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Magellan, a JPL-led project, used synthetic aperture radar to map Venus. Martin Marietta in Denver built the spacecraft, Hughes in El Segundo built the radar.

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Which cloud shrouded planet did the Magellan spacecraft map with radar?

The Magellan spacecraft mapped the cloud-shrouded planet Venus with radar.


What technologies are used to observe planets?

Technologies such as telescopes, spectroscopy, radar, and space probes are commonly used to observe planets. Telescopes, both ground-based and space-based like the Hubble Space Telescope, are essential for capturing images and data. Spectroscopy helps analyze the composition of planetary atmospheres and surfaces. Radar is used to study surface features and map terrains. Space probes, like the Mars rovers, provide close-up measurements and observations.


How can space probes search space?

space probes can search space with cool awesome sweet thrusters, that look cool, answer by dakota actually space probes search space by orbiting around planets answer by nick jeese dakopta your dumb


Is Venus smooth or bumpy?

Venus' surface is characterized by both smooth plains and rugged, bumpy terrain. The smooth plains are thought to be relatively young lava flows, while the bumpy terrain consists of mountains, volcanoes, and large impact craters.


Which thickly clouded planet has radar mapping revealed a varied topography consisting of plains highlands and thousands of volcanic structures?

Venus is the planet that is thickly clouded and has been mapped using radar to reveal its varied topography, including plains, highlands, and thousands of volcanic structures. Venus's dense atmosphere makes it challenging to observe its surface using traditional telescopes, but radar mapping has provided valuable insights into its geology and terrain.


Which thickly clouded planet has radar mapping?

Venus. Here's a good trivia question: "Which planet is the most completely mapped?" Most people will say Earth, but Earth is 70% water and the oceans are charted, not mapped.


What kind of pulses did Venus' topography has been mapped from space and earth?

Venus' topography has been mapped using radar pulses from space to penetrate its thick cloud cover, revealing surface features like mountains and craters. On Earth, topography mapping has been done using various methods such as LiDAR, satellite imagery, and ground-based surveys to create detailed 3D models of the terrain.


What spacecraft that mapped Venus with radar?

The spacecraft that mapped Venus with radar is the Magellan orbiter. Launched in 1989, Magellan used synthetic aperture radar to create detailed maps of the planet's surface, penetrating its thick cloud cover. The mission provided valuable insights into Venus's geology and topography, revealing features such as mountains, valleys, and volcanoes. Magellan operated until 1994, significantly enhancing our understanding of Earth's "sister planet."


Methods used to investigate the planets?

Many methods and tools are used to investigate planets both from Earth and in space. Telescopes, physics, fly-by missions and Mars and Moon landing equipment are all very useful in studying things outside Earth.


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.


Why can surface of Venus not be seen?

The surface of Venus can not be seen in optical light due to an immensely think atmosphere. However, it can be seen by radar and because of this most of the planet has been mapped.


When are the radar operators responsible for your terrain clearance?

Radar operators are responsible for terrain clearance primarily during the initial phases of flight, such as takeoff and climb, as well as during approaches and landings. They monitor the aircraft's altitude relative to terrain and provide guidance to ensure safe vertical separation. Additionally, they may assist in avoiding obstacles during flight by providing timely alerts and instructions to pilots. However, ultimate responsibility for terrain clearance lies with the flight crew.