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NEXRAD or Nexrad (Next-Generation Radar) is a network of 159 high-resolution S-band Doppler weather radars operated by the National Weather Service (NWS), an agency of the National Oceanic and Atmospheric Administration (NOAA) within the United States Department of Commerce, the Federal Aviation Administration (FAA) within the Department of Transportation, and the U.S. Air Force within the ...
WFSB (channel 3) is a television station licensed to Hartford, Connecticut, United States, serving the Hartford– New Haven market as an affiliate of CBS. Owned by Gray Television, the station maintains studios on Denise D'Ascenzo Way in Rocky Hill and a transmitter on Talcott Mountain in Avon, Connecticut. Most of WFSB's programs are seen in ...
Doppler effect. The emitted signal toward the car is reflected back with a variation of frequency that depends on the speed away/toward the radar (160 km/h). This is only a component of the real speed (170 km/h). The Doppler effect (or Doppler shift), named after Austrian physicist Christian Doppler who proposed it in 1842, is the difference ...
Here are the live current conditions, from the National Weather Service doppler radar. Skip to main content. Sign in. Mail. 24/7 Help. For premium support please call: 800-290-4726 ...
2011 New England tornado outbreak. On June 1, 2011, a total of six tornadoes touched down in both western Massachusetts and western Maine. The strongest was a long-track, high-end EF3 tornado that caused significant damage to the city of Springfield, Massachusetts as well as several adjacent cities and towns.
The wobble tracker watches the motion of hurricanes and tropical storms by using a combination of data from satellites, radar, the forecast trajectory, and the previous path the storm is on, to ...
Shortly before noon, the NWS shared a simulation of a radar loop showing the potential evolution of South Florida’s weather for this afternoon and evening on social media. The simulated loop ...
Pulse-Doppler systems measure the range to objects by measuring the elapsed time between sending a pulse of radio energy and receiving a reflection of the object. Radio waves travel at the speed of light, so the distance to the object is the elapsed time multiplied by the speed of light, divided by two – there and back.
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