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1.
Atmosphere Refraction Coefficient Correction and High Precision Trigonometric Leveling
大气折光系数修正与高精度三角高程测量
2.
The formula of calcuating average coefficient of refraction is inferred.
推导出大气折光平均折射系数的计算公式。
3.
Measurement of the temperature coefficient of maximal birefringent index of crystal by polarized interference spectrum
测量晶体最大双折射率温度系数的偏光干涉法
4.
Investigations for Parametric Optimization in Inversion of Lidar Return Signals and Characteristics of Atmospheric Boundary Layer over Chengdu;
大气消光系数反演方法参数优化及成都地区大气边界层特性研究
5.
Research on Atmospheric Refraction Error Correction Method of Optic Radar
光学雷达大气折射误差修正方法研究
6.
Development of Mie Scattering Lidar and Inversion for Return Signal;
Mie散射激光雷达实验系统设计与大气消光系数反演方法研究
7.
Research on the effect of the atmospheric turbulence on laser communication system
大气湍流对激光通信系统影响的数值模拟
8.
Contribution Factors of Ambient Light Extinction Coefficient in the Winter of Guangzhou
广州冬季大气消光系数的贡献因子研究
9.
CORRELATIVITY OF ATMOSPHERIC EXTINCTION COEFFICIENT AND REAL-TIME INVERSION COMPUTATION FOR MULTI-WAVELENGTH LASER
多波长激光的大气消光系数相关性及实时反演计算研究
10.
The Research of Extinction Coefficient Measurement of 1064 nm Wavelength by Backscatter Visibility Measuring Set
后向散射式能见度测试仪测量1064nm波长激光大气传输消光系数研究
11.
Statistical Characteristic on Atmospheric Extinction Coefficient and Impact Analysis on Meteorological Elements of Surface Layer of Inland Area
内陆地区近地面大气消光系数统计特征及气象要素影响分析
12.
Its origin is required of refraction or reflection of the light by atmospheric ice crystals.
它是由大气的冰晶对光的折射或反射所产生的。
13.
influence of atmosphere on optical systems
大气对光学系统的影响
14.
The effect of water vapour gradient on the refraction coefficient is fully noted in thispaper.
本文充分注意到了水汽梯度对折光系数的影响。
15.
Quantitative Study on the Relation Between Refractive Index and Molecular Structure of Aliphatic Aldehydes
酯肪醛折光指数与分子结构间定量关系的探讨
16.
Alkane Hydrocarbon Density Refract Light Research,Line of Sexual Relations under Index;
烷烃密度与折光指数间线性关系的研究
17.
Studay on the gain of dioptric compound crystal PBN by dicrotisc mixing;
利用二波混频研究光折变晶体PBN的增益系数
18.
It arises because the refractive index of water( n equals about1.3) is larger than that of air, and rays of light are bent at the interface between the air and the water.
上述现象的原因是水的折射率(大约等于1.3)于空气的折射率,而光在水与空气的界面弯曲了。