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Search radar explore large volume of space. Normally it has a 360 degree of azimuth and 20-30 degrees to 90 degrees elevation angle.

Tracking radars locks a perticular target. Normally it has a narrow azimuth.

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11y ago
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6mo ago

Searching radar is designed to continuously scan a large area to detect and track targets, while tracking radar is focused on monitoring the position of specific targets once they have been identified. Searching radar has a wider scanning range and is used for initial detection, while tracking radar provides more precise and continuous information about a target's movements.

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Q: Difference between searching and tracking radar?
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What happens when radar beam hits an object?

When a radar beam hits an object, it gets reflected back towards the radar receiver. The time difference between sending the radar signal and receiving the reflected signal is used to calculate the distance of the object from the radar. The radar can also determine the object's speed and shape based on how the radar signal is reflected.


Which rays does radar use?

Radar uses radio waves for detecting and tracking objects. These radio waves are emitted by the radar system and bounce off nearby objects, with the reflected waves then being detected by the radar receiver to determine the object's location and speed.


What palindromes are used for invisible rays for tracking objects?

One palindrome commonly used for invisible rays for tracking objects is "radar". This term refers to radio detection and ranging technology, which uses radio waves to detect the presence, location, and distance of objects.


What are radar waves used for?

Radar waves are used for various purposes such as tracking the movement of objects (like aircraft and ships), detecting weather patterns, monitoring speed and distance, mapping terrain, and aiding in navigation for ships and aircraft. Radar is also used in military applications for surveillance and targeting.


Could radar beam be circularly polarized?

Yes, radar beams can be circularly polarized by controlling the phase relationship between the electric and magnetic fields of the wave. Circular polarization helps mitigate the effects of signal fading and interference, making it beneficial in radar applications for improved target detection and tracking.