给出了构成刚度阵的各矩阵的显式表达式。
The explicit formulas of matrixes composing the stiffness are given.
本文求出了一些曲面集的亏格分布的显式表达式。
In this paper, expressions of the genus distribution for certain sets of surfaces are provided.
求得了自由面和作用在转子上的合力的显式表达式。
The explicit expressions of free surface and resultant forces imposing on the rotor are obtained.
同时基于模型脉冲传递函数,得到控制量的显式表达式。
Based on model impulse transfer function, explicit description of manipulated variable is obtained.
对机构测量误差进行建模,得出位姿测量误差显式表达式。
The explicit formulation of the measuring errors can also be derived from its established model.
对临界状态模型推导了用于隐式计算格式的H矩阵的显式表达式。
For critical state model, the author derives an explicit formula of matrix h, which is used in implicit computation scheme.
由块三对角矩阵的LU分解,得到了其逆矩阵块元素的显式表达式。
With the LU decomposition of the block tridiagonal matrix, an explicit expression of the block inverse elements is obtained.
同时基于系统脉冲传递函数,得到单变量PF C控制器的显式表达式。
Based on impulse transfer function, single variable PFC controller is gained.
利用动态规划原理,给出了脉冲最优控制的反馈形式和值函数的显式表达式;
Via a dynamic programming, the optimal impulsive control is given in its feedback form, and the value function is given in its explicit form.
本文放弃湍流粘性假设,直接从雷诺应力输运方程推导出雷诺应力显式表达式。
In this paper the eddy viscosity hypothesis was given up and the explicit expressions of Renolds stresses have been deduced directly from the transport equations of Renolds stresses.
给出了电子密度的隐式表达式和阈电压的显式表达式,它们都充分考虑了量子力学效应。
Then , an implicit expression for electron density and a closed form of threshold voltage are presented fully comprising quantum mechanical ( qm ) effects.
本文证明了此方程存在唯一的正定解,并推导出此正定解的扰动边界和条件数的显式表达式。
By using this new expression, we derive a perturbation bound for the subunitary polar factor for any unitarily invariant norm.
第二种通过右互质既约分解,给出了通解关于一组自由参量和矩阵j的特征值的显式表达式。
By utilizing some right coprime fractions, the second solution is given in an explicit form with respect to the free parameter vectors and the eigenvalues of the matrix J.
给出了低振幅双光子屏蔽光伏亮和暗孤子的解析表达式,并推到出了孤子宽度的显式表达式。
Then, the analytical expressions for both the bright and dark low-amplitude two-photon screening-photovoltaic spatial solitons in photorefractive crystals were obtained.
讨论描述希尔伯特空间最终范数连续半群特征的一个算子方程的解,给出这个解的一个显式表达式。
A new perturbation result on the Hilbert space for the eventually norm-continuous semigroups is obtained, which makes the perturbation of the semigroups more abundant.
给出了微裂纹特征尺寸随应力变化的显式表达式,并由此得到了含微裂纹的准脆性材料损伤本构关系。
An explicit expression was derived for the variation of crack size with stress. A micro-mechanical damage constitutive equation was then given.
给出一类周期特征值问题的向后误差分析,定义了特征对的范数型结构向后误差,并给出了显式表达式。
The normwise structured backward error of an approximate eigen-pair is defined and its explicit formula is given.
用近似解析方法推导出拉伸正交各向异性有限宽板偏心圆孔的应力集中系数的显式表达式,除了比较极端的情况外,该式的精度较好。
Using an approximate analytical method, the explicit expression of stress concentration factors is derived for an eccentric circular hole in a tension orthotropic finite-width strip.
模型中对采用非线性频散关系和修正的非线性频散关系的计算结果进行了比较。结果表明,用新的频散关系的显式表达式得到的模型更加精确、合理。
Comparison of the modified nonlinear relations is made in the model, and the computed results show that it is more accurate to use the latest nonlinear relation.
更聪明的方法是编写更具体的表达式,显式指定查找节点的位置。
It is wise to write more specific expressions that explicitly specify where to look for nodes.
也可以通过包含语句(5)中的整个TREAT(…)表达式(用给定值替换longitude和latitude)来执行显式转换。
Alternatively, you can make the transform explicit by including the whole TREAT (...) expression as in statement (5) (with longitude and latitude replaced by the given values).
查询表达式中的变量都是强类型的,但许多情况下您不需要显式提供类型,因为编译器可以推断类型。
The variables in a query expression are all strongly typed, although in many cases you do not have to provide the type explicitly because the compiler can infer it.
显式数值转换用于通过显式转换表达式,将任何数字类型转换为任何其他数字类型。对于它不存在隐式转换。
Explicit numeric conversion is used to convert any numeric type to any other numeric type, for which there is no implicit conversion, by using a cast expression.
显式数值转换用于通过显式转换表达式,将任何数字类型转换为任何其他数字类型。对于它不存在隐式转换。
Explicit numeric conversion is used to convert any numeric type to any other numeric type, for which there is no implicit conversion, by using a cast expression.
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