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And yet, in Raissa, at every moment there is a child in a window who laughs seeing a dog that has jumped on a shed to bite into a piece of polenta dropped by a stonemason who has shouted from the top of the scaffolding,"Darling, let me dip into it," to a young serving maid who holds up a dish of ragout under the pergola, happy to serve it to the umbrella-maker who is celebrating a successful transaction, a white lace parasol bought to display at the races by a great lady in love with an officer who has smiled at her taking the last jump, happy man, and still happier his horse, flying over the obstacles, seeing a francolin flying in the sky, happy bird freed from its cage by a painter happy at having painted it feather by feather, speckled with red and yellow in the illumination of that page in the volume where the philosopher says:"Also in Raissa, city of sadness, there runs an invisible thread that binds one living being to another for a moment, then unravels, then is stretched again between moving points as it draws new and rapid patterns so that at every second the unhappy city contains a happy city unaware of its own existence."
可是,在莱莎的每一刻钟都听得到窗旁的小孩的笑声,因为他看见一头狗扑上小屋抢吃一块烧饼;烧饼是棚架上的石匠掉下的;他当时正在向一个年轻的女侍应员高声喊叫:"好人,让我尝一尝";那年轻女子正捧着肉汤满心高兴地送给一个庆祝交易成功的制伞工人;爱上青年军官的一位贵妇人在赛马场炫耀她的镶花边的白阳伞;马背上的军官最后一次跳跃时向她笑了一笑;他是个快乐的人,不过他的马比他更快乐,它跳栏的时候看见鹧鸪在天上飞;快乐的鸟儿刚被一位画家放出囚笼;快乐的画家完成了鸟的插图,描出它每一根红黄斑点的羽毛;插图的书页上有哲学家的话:"忧愁的城市莱莎也有一根无形的线,在某个顷间把一个生物连系上另一个生物,然后松开,又在两个移动的点之间伸展,快速画出新的图形,因此,不快乐的城市在每一秒钟都包藏着一个快乐的城市,只是它自己并不知道罢了。"
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The patterns of movement of labelled photoassimilate in the phloem were qualitatively against to the movement of acid fuchin in xylem.
在韧皮部中标记的光合同化物的运输格局与木质部中酸性品红的移动是相反的,具有强烈的向基性。
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The results showed that the TiN andN films are polycrystalline phase. The properties and structure of TiN films are mainly determined by the N2 mass flow rate, and as the N2 mass flow rate increases, the structure of the TiN films transforms to f.c.c. type leading to better the properties of films. The presence of negative bias voltage can optimize the grain of TiN films, lower the defect proportion and denser the films, which improves the hardness of films. The TiN films conform to the free carrier absorption mechanism and there are many of free electrons with lower N content in TiN films. With the increase of N content, the quantity of free electrons and reflectivity of films decrease, and the plasma frequence shifts to the lower energy, which leads to the regular change of colors of films from silver, yellowy, golden to yellow-red, meanwhile the lightness of films decreases. The goldenN film consists of TiN and ZrN phase, but belongs to a sigle f.c.c. structure with (111) preferred orientation. The Zr-doping dosen't change the position of the valance band, conduction band and forbidden band ofN film, but leads to the presence of new energy levels, which is the reason thatN film remains golden. The transparent hard films with good corrosion resistance and high hardness have been prepared and the further reseachs showed that the grain size of those films is by far smaller than the wave length and the width of forbidden band of those films is very broad, is the reasons that those films are transparent.
研究表明:氮化钛和N 薄膜为多晶态,氮流量决定了氮化钛薄膜的结构和性能,增加氮流量能使氮化钛薄膜的结构向面心立方结构转变,从而得到性能良好的氮化钛薄膜;施加负偏压能优化氮化钛晶粒和减少薄膜中的缺陷,使膜层变得更致密,从而提高薄膜硬度;氮化钛主要遵循自由载流子光吸收,氮含量较少时薄膜中的自由电子数目较多,随着氮含量的增加,薄膜中的自由电子数目不断减少,反射率逐渐降低,等离子体频率向低能端移动,从而使薄膜颜色出现规律变化,由金属色银白色到淡黄、金黄再到红黄,并且薄膜亮度呈下降趋势;金黄色的N 薄膜中存在TiN 和ZrN 的分离相,但其为单一的面心立方结构并具有(111)面择优取向;相对于TiN 薄膜,Zr 掺杂后,并没有使薄膜的导带、价带和禁带发生变化,只是在TiN 禁带内增加了新能级,这也正是掺杂Zr 后,薄膜仍
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The complexation of SCnA also results in a bathochromic shift and a decrease in optic intensity of the absorption spectrum of DS.
在水溶液中磺化杯芳烃可与二苯胺重氮盐形成包结物,导致DS的化学位移向高场移动,同时使其吸收光谱红移,强度下降。
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The maximal emission wavelength of eosin was red shifted in the polymer than in solution,the apparent Ka largened,and the dissociation equilibrium of indicator was shifted to direction,becau...
曙红染料在聚合物介质中由于极性的减弱,其最大荧光发射波长较在水溶液中红移,表观解离常数增大,对pH的响应区间向酸性方向移动。
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The results showed that the red /blue color index during twilight changed evidently with AODs in lower atmosphere. When AOD was small, there was a maximum of the radiance at 450nm in the high view elevation angle. So the sky color at the zenith is blue. However, the maximum shifted to red wavelength (about 700nm) with the fall of view elevation angle.
计算结果分析表明,曙暮光时天空辐射强度的红蓝光颜色指数随近地层大气气溶胶光学厚度的变化显著;当τ较小时,太阳辐射随波长的变化显著,在高仰角450nm附近有极大值,天顶方向以蓝色调为主;而在低仰角极大值向红光方向移动。
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The degree of "redshift" or "blueshift" is directly related to the object's speed in the direction we are looking.
红移或蓝移的程度直接取决于天体在我们视向的移动速度。
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redshift:<天>(天体)红移,红向移动
Dark Portal 黑暗之门 | redshift <天>(天体)红移,红向移动 | Sedormid [药]司眠脲(一种镇静药)