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1.
Convolution in ω -Ultradifferentiable function spaces ε_*(R~N)
ω-超可微函数空间ε_*(R~N)中的卷积运算
2.
Some Criterions for Ultradifferentiable Function Spaces of Beurling Type
Beurling型ω-超可微函数空间的一些判别条件
3.
The function is continuously differentiable.
函数是连续可微分的。
4.
piecewise continuous differentiable function
分段连续可微分函数
5.
infinitely continuously derivable functio
无限次连续可微函数
6.
a differential equation involving a functions of more than one variable.
含有超过一个变量的函数的微分方程。
7.
Not all continuous functions are differentiable.
不是所有的连续函数都是可微的。
8.
Spreading of Euler Formula on Indifferential Homogeneous Functions;
欧拉公式在不可微齐次函数中的推广
9.
Inferring the Partial Derivatives of Thermodynamics' State Functions by Measurable Variables
热力学态函数的偏微商用可测量表示
10.
The General Integral of the Original Differential Equation and Making the Formule for Elementary Transcendental Function;
微分方程的通积分与初等超越函数公式的推导
11.
Fixed Point and Transcendental Number of Linear Differential Equatio n Solution when Finite Set Overreaches the Whole Function Factor;
有限级超越整函数系数线性微分方程解的不动点与超级
12.
Henstock integrable function and staircase function;
Henstock可积函数与阶梯函数
13.
On the Construction of Super-Pseudorandom DES-Model Permutations Based on the Reversible Hash Functions
基于可逆Hash函数的DES型超伪随机置换的新构造
14.
The Fix Point and Hyper of Solutions of Higher Order Linear Differential Equations with Meromorphic Function Coefficents
亚纯函数系数的高阶线性微分方程解的不动点和超级
15.
implicit differentiation
隐函数微分,隐微分法
16.
He first discussed his example of a continuous nondifferentiable function.
他首先讨论了其连续不可微函数的例子。
17.
If desired, the perturbed wave function may be normalized at the end of the calculation.
当需要时,可在计算最后将微拢波函数归一化。
18.
As aspecial case, the viability of epigraph of a sub-differentiable function is discussed.
最后讨论了次可微函数上图的生存性问题。