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refraction     
相关语句
  折射
     Genetic Algorithms in Seismic Waveform Inversion and Calculus-based Algorithms in Traveltime Inversion and Their Applications in Seismic Wide-angle Reflection and Refraction Data
     波形反演遗传算法与走时反演微分算法及其在地震宽角反射折射资料解释中应用
短句来源
     Characteristics of Waveguides with Negative Refraction and Their Applications
     负折射介质波导特性及应用研究
短句来源
     REFRACTION OF DETONATION WAVES ON MATERIAL INTERFACE
     爆轰波在物质介面上的折射
短句来源
     A Method to Interpret the Time-Distance Curve of Refraction Wave for Shallow Layers Near Sea Shore
     近海浅层折射波时距曲线的一种解释方法
短句来源
     Calculation and Analysis of Wave Refraction Inside or Outside of Jiao Zhou Bay
     胶州湾内、外波浪折射计算与分析
短句来源
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  屈光
     dry subjective refraction,(-5.30±2.15)D、(-0.64±0.73)D、81.67±75.22;
     主观屈光检查是 (- 5 .30± 2 .15 )D、(- 0 .6 4± 0 .73)D和 81.6 7± 75 .2 2 ;
短句来源
     The mean posterior corneal refraction(3.0 mm dia) was(-6.57±0.22)D preoperatively,and decreased to (-6.85±0.23)D,(-6.83±0.28)D and(-6.81±0.25)D,respectively,after 1 month, 2 months and 6 months.
     3.0 mm直径角膜后表面屈光力均值术后第1个月为(-6.85±0.23)D,术后第2个月为(-6.83±0.28)D,术后第6个月为(-6.81±0.25)D;
短句来源
     RESULTS:High myopia (-12.1±4.3D) and axial lengthening (9.86±0.38mm) were found in form deprivation eyes,and were significantly different from refraction(+2.7±0.5D) and axial length (8.71±0.28mm) of the lateral control eye(P<0.01).
     结果:形觉剥夺组剥夺眼形成了高度近视(-12.1±4.3D),眼轴增长(9.86±0.38mm),与右眼的屈光(+2.7±0.5D)和眼轴(8.71±0.28mm)相比,差异具有显著性(P<0.01);
短句来源
     On average, the axis was 28.06mm long, the curvature being 44.02D, the average value of the estimated IOL and that of the implanted IOL being +13.0D, and +14.0D respectively, the postoperative refraction being -2.25D.
     平均眼轴28.06mm,平均曲率44.02D,平均IOL测算值+13.0D,实际植入IOL平均值+14.0D,术后屈光状态平均为-2.25D。
短句来源
     Results:The refraction after PRK was from-1.5D~-9.0D(-369 in average).
     结果 :PRK术后屈光欠矫为 - 1 5D~ - 9 0D ,平均为- 3.6 9D ;
短句来源
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  折射波
     2. Based on reflection wave P_(11), S_(11) and refraction wave P_n、S_n, from a single-layer crust model, the velocity of refraction and reflection waves are obtained. V_(P11)=6.43KM/S, V_(S11)=3.72KM/S, V_(p_n)=8.02KM/S.
     2、根据反射波P_(11)、S_(Pn)引折射波P_n、S_(Sn)的资枓,取单层地壳模型得到反射波和折射波的速度为:V_(p11)=6.43公里/秒,V_(S11)=3.72公里/秒,V_(pn)=8.02公里/秒。
短句来源
     SHALLOW SEISMIC REFRACTION PROSPECTING
     浅层地震折射波法勘探
短句来源
     Transforming the refraction wave field Φ(x,t) into τ p domain,τ(p) can be picked up from slant function φ(p,τ).
     地震折射波场Φ(x,t)通过τ-p变换得到倾斜迭加场φ(p,τ)。
短句来源
     we describe three static methods : field primary static correction ,refraction statics and automatic residual statics , and then introduce the principle of the three static methods.
     针对该地区严重的静校正问题提出了三种静校正方法,即野外静校正方法、利用地震记录的初至折射波求取静校正量方法、反射波剩余静校正方法,并就这三种静校正技术的方法原理作了详细的说明。
短句来源
     Refraction Energy Distribution Calculation for Single Ray(Water Wave Linear Theory)
     单射线折射波能分布计算(水波线性理论)
短句来源
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  屈光度
     Refraction was -0.57±1.84D and -5.02±4.26D 7a after surgery in the two groups respectively.
     7a时I组屈光度-0.57±1.84D,Ⅱ组-5.02±4.26D。
短句来源
     Spherical equivalent refraction was +0.49±0.31D( 0.25~+1.00D), and astigmatism was 0.45±0.21D(0~ 0.75D).
     屈光度 :球镜 +0 . 49± 0 . 31D (- 0 . 2 5~ +1. 0 0 D) ,散光 - 0 . 45± 0 . 2 1D (0~ - 0 .75 D) ;
短句来源
     2.The average diopter of spherical equivalent refraction was (-2.39±2.10)D, in which low myopia (-1.62±0.75)D, moderate myopia(-4.32±0.83)D and high myopia(-7.45±1.41)D.
     平均屈光度(-2.39±2.10)D,其中低度近视平均(-1.62±0.75)D,中度近视平均(-4.32±0.83)D,高度近视平均(-7.45±1.41)D。
短句来源
     The average diopter of spherical equivalent refraction was (-3.29±2.49)D, in which, low myopia (-1.79±0.75)D, moderate myopia(-4.34±0.88)D, high myopia(-7.77±1.46)D.
     平均屈光度为(-3.29±2.49)D,其中低度近视平均(-1.79±0.75)屈光度(D),中度近视平均(-4.34±0.88)D,高度近视平均(-7.77±1.46)D。
短句来源
     The average diopter of spherical equivalent refraction was (-3.39±2.34)D, in which, there were low myopia (-1.83±0.75)D, moderate myopia (-4.38±0.85)D and high myopia (-7.49±1.28)D.
     高中平均屈光度(-3.39±2.34)D,其中低度近视平均(-1.83±0.75)D,中度近视平均(-4.38±0.85)D,高度近视平均(-7.49±1.28)D。
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  refraction
A new slicing method of reverse engineering based on the principle of refraction and reflection
      
In order to overcome the said shortcoming, a new slicing method of reverse engineering, based on the principle of refraction and reflection of a prism, has been propounded.
      
To eliminate geometrical distortions caused by the refraction and reflection of the prism, a mathematical transformation model can be set up to correct the image by using relevant software.
      
Negative refraction and focusing of electromagnetic wave through two-dimensional photonic crystals
      
The negative refraction of electromagnetic waves in photonic crystals was recently demonstrated experimentally, and the physical properties were analyzed.
      
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