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增大提高
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  larger increase
     Trials with `Muscat Hamburg'grapevines in 1999~2000 showed that it could inforce berry clustes to grow heavier and berry grains larger, increase fruit setting rate and fruit yield , and the seedless rate could be got 82.3%~91.5%, but the content of soluble solids reduced.
     1 999~ 2 0 0 0年在玫瑰香葡萄上的试验表明 ,葡萄三高素可促进玫瑰香葡萄果穗增重、果粒增大 ,提高坐果率和产量 ,果粒无核率达到 82 .3 %~ 91 .5 % ,但可溶性固形物含量降低。
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  “增大提高”译为未确定词的双语例句
     The same treatment with 1% ~ 2% of CPPU 10~ 20 days after flowering could make the fruits bigger and improve the quality.
     用 1%~ 2 %果王液在花后 10~ 2 0 d喷果 ,可明显促进果实增大 ,提高果实品质 ;
短句来源
     (2)The Mango fruit can get bigger and longer and its average per fruit weight is increased by using GLD, the average per fruit weights of Zi-Hua Mango and Gui-Xiang Mango is increased by above 6.22%and 13.6% respectively.
     ( 2 )GLD能够拉长果径 ,促进果实增大 ,提高芒果的平均单果重 ,紫花芒果平均单果重比对照提高 6 .2 2 %以上 ,桂香芒果提高 1 3.6 %以上 ;
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     Based on these experimental facts, it is inferred that ATP were probably completed through the binding (or chelation)of their terminal γPO4(or both γ PO4 and β PO4)group to the cubane cluster, resulting in an increase in ligand field acting on the cluster and thus promoting electron outflow from the cluster to the redox dye ( methylere blue ) .
     根据这些实验事实,可以认为ATP能以末端的γ-PO_4基团,或γPO_4和β-PO_4基团与[Fe_4S_4(SPh)_4]~(2-)原子簇络合或螯合,引起后者的配位场增大,提高电子的输出能力。
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     The corrosion rates of CPTi and Ti 6Al 4V alloy also increase in Hank's solution with much lower pH value.
     工业纯 Ti和 Ti- 6 Al- 4V合金的腐蚀电流密度增大 ,提高离子释放速度 ,加大对人体的潜在生理危害
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     With the extending of production capacity of large mine surface production system, the motor capacity of single equipment is also enlarged; thus it is necessary to improve the voltage class of surface production system.
     随着大型矿井地面生产系统生产能力的扩大,单台设备的电动机容量也随之增大,提高地面生产系统的电压等级势在必行。
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  相似匹配句对
     Improve Charging Capacity by Increasing Transmission Ratio
     增大传动比 提高上料能力
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     It showed that k_La (increased) with the increase of Fr.
     随着Fr提高,kLa增大;
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     Increase cure rate.
     提高治愈率。
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     improve the staff's qualities;
     提高人员素质;
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     enlargement lymphy node.
     淋巴结增大
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  larger increase
Cyclic AMP content was similar at baseline, but controls had a significantly larger increase (123-155 %) during isoproterenol infusion when compared to the denervated group (27-37%).
      
Furthermore, patients with lower LF power at baseline, had a larger increase in the thickness of the carotid bulb intima-media at follow-up.
      
It was confirmed that PEI neutralized specimens, compared to untreated PP, exhibited a larger increase in debond strength (~269% increase) than similarly treated specimens neutralized with NH4OH (~210% increase).
      
Hot rolling resulted in a larger increase of the cohesion strength of LS-and TS-oriented boundaries than that of LT-oriented boundary, thus causing the corresponding change of fracture mode at a certain deformation amount (30%).
      
These differences may cause a larger increase in left ventricular function, which was significant in some, but not all of the direct comparisons of the two agents.
      
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We've studied the physiological changes of the embryogenic calluses of sand reed(SREC) and the water reed(WREC) in response to the osmotic stress of PEG 6000 and exogenous ABA.The results showed that the contents of free proline,relative membrane permeability and safeguard enzyme(CAT,POD and SOD)activity of SREC and WREC increased under the PEG osmotic stress treatment from 10%~30%,while the relative water content(RWC) decreased under the same treatment.Still the contents of proline and safeguard enzyme activity...

We've studied the physiological changes of the embryogenic calluses of sand reed(SREC) and the water reed(WREC) in response to the osmotic stress of PEG 6000 and exogenous ABA.The results showed that the contents of free proline,relative membrane permeability and safeguard enzyme(CAT,POD and SOD)activity of SREC and WREC increased under the PEG osmotic stress treatment from 10%~30%,while the relative water content(RWC) decreased under the same treatment.Still the contents of proline and safeguard enzyme activity of SREC increased higher than these of WREC While the relative membrane permeability and RWC of SREC decreased less than these of WREC.It also showed the response of WREC to exogenous ABA was much higher than that of SREC.

研究了沙生芦苇胚性愈伤组织 (SREC)和水生芦苇胚性愈伤组织 (WREC)对PEG 60 0 0的胁迫及外源ABA的生理响应。结果显示 :10 %~ 30 %的PEG胁迫使 2种愈伤组织的游离脯氨酸(Pro)含量升高、质膜透性增大、提高了保护酶 (SOD、CAT、POD)的活性 ,降低了细胞相对含水量 (RWC) ,SREC的游离Pro含量和保护酶活性的升高幅度大于WREC ,质膜透性和RWC的变化前者小于后者。外源ABA对WREC的作用大于SREC

Kim Seung Hun Seo Soo Yeon Lee Li Hyung The flexural capacity of inverted T shaped composite basement wall which consists of H shaped steel beam and RC wall is evaluated.Stud or U\|shaped bar connectors are used to combine those members.Ten specimens with parameters such as the composite ratio,detail of connection,length of bolts and stiffness of wall are designed and tested.In addition,a pure RC wall specimen is designed for comparison.Test specimens showed high initial stiffness when the magnitude...

Kim Seung Hun Seo Soo Yeon Lee Li Hyung The flexural capacity of inverted T shaped composite basement wall which consists of H shaped steel beam and RC wall is evaluated.Stud or U\|shaped bar connectors are used to combine those members.Ten specimens with parameters such as the composite ratio,detail of connection,length of bolts and stiffness of wall are designed and tested.In addition,a pure RC wall specimen is designed for comparison.Test specimens showed high initial stiffness when the magnitude of shear stud in the connection is increased.However,the ultimate strength was not changed.It was shown that U\|shaped bar and longer shear stud in the connection improved the deformation capacity of specimens.Also,the ultimate strength of composite basement wall combined H shaped steel beam and RC wall by stud or U\|shaped bar connector turned out 2 8 times higher than that of pure RC wall specimen.

为了研究倒T形型钢 混凝土组合结构 (地下组合墙体系统 ,即CBS)的抗弯受力性能 ,以剪切连接度、U形补助连接钢筋、栓钉长度、受拉钢筋及墙体厚度作为主参变量 ,进行了 1 1根两跨型钢 混凝土组合梁的试验研究。研究结果发现U形补助连接钢筋及栓钉的附加长度明显地改善了结构的延性 ,墙体厚度及受拉钢筋的增大提高了结构的刚度和强度。并且验证了倒T形型钢 混凝土组合结构的跨中极限抗弯承载力计算可以直接利用一般型钢 混凝土组合梁的抵抗负弯矩极限承载力的计算公式

The article mainly studies the application of fine cement to the cement slurry with low density under the conditions of low temperature. The experimental study indicates under the conditions of low temperature, comparing with the conventional cements, it can greatly improve the early strength of the cement with low density to use fine cement. When the fine cement is used for the slurry system with low density, the problem, i.e. the early strength of the conventional slurry system with low density is low, is...

The article mainly studies the application of fine cement to the cement slurry with low density under the conditions of low temperature. The experimental study indicates under the conditions of low temperature, comparing with the conventional cements, it can greatly improve the early strength of the cement with low density to use fine cement. When the fine cement is used for the slurry system with low density, the problem, i.e. the early strength of the conventional slurry system with low density is low, is solved since the finer the cement is, the larger the surface area of the cement is, the faster the water percolating into the cement, and the quicker the hydration reaction. Also the stability and permeability of the slurry system with low density are well improved. The fine cement slurry with low density has higher shear strength and better rheopecticity. Comparing with conventional cement, the primary and final setting times of the fine cement are shorter, which is favorable to improve the anti-channeling ability of the cement slurry system with low density. No negative influence of the fine cement appears on the other properties of the slurry in the system with low temperature and low density. Only if its thickening time is adjusted properly, the requirements of the cementing operation can be met.

实验研究了低温条件下微细水泥在低密度水泥浆中的应用。结果表明,在低温条件下,与常规水泥相比,采用微细水泥可以大大提高低密度水泥的早期强度。微细水泥用于低密度水泥体系中,因为水泥越细,水泥的表面积就较大,水能很快地渗入水泥内部,其表面积增大也提高水化反应的速度,从而解决常规低密度水泥早期强度偏低的问题。低密度体系中的稳定性、渗透性也得到了较好的改善。微细低密度体系的静切力较高、触变性较好。另外,与常规水泥相比,微细水泥的初、终凝时间也有缩短,这对提高低密度水泥体系的防窜能力也是有利的。微细水泥在低温、低密度体系中对水泥浆的其它性能无不良影响,只要适当调节其稠化时间,即可满足固井施工的需要。

 
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