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1)  universal cut-and-try algorithm
通用试凑算法
1.
Aiming at the limitation of this algorithm,the universal cut-and-try algorithm is put forward.
为测度系统的结构特征之一复杂度,引入信息理论的改进的Lempel-Ziv算法——"通用试凑算法"。
2)  trial-and-error method
试凑法
1.
Then, the analytical solution of magneto-electro-elastic cantilever beam with point force is obtained with trial-and-error method, which is simple and easy to verify.
从横观各向同性磁电弹性体的三维基本方程出发,简化得到平面问题的基本方程,给出了用4个拟调和函数表达的4个特征根互异情况下的通解,进而以试凑法推导出了自由端作用集中力的悬臂磁电弹性梁的位移、电势、磁势、应力、电位移和磁通密强度的解析解,所得解易于理解、便于校对、形式简洁。
2.
For the orthotropic magneto-electro-elastic plane problem,a series of magneto-electro-elastic beams is solved and the corresponding exact or analytical solutions are obtained with the trial-and-error method on the basis of the general solution in the case of four distinct eigenvalues,in which all physical quantities are expressed by four displacement functions in terms of harmonic polynomials.
首先推导了4个特征根互异情况下,所有物理量均用4个拟调和位移函数表达的通解,进而用试凑法推导出相应系列问题的精确解或解析解。
3.
Then, the analytical solution of simply supported magnetoelectroelastic beam under uniform load is obtained with the trial-and-error method, which is simply understood and c.
从横观各向同性磁电弹性体的三维基本方程出发,简化得到平面问题的基本方程,给出了用四个拟调和函数表达的四个特征根互异情况下的通解,进而以试凑法推导出了均布荷载作用下简支磁电弹性梁的位移、电势、磁势、应力、电位移和磁通密强度的解析解,所得解有易于理解、便于校对、形式统一简洁的特点。
3)  Try and error method
凑试法
4)  Hash algorithm
杂凑算法
1.
This paper proposes a modified SHA-x Hash algorithm on the basis of the Secure Hash Algorithms(SHA-1 and SHA-2) defined in FIPS PUB 180-2.
在SHA-1和SHA-2标准算法的基础上,提出一类SHA-x改进杂凑算法的设计。
5)  compaction algorithm
紧凑算法
6)  general algorithm
通用算法
1.
C language general algorithm solution;
C语言对通用算法的解决力案
2.
By using system analysis theory and mathematics modeling method,and analyzing the commonness and character of different crop growth models,a crop growth model based on general algorithm framework was developed.
运用系统分析原理和数学建模技术,通过分析不同作物生长模型的共性及特点,初步创建了基于通用算法框架的作物生长模型。
3.
This paper discusses the general algorithm model,primary methods and perspectives of data mining in the future.
论述了数据挖掘技术的通用算法模型、主要方法及今后的发展方
补充资料:奔凑
1.集聚﹐会合。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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