乘积
- 与 乘积 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Smarandache LCM dual function SL* and Smarandache multiplica- tive function SM have important positions in the study of elementary number theory.
Smarandache LCM对偶函数SL~*和Smarandache乘积函数SM在初等数论的研究中占有非常重要的地位。
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By means of the ballast effect of the vertical resistor of this non-crystalline Si layer, inject current crowding at emitter edge can be overcome.
与通常晶体管相比,FFJ的有效发射极面积对基极面积之比值提高2~3倍,输出功率-阻抗乘积提高5~10倍。
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We firstly discuss minimal sets characterizations of closed-set lattice , then systematically study the categorical properties of categories CL and PairCL by the means of the join-semilattices closed-set-latticefies, and the constructions of monomorphism, epimor-phism, extremal monomorphism, extremal epimorphism, section, retraction, subob-ject, quotient object, product, co-product, equalizer, coequalizer, inverse limits and direct limits in the categories CL and PairCL are given.
首先讨论了闭集格的极小集刻划,然后通过并半格的闭集格化这种方法,较为系统地研究了范畴CL及范畴PairCL的性质,给出了范畴CL和范畴PairCL的单态射、满态射、极端单态射、极端满态射、截节、收缩、子对象、商对象、极端子对象、极端商对象等特殊态射和特殊对象的具体刻划,并且研究了它们的等化子和余等化子、乘积和余积、逆极限和定向极限的具体构造。
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We firstly discuss minimal sets characterizations of closed-set lattice , then systematically study the categorical properties of categories CL and PairCL by the means of the join-semilattice's closed-set-latticefies, and the constructions of monomorphism, epimor-phism, extremal monomorphism, extremal epimorphism, section, retraction, subob-ject, quotient object, product, co-product, equalizer, coequalizer, inverse limits and direct limits in the categories CL and PairCL are given.
首先讨论了闭集格的极小集刻划,然后通过并半格的闭集格化这种方法,较为系统地研究了范畴CL及范畴PairCL的性质,给出了范畴CL和范畴PairCL的单态射、满态射、极端单态射、极端满态射、截节、收缩、子对象、商对象、极端子对象、极端商对象等特殊态射和特殊对象的具体刻划,并且研究了它们的等化子和余等化子、乘积和余积、逆极限和定向极限的具体构造。
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Base on the mathematical equation: the quantity of conduction heat flex is equal to the product of heat conduction coefficient and gradient of temperature, we expect to obtain the result which is better than that of Transient Hot-wire Method and Steady-State Parallel-Plate Method, and simplify the strategy of measurement.
理论模式关系中,使用热传量等於热传系数与温度梯度乘积的比例关系式作为理论基础,目的在得到更优於暂态热金属线法(Transient Hot-wire Method)及稳态平行板法(Steady-State Parallel-Plate Method)的量测结果,同时也简化了量测方式。
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Although the merit function introduced here is the sum of squares of overdetermined equations, by using the special structure of it, we successfully form the Newton equation by avoiding the product of Jacobi matrices and using only the Jacobi matrix of the function defining NCP.
对非线性互补问题,利用所构造价值函数具有的特殊非线性最小二乘结构,成功实现了具有一般意义的构造Newton方程时仅利用价值函数的一阶导数且无须计算相应残量函数Jacobi矩阵乘积的Newton法。
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In chapter two, by studying the properties of self-maps on trees, we obtain five necessary and sufficient conditions for the product self-maps on trees which have the property of equicontinuity on their sets of periodic points, i.e.
第二章通过对树上连续自映射性质的研究,给出了树上乘积自映射在其周期点集上等度连续的五个充要条件,即定理2.3.1,定理2.3.2,定理2.3.3和定理2.3.4。
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It is shown that the equilibrium state distribution of the model has a product-form solution.
理论分析表明该排队网络模型的平衡状态分布具有乘积形式解。
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In this paper, we obtain some equivalent characterizations of a perfect paracompact space under the condition T1 regular. By using the one of them, an equivalent proposition on the countable product is proved.
本文在T1正则的条件下得到了完全仿紧空间的一些等价刻画,并利用所得到的刻画证明了这类空间的一个可数乘积定理。
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This paper obtains some equivalent characterizations of perfect strong screenable spaces under the condition 1 normal By using the one of them an equivalent proposition on the countable product is proved .
在正规T1的条件下得到了完全强可遮空间的一些等价刻画,并且利用获得的刻画证明了这类空间的一个可数乘积定理。
- 推荐网络例句
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Neither the killing of Mr Zarqawi nor any breakthrough on the political front will stop the insurgency and the fratricidal murders in their tracks.
在对危险的南部地区访问时,他斥责什叶派民兵领导人对中央集权的挑衅行为。
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In fact,I've got him on the satellite mobile right now.
实际上 我们已接通卫星可视电话了
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The enrich the peopling of Deng Xiaoping of century great person thought, it is the main component in system of theory of Deng Xiaoping economy, it is a when our country economy builds basic task important facet.
世纪伟人邓小平的富民思想,是邓小平经济理论体系中的重要组成部分,是我国经济建设根本任务的一个重要方面。