidean algorithm , is derived such that x and y can be simultaneously computed when the greatest common divisor ( a , b ) is computed by the Euclidean algorithm .

    给出一种算法使得在用辗转互除计算最大公因子(a,b)的同时能够计算出x和y来。

  21. In this paper the relationship between memory contention and ( a , M ), the greatest common divisor of a and M , is investigated , where M is the number of parallel memory modules , and a is a constant increment of address .

    本文论述了以增量a(常数)访问M个体组成的并行存储器时,存取碰头和(a,M)的关系,这里(a,M)表示a和M的最大公因数。

  22. The spurious lines caused by those sources can be classified into different sets according to the greatest common divisor of the DDS frequency control word ( FCW ) and 2 N , where N is the word length of the DDS phase accumulator .

    由此产生的杂散谱可根据DDS的频率控制字和2N的最大公约数进行分类,N是DDS相位累加器的字长。