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Algorithm application of neural networks.Ⅲ Implementation of neuro-computers. The main contribution of the dissertation can be summarized as follows: 1 Hopf bifurcation of three kind of neural networks are discussed in detail, including type of discrete time delay, type of time delay with weak kernel and strong kernel as well as the proof of existence of bifurcation. Other problems such as asymptotic stability of bifurcation periodic solution, algorithm of determining the bifurcation direction, asymptotic stability and style of periodic solution are also studied. The average time delay is chosen as the bifurcation parameter, phenomena pertinent to system states of the continuous time delay network with strong kernel evolving from stable to oscillating, then back to stable again are observed.

论文的主要创新之处可以归纳如下: 1)针对目前国内外对神经网络的分岔研究较少的情况,论文中详细讨论了带离散时延神经网络、带弱核的连续时延神经网络、带连续分布时延且具有核的神经网络的Hopf分岔现象,从理论上证明了Hopf分岔的存在性,并研究了分岔周期解的渐近稳定性,得到了确定周期解的渐近稳定性、分岔方向、周期解的渐近形式的算法;用平均时延作为分岔参数,发现带核的连续时延神经网络中存在着系统的状态由稳定变化到振荡现象,当继续增加平均时延参数时,又从振荡变为稳定这一特殊的动力学现象。

Performance analysis and plenty of numerical simulation shows that the robust multiuser detector and its adaptive version have excellent performance of output signal-to-interference-plus-noise ratio, bit error rate, asymptotic multiuser efficiency and robustness even existing stronger MAI.

理论分析和仿真实验表明,即使在较的多址干扰条件下,稳健的盲线性多用户检测及其自适应实现展示了优异的误码率、信干噪比以及渐进多用户有效性性能,对特征波形失配具有较的稳健性,且自适应算法能快速收敛至稳态解。

The result indicated, the CIMMYT forage characteristics of the overgrowth, strong tillerity and high yield could inherit to the offspring ,and the inherit ability was higher. It was obviously difference of seedling, plant, and its grow habit, flower apparatus and seed between CIMMYT forage and common maize. The hybrid offspring of CIMMYT forage and common maize keep the strong trait of growing and development, but the flower and seed character were look like common maize. The backcross offspring were not different to common maize besides with some tillers, distinct multi-ear and atavism.

结果表明,CIMMYT牧草能将其生长繁茂、分蘖力、生物产量高的特性遗传给杂交后代,并有较的世代传递能力;该牧草幼苗、植株及其生长习性、花器官、种子特征等与普通玉米差异明显,其与普通玉米的杂交后代基本保持了它的生长发育特性,但花器官和种子特征更偏向于普通玉米;回交后代除保持了一定的分蘖特性、明显的多穗和返祖现象外,其余特征特性与普通玉米基本没有区别。

The results show: the strongest bond is the Al-Al bond in the segregated cell without containing vacancy, where the Al atomic covalence radius is greater than that of Li atom in the cell; while the strongest bond is the Al-Li bond in the segregated cell containing vacancy, and the Al atomic covalence radius in the cell is less than that of Li atom. Since the difference of electronagativity between the Al and Li atoms is obvious, it is inclined to formed the Al-Li segregated cell of short range order structure in the condition of vacancy present. The short range order structure containing vacancy is probably the embryo or precursor structure of the metastable phase δ′(Al3Li). Because the strongest covalent bond in the Al-Li-vacancy segregated cell in alloy formed in quenching is the main strength reason for supersaturated solid solution of alloy. The bond net of succeeding precipitation of δ′(Al3Li) has the picture of anisotropic Al-Al bonding and the bond intensity enhanced. Since the δ′(Al3Li) is coherence with matrix, the bond net strength is enhanced by the precipitation of δ′(Al3Li) and so strengthen the alloy.

计算结果表明:不包含空位的偏聚晶胞的键络最键为Al—Al键,其中Al原子的共价半径较Li原子的共价半径要大;而含空位的偏聚晶胞的最键为Al—Li键, Al原子的共价半径要比Li原子的共价半径要小;在空位存在的情况下,由于Al原子与Li原子的电负性相差明显,促使Al和Li原子结合,倾向形成Al-Li短程序结构偏聚区,这种含空位的短程序结构很可能就是δ′(Al3Li)亚稳相的前兆结构和生长胚胎;由于Al-Li-空位有序偏聚晶胞的Al—Li键络比基体键络要许多,因此,淬火过程中合金生成的Al-Li-空位偏聚晶胞对合金过饱和固溶体起主要化作用;后续析出的δ′(Al3Li)亚稳相键络各项异性显著,键络度明显提高;由于Al3Li与基体共格,其大量均匀弥散析出起到提升基体整体键络度,同样对合金产生化作用。

The results show: the strongest bond is the Al-Al bond in the segregated cell without containing vacancy, where the Al atomic covalence radius is greater than that of Li atom in the cell; while the strongest bond is the Al-Li bond in the segregated cell containing vacancy, and the Al atomic covalence radius in the cell is less than that of Li atom. Since the difference of electronagativity between the Al and Li atoms is obvious, it is inclined to formed the Al-Li segregated cell of short range order structure in the condition of vacancy present. The short range order structure containing vacancy is probably the embryo or precursor structure of the metastable phase δ'(Al3Li). Because the strongest covalent bond in the Al-Li-vacancy segregated cell in alloy formed in quenching is the main strength reason for supersaturated solid solution of alloy. The bond net of succeeding precipitation of δ'(Al3Li) has the picture of anisotropic Al-Al bonding and the bond intensity enhanced. Since the δ'(Al3Li) is coherence with matrix, the bond net strength is enhanced by the precipitation of δ'(Al3Li) and so strengthen the alloy.

计算结果表明:不包含空位的偏聚晶胞的键络最键为Al-Al键,其中Al原子的共价半径较Li原子的共价半径要大;而含空位的偏聚晶胞的最键为Al-Li键,Al原子的共价半径要比Li原子的共价半径要小;在空位存在的情况下,由於Al原子与Li原子的电负性相差明显,促使Al和Li原子结合,倾向形成Al-Li短程序结构偏聚区,这种含空位的短程序结构很可能就是δ'(Al3Li)亚稳相的前兆结构和生长胚胎;由於Al-Li-空位有序偏聚晶胞的Al-Li键络比基体键络要许多,因此,淬火过程中合金生成的Al-Li-空位偏聚晶胞对合金过饱和固溶体起主要化作用;后续析出的δ'(Al3Li)亚稳相键络各项异性显著,键络度明显提高;由於Al3Li与基体共格,其大量均匀弥散析出起到提升基体整体键络度,同样对合金产生化作用。

Followed by the function of the insurance, the aut hor introduces the cause and the particular situation in our country in detail.

接下来笔者论述了交险产生的原因,交险的产生有其作为一项国际性的法律制度的共同原因,但也离不开我国的特殊国情,特别是后者,笔者在本文中作了详细论述。

Antibacterial experiments results showed that extractions of bacteriostat of lotus leaves had significant antibacterial activities, and the antibacterial characteristics were stable, slightly affected by environment Conditions, such as pH value, temperature, concentration of cations. Also, the extractions exhibited strong antibacterial activities very soon.

抑菌试验结果表明,荷叶抑菌有效成分提取液具有较的抑菌活性,且抑(来源:ABe064C论文网www.abclunwen.com)菌性能稳定,受环境条件,如pH值、温度、金属离子浓度等变化影响较小,且较短的作用时间就表现出较的抑菌作用,因此,荷叶天然食品抑菌剂的开发具有很好的应用前景。

Some species may have more tolerance for climate changes than others, and may not need to move as quickly; some species may be intolerant of change but unable to move.

有一些物种可能比其他的物种对气候变化具有更的适应性,就不需要迅速转移;还有一些物种虽然适应性也,但可能没法迁移。

But turtle strong ability of hunger, even break feed for months and will not be starved to death, disease-resistant strong, and also high survival.

但乌龟的耐饥能力较,即使断食数月也不易被饿死,抗病力亦,且成活率高。

The handtailor nourishes the tonic: Four team's members necessary, it is said can let the human who was already utterly exhausted become the vigor abundant medicine Sword eight: The generation seals gives the strongest god of death the title Alone blinkers eyeshade: The technical development bureau manufacture may unlimited absorb the spirit strength unceasingly the monster, the sword eight uses it to constrain own strength and to store up its spirit strength Shakes the spot: The anaesthetic, the spirit presses the low person so long as stains can remain unconscious, but does not have the function to the spirit strength excel in person Puts on/to collapse the spot: Strong effect anesthetic, even if the spirit strength excel in person also with difficulty resists The day treads gorgeously: So long as pours into the spirit strength to be able in the sky soaring, is the corpse soul unique precious stage prop Energetic body: The secret mobile most important special spirit has one above, thus can cut the soul knife the main body to force the extension to absorb obtains the embodiment Handcuff: May seal up criminal's spirit strength The secret is mobile: The explanation did not have temporarily, found said again Garrulous bee: The bee ninth generation teaches other people, in six brother younger sister's sixth human of bee tree top damask silk, after joins the punishment armed forces the given name which inherits from her great grandmother there Punishment armed forces: The secret mobile first division, is completely in five division's highest organizations.

特制滋养壮剂:四番队的成员必备,据说能让已经疲惫不堪的人变得活力充沛的药剑八:世代封予最死神的称号独眼罩:技术开发局制造的可以无限制不断吸收灵力的怪物,剑八用它来压抑自己的力量并将其灵力储存起来震点:麻醉药,灵压较低的人只要沾上一点就会昏迷不醒,不过对灵力高的人没有作用穿点/崩点:效麻醉剂,即使灵力高之人也难以抗拒天踏绚:只要注入灵力就能在天空飞翔,是尸魂界独一无二的珍贵道具精神体:隐秘机动最重要的特殊灵具之一,能将斩魄刀的本体制转摄其上从而得到具像化手铐:可以封住犯人的灵力隐秘机动:解释暂无,找到了再说碎蜂:蜂家第九代传人,六兄妹中的第六人蜂梢绫,加入刑军后从她曾祖母那里继承来的名号刑军:隐秘机动第一分队,是全部五分队中的最高机构。

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And Pharaoh spoke to Joseph, saying, Your father and your brothers have come to you.

47:5 法老对约瑟说,你父亲和你弟兄们到你这里来了。

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