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复合区
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  “复合区”译为未确定词的双语例句
     A comp ex zone formed by a bodysuperconductor and surface superconductor is found on 4πM-H curve for column pure Nb Sample.
     发现在柱状纯铌样品的4πM-H曲线上,有一体超导和表面超导的复合区.
短句来源
     It is found that when μh>μe, the recombination area is lean to cathode and when μh<μe, is lean to anode.
     当μ_h>μ_e时,复合区域偏向阴极,当μ_h<μ_e时,复合区的位置偏向阳极。
短句来源
     Let the point of intersection by a tangent from the turning point with H axis be defined as Hc2. The region between the turning point and Hc2 is called complex zone.
     把从该点所作切线与H轴的交点定义为H_(c2)该拐点与定义的H_(c2)之间为复合区.
短句来源
     The inshore area is just located in the superimposed or stacked area between Es 4-Es 3 source rocks and Es 1-Ed source rocks.
     滩海地区正处于 Es4 —Es3和 Es1— Ed两大套生烃岩系的叠置复合区
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     Discussion on Multiple Choices of Resources Use in Mine-grain Mixed Zone
     矿粮复合区资源多用途选择的探讨
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  相似匹配句对
     Differentiation of Compound Mappings
     映射的微分
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     Compound Modification Asphalt Waterproof Materials
     改性沥青防水材料
短句来源
     necking down region;
     颈缩 ;
短句来源
     polycrystalline area;
     多晶;
短句来源
     Culture Region
     文化
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  composite zone
The effective permeability of this composite zone, on the outside of the well casing, is an important parameter for models of leakage.
      
The theoretical analysis indicates that a composite zone and a blank zone exist in gradient composite, which can be controlled to the outside or inside of the tubular composite by the density difference of particle and liquid metal.
      
No interface is developed between the composite zone and the base material.
      


The neural connections of telencephalon Field L complex in songbird (Emberiza rutila) were studied with horserodish peroxidase(HRP) anterograde and retrograde tracing method. The results showed that Field L complex consists of L1,L2 and L3. L2 receives the input from nucleus ovoidalis(Ov) and connects with L1 and L3. L1 and L3 project to the shelf under higher vocal center(HVC),the cup surrounding the robust nucleus of archistriatalis(RA) and caudolateral hyperstriatum ventrale(clHV). Field L complex receives...

The neural connections of telencephalon Field L complex in songbird (Emberiza rutila) were studied with horserodish peroxidase(HRP) anterograde and retrograde tracing method. The results showed that Field L complex consists of L1,L2 and L3. L2 receives the input from nucleus ovoidalis(Ov) and connects with L1 and L3. L1 and L3 project to the shelf under higher vocal center(HVC),the cup surrounding the robust nucleus of archistriatalis(RA) and caudolateral hyperstriatum ventrale(clHV). Field L complex receives afferent from the medial magnocellular nucleus of the anterior neostriatum(mMAN). The shelf and clHV may have contact with HVC. The results provide a morphological basis for song learning by auditory feedback and auditory motor integration.

利用辣根过氧化物酶顺、逆行追踪的方法对鸣禽栗端脑新纹状体L复合区的神经联系进行了研究。结果表明,新纹状体L复合区中的L2区主要接受来自丘脑卵圆核的传入,并与L1和L3区有纤维联系;而L1和L3区传出纤维投射至高级发声中枢腹侧的架区、古纹状体粗核喙背侧的杯区以及上纹状体腹部尾外侧等处;L复合区亦接受来自新纹状体前部巨细胞核内侧部的传入投射。

Choerospondias axillaries trees and peanut of agroforestry in the red soil of low hilly land utilize soil water either in cooperation or in competition.Choerospondias axillaries trees can absorb water from moisture soil at deep horizon and lift water to the surface of soil for peanut using the roots of trees distributed deeply.Competition of the water between Choerospondias axillaries trees and peanut only takes place in dry season(from July to October)and the competition is not obvious.So the water competition...

Choerospondias axillaries trees and peanut of agroforestry in the red soil of low hilly land utilize soil water either in cooperation or in competition.Choerospondias axillaries trees can absorb water from moisture soil at deep horizon and lift water to the surface of soil for peanut using the roots of trees distributed deeply.Competition of the water between Choerospondias axillaries trees and peanut only takes place in dry season(from July to October)and the competition is not obvious.So the water competition of Choerospondias axillaries trees and peanut of agroforestry is not the main obstacle factor affecting peanut growth.

试验研究结果表明农林复合系统南酸枣与花生利用土壤水分既协同又竞争,二者根系分布空间有差异,南酸枣根系可从深层湿润土壤中吸收水分,再通过根系提水作用,使水分运移至上层释放,被邻近花生残根所吸收利用。复合区比单作区入渗水多,植物蒸腾减缓,树木遮荫降温,均有利于复合系统自身土壤水分协调平衡。二者水分竞争主要表现在7~10月份干旱季节,但上层土壤水吸力差值较小,表明种间吸水竞争不甚明显,复合系统造成的种间水竞争负面影响不是抑制花生生育的主要障碍因子。

 
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