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It is the important part of the administration structure of a modern company.
现代公司的功能与作用依赖于董事会这一媒介而发挥,董事的法律地位使得董事在公司中起着举足轻重的作用。
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By measuring and analyzing the total nitrogen,α-amino nitrogen and component, the effect of high pressure on the autolysis of anchovy, and the effect of salt addition as well as enzyme added on the high pressure hydrolysis were investigated.
以水解液总氮含盆、α-氨基氮及游离氨基酸组成成分等为指标,研究了超高压在鳀鱼自身降解过程中所起的作用,同时讨论了超高压下添加盐、外源酶对超高压作用效果的影响。
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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强键为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强键为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键络比基体键络要强许多,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强化作用;后续析出的δ′(Al3Li)亚稳相键络各项异性显著,键络强度明显提高;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强度,同样对合金产生强化作用。
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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强键为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强键为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键络比基体键络要强许多,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强化作用;后续析出的δ'(Al3Li)亚稳相键络各项异性显著,键络强度明显提高;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强度,同样对合金产生强化作用。
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It is reported that SarA regulates the transcriptions of lipA encoding lipase, zinC encoding membrane-associated zinc metalloprotease and atlE encoding autolysin. SarA exhibiting an up-regulation on lipA and zinC, and down-regulation on atlE were demonstrated by reverse-transcription PCR and reporter gene lacZ analysis respectively.
RT-PCR和lacZ报告基因的分析结果显示,在表皮葡萄球菌ATCC35984中,SarA对atlE表达起负调控作用,而对lipA和zinC(膜相关锌金属蛋白酶基因)的表达则有正调控作用。
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By measuring and analyzing the total nitrogen,α-amino nitro- gen and component,the effect of high pressure on the autolysis of anchovy,and the effect of salt addition as well as enzyme added on the high pressure hydrolysis were investigated.
以水解液总氮含量、α-氨基氮及游离氨基酸组成成分等为指标,研究了超高压在鳀鱼自身降解过程中所起的作用,同时讨论了超高压下添加盐、外源酶对超高压作用效果的影响。
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The rise of CINC was an effect of activiting WBC after the ischemia or ischemia reperfusion and indicated that the change was involving in the damage of ischemia reperfusion.
实验性脑缺血再灌注外周血CINC有表达增高改变,其作用过程可能与白细胞激活过程有关,提示CINC增高可能在脑缺血再灌注损伤中起一定作用。
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Here, the convection is of vital importance for the formation of groundwater pollution system.
在此处,对流作用对地下水污染系统的形成起至关重要的作用。
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Yi clan ancestor worship ceremony is the most important religious activity and a kind of salvation,which reflects the religion,philosophy,history,folk customs,ethics literature and other aspects of Yi people's culture.The rite of honoring ancest...
彝族氏族祭祖大典,是彝族宗教活动中超度祖先亡灵最为隆重的祭祀活动,它体现了彝族的宗教、哲学、历史、民俗、伦理、文学等各方面的文化,更对彝族文明的发展起着多重的社会功能,在彝族生活中起着举足轻重的作用。
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Nigel has overall responsibility for the strategic direction of the business as well as remaining closely involved with several of the agency's clients. He also works hard to ensure that BBH lives by its mantra:"When the World Zigs, Zag."
耐吉尔 -伯格勒先生作为CEO,在对 BBH 战略方向的把握和同重要客户的交往中起着至关重要的作用,他辛勤的工作使 BBH 用实际行动验证了自己的座右铭:&当整个世界摇起来时,我们就摆起来。&
- 推荐网络例句
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For a big chunk of credit-card losses; the number of filings (and thus charge-off rates) would be rising again, whether
年美国个人破产法的一个改动使得破产登记急速下降,而后引起了信用卡大规模的亏损。
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Eph. 4:23 And that you be renewed in the spirit of your mind
弗四23 而在你们心思的灵里得以更新
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Lao Qiu is the Chairman of China Qiuyang Translation Group and the head master of the Confucius School. He has committed himself to the research and promotion of the classics of China.
老秋先生为中国秋阳翻译集团的董事长和孔子商学院的院长,致力于国学的研究和推广。