1) Bulman-Lagrange series
布尔曼-拉格朗日级数
1.
The Bulman-Lagrange series is briefly introduced and the asymptotic expressions of several common transcendental equations are derived.
简要介绍了布尔曼-拉格朗日级数,并推出了几个常见超越方程的解的渐近表示。
2) Lagrangian sub distribution
拉格朗日子分布
3) d'Alembert-Lagrange principle
达朗贝尔拉格朗日原理
4) d'alembert lagrange equation
达朗贝尔 拉格朗日方程
5) Lagrange multiplicator law
拉格朗日乘数法
1.
Based on the ratio of middle to outside law design idea,the application target programming method is used to establish a simplification model and improvement model based on the most superior design of can shape and the size,and the simplification model is solved by the Lagrange multiplicator law.
基于黄金分割律的设计理念,应用目标规划的方法建立了易拉罐形状和尺寸最优设计的简化模型与改进模型,以拉格朗日乘数法求解了简化模型,利用mathematic求出了改进模型数值解,并通过测量数据进行了验证。
6) Lagrange function
拉格朗日函数
1.
Deduction of conservation law in mechanics from Lagrange function;
由拉格朗日函数讨论力学中的守恒定律
2.
The Lagrange function and the micro increasing rate of the network loss strive for the reactive power optimization compensation.
该程序用牛顿-拉夫逊法计算潮流,拉格朗日函数和网损微增率法求无功功率最优化补偿。
3.
Starting from the Lagrange function of the electromagnetic field,we applied Fonrier transform,obtained the unity theory for the variation fundamental in the harmonic electromagnetic field.
从电磁场的拉格朗日函数出发,利用傅里叶变换,得到了谐变电磁场变分问题的统一理论,并由此推导出经典电磁场理论的结果。
补充资料:小日子
1.人口简单的家庭生活。
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