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units): table[[3D Air Search RADAR,],[Peak Power [MW]:,3],[Antenna Height [m]:,5],[Antenna Width [m]:,4],[Antenna Height above Water [m]:,25],[Search Antenna Efficiency:,0.85],[Min Signal for Detection [pW]:,1.9],[Carrier Frequency [GHz]:,3.8],[PCR:,90],[Rest Time [

units):\ \\\\table[[3D Air Search RADAR,],[Peak Power [MW]:,3],[Antenna Height [m]:,5],[Antenna Width [m]:,4],[Antenna Height above Water [m]:,25],[Search Antenna Efficiency:,0.85],[Min Signal for Detection [pW]:,1.9],[Carrier Frequency [GHz]:,3.8],[PCR:,90],[Rest Time [

\\\\mu s

,397],[Pulse Width

[\\\\mu s]:

,3]]\ \\\\table[[Target Aircraft ),],[Radar Cross Section

[m2]:

,5],[Altitude when detected

[ft]:

,50],[Range Separation

m

,15],[Altitude Separation

[m]:

,25]]\ (a) Solve basic pulse RADAR generic calculations (characteristics):\ i. A RADAR pulse returns

200\\\\mu

s after being transmitted. What is this contact's range to the RADAR

km

?

image text in transcribed
(a) Solve basic pulse RADAR generic calculations (characteristics): i. A RADAR pulse returns 200 s after being transmitted. What is this contact's range to the RADAR [km]

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