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SIGNALTONOISE RATIO EQUATION FOR PULSED LIDAR AND RADAR
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10-cm radar 50 log WavelengthMM aperture Atmos atmosphere calculation characteristics cloud base Cloud C.3 Cloud Cloud C.3 Dense Cloud C.3 Light cloud types Coherent detection COMPARISON OF RADAR considered Continental Cumulus Cloud Cumulonimbus Continental Cumulus depth of penetration difference Doppler drop-size distribution effective noise temperature effective temperature Environmental Research essential noise temperature extinction coefficient forecasting function of wavelength Gamma Distribution greater signal-to-noise ratios herent detection heterodyne hundred meters hydrometeors INCOHERENT LIDAR Irreducible Laboratory laser lidar and radar lidar or radar lidar receiver lidar signal lidar systems log Wavelength microwave radar mission mosphere noise figure number of drops observations oscillator parameters parametric amplifier phase photodetector Possible radar quantum efficiency radar and lidar radar backscatter coefficient Rain RainL refractive index Relative signal-to-noise ratio ruby lidar shot noise sky background noise solar radiation Studies cloud superheterodyne receivers system-free Table 5a techniques Teff tion traveling wave tubes ultraviolet water content water vapor wave