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   垂直相互作用 的翻译结果: 查询用时:0.679秒
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垂直相互作用
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  vertical interaction
     mesoderm inductionbeing initially a planar induction processfollowed by a vertical induction for itsultimate regional differentiation,whereasan initial vertical interaction is indispen-sable for neural induction both for theactivation and the transformation processes.
     中胚层诱导开初是一个平面诱导过程,继之以一个垂直诱导,以实现最终的区域分化,而神经诱导则必须有最初的垂直相互作用,以实现激发和转化过程。
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  “垂直相互作用”译为未确定词的双语例句
     INTERACTION OF TWO SOLITARY WAVES AT RIGHT ANGLES
     孤立波的垂直相互作用
短句来源
  相似匹配句对
     INTERACTION OF TWO SOLITARY WAVES AT RIGHT ANGLES
     孤立波的垂直相互作用
短句来源
     Soil-Structure Interaction under Vertical Vibration
     垂直振动时的土-结构相互作用
短句来源
     Interaction of Solitary Waves
     孤立子的相互作用
短句来源
     Interaction of antimatters
     反物质的相互作用
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     Vertical Limit
     垂直极限
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  vertical interaction
This paper extends the notion to include an hierarchical system, thus facilitating the consideration of vertical interaction in the analysis of regional interaction.
      
Obviously, vertical interaction is not altogether a new concept.
      
In winter the vertical interaction seems to be strongest in cases, where the winter separating layer is completely dissolved.
      
In addition to the in-plane interaction the vertical interaction energy between the analogue and the normal bases has been computed to specify the particular position of the analogue in the chain.
      
The essential vertical interaction in the neural induction process both in urodelian and in anuran amphibians is emphasized.
      
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Both meso-endoderm and neural induc-tion require planar as well as vertical in-ductive interactions;mesoderm inductionbeing initially a planar induction processfollowed by a vertical induction for itsultimate regional differentiation,whereasan initial vertical interaction is indispen-sable for neural induction both for theactivation and the transformation processes.These vertical inductions are then followedby planar,homoiogenetic spreading inside the ectodermal layer,determining the ul-timate form and size...

Both meso-endoderm and neural induc-tion require planar as well as vertical in-ductive interactions;mesoderm inductionbeing initially a planar induction processfollowed by a vertical induction for itsultimate regional differentiation,whereasan initial vertical interaction is indispen-sable for neural induction both for theactivation and the transformation processes.These vertical inductions are then followedby planar,homoiogenetic spreading inside the ectodermal layer,determining the ul-timate form and size of the neural plateas well as its regional differentiation.Fordorsal convergence and stretching of theneural plate,both activation and subse-quent transformation seem to be required.

中-内胚层诱导和神经诱导都需要平面的和垂直的诱导相互作用;中胚层诱导开初是一个平面诱导过程,继之以一个垂直诱导,以实现最终的区域分化,而神经诱导则必须有最初的垂直相互作用,以实现激发和转化过程。这些垂直的诱导作用,继之以在外胚层内传播的同源诱导作用,决定神经板的形状和大小,以及其区域分化。对于神经板的背面集中和伸长,激发作用和后来的转化作用似乎都是必需的。

Consider two mean fields hb?hc,along ? in the surface layer of a biaxial nematic liquid crystal(LC) cell. Surface energy related to the orientation of directors, order parameters, field strengths hb?hc is derived. Phase diagram of surface layer liquid crystal in hb?hc plane is obtained. The results show that for given hc ,increasing field strength hb can enable system enter a biaxial phase along 0(=0×0) (when hb<0 ) or 0 (when hb>0). For a finite thickness LC cell, decreasing...

Consider two mean fields hb?hc,along ? in the surface layer of a biaxial nematic liquid crystal(LC) cell. Surface energy related to the orientation of directors, order parameters, field strengths hb?hc is derived. Phase diagram of surface layer liquid crystal in hb?hc plane is obtained. The results show that for given hc ,increasing field strength hb can enable system enter a biaxial phase along 0(=0×0) (when hb<0 ) or 0 (when hb>0). For a finite thickness LC cell, decreasing cell thickness can increase the influence of surface interaction to the bulk, therefore the temperature region for the biaxial phase will increase. Symmetry properties of midcell and surface LC are not always the same. For relative large vale of hc,phase symmetry in midcell lags behind that of surface.

 考虑表面对液晶沿^b0、^c0两相互垂直的相互作用平均场hb、hc,导出在此平均场作用下双轴向列相液晶表面能与指向矢,序参数以及hb、hc有关的一般公式.得到表面处液晶在hb、hc平面内的相图.结果表明对于给定的hc,增加沿^b0的场强hb,可使系统进入沿^a0=(^b0×^c0)(当hb<0)或^b0(当hb>0)的双轴相.对有限厚度液晶盒,减少盒厚可增加表面相互作用对系统的影响,使双轴相所在温度区域增加.表面与盒中心液晶相的对称性并非总是同步,当hc较大时,盒中心液晶双轴相的对称性明显滞后于表面.

 
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