![]() ![]() They have very high spatial and temporal resolution.9 Airborne Doppler radars are advantageous for studying individual storm cells and mesoscale weather phenomena because: Appendix B: Satellite Microwave Sensors and Measurement CapabilitiesÄoppler radars have been flying on research aircraft since the first prototype was tested in 1982.Focus 2: JPSS, GPM, and Tropical Precipitation Estimates.Focus 1: Satellite Cloud and Precipitation Radars.2.10 Monitoring Air Chemistry from Satellites.2.9.4 Land Use, Land Cover, and Other Surface Changes at High Resolution.2.9.1 Surface Water: Sea Surface, Soil Wetness, Floods.2.9 Monitoring Earth's Surface from Space.2.7.2 Precipitation Estimates from Scatterometry.2.5.4 Satellite Observation of Tropical Cyclone.2.5.3 Microwave Observations of Clouds and Precipitation.2.5.1.3 Microphysical Parameters of Clouds.2.5.1.1 Three-dimensional (3-D) Cloud Structure.2.5 Satellite Detection of Clouds and Precipitation.2.4.2 Soundings from GPS Radio Occultation.Box 2-3 Basis of Satellite Sounding Retrievals.2.3.2 Satellite Microwave Estimates of Water Vapor.2.2.5 Upper-tropospheric Radar Applications.2.2.4 Wind Profilers and Boundary Layer Applications.2.2.3 Satellite-based Precipitation Radar.2.1.2.2 The Global Satellite Observation System.2.1.2 Basics of Remote Sensing by Radar and Satellite.2.1.1 Why Remote Sensing in the Tropics?. ![]()
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