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Geology of Venus

space Maturity 7-9

Venus is a hot planet.

VenusLanderTopo.png
VenusLanderTopo.png
It is a lot like Earth. Most of it is made of rock. Hot lava comes out of the ground. This makes the ground look new. Do you want to visit Venus?
Hemispheric View of Venus.tif
Hemispheric View of Venus.tif

42 words

Venus is a rocky planet.

Hemispheric View of Venus.tif
Hemispheric View of Venus.tif
It is very much like Earth. Most of the ground is bare rock. Much of this rock comes from volcanoes.
PIA00084 Eistla region pancake volcanoes.jpg
PIA00084 Eistla region pancake volcanoes.jpg
Because of this, the surface looks new. Small space rocks cannot hit the ground easily. This is because the thick air burns them up. The planet is also very dry. It has almost no water.
VenusLanderTopo.png
VenusLanderTopo.png
Venus is a very busy and changing place.

78 words

Venus is a rocky planet very close to Earth.

Hemispheric View of Venus.tif
Hemispheric View of Venus.tif
Most of its surface is made of volcanic rock. This makes the ground look very new. Many parts of the planet are flat plains. Other parts are high lands called highlands.
Aphrodite terra topo.jpg
Aphrodite terra topo.jpg

Volcanoes are the main way Venus changes. Some look like domes that look like pancakes.

PIA00084 Eistla region pancake volcanoes.jpg
PIA00084 Eistla region pancake volcanoes.jpg
Others look like webs. We call these arachnoids. There are also many faults. These are cracks in the ground.

Venus has very few impact craters. These are holes made by space rocks. The thick air burns up small rocks first. Large holes are also rare. This might be because lava covered them up. Scientists think a big event happened long ago. This event may have covered the planet in lava. This would erase old marks.

VenusLanderTopo.png
VenusLanderTopo.png

The planet is very dry. It has almost no water. It is hard to study the surface. The thick air and heat can break tools. We use radar to see through the clouds.

176 words

Venus is a rocky world very close to Earth.

Hemispheric View of Venus.tif
Hemispheric View of Venus.tif
It is similar to our home in size and weight. However, the surface is quite different. About 75% of the ground is made of bare volcanic rock. Most of the planet is relatively flat. It is divided into lowlands, plains, and highlands. The highlands cover about 10% of the surface. These high areas include places like Aphrodite Terra and Ishtar Terra.
Aphrodite terra topo.jpg
Aphrodite terra topo.jpg
Scientists use radar to see the ground. This is because thick clouds always hide the surface from view.

Volcanoes are the main way the surface changes. These volcanoes are shorter than those on Earth or Mars. Some shapes are unique to Venus. You might see pancake domes that look like flat disks.

PIA00084 Eistla region pancake volcanoes.jpg
PIA00084 Eistla region pancake volcanoes.jpg
There are also arachnoids that look like giant spider webs.
VenusianArachnoid.png
VenusianArachnoid.png
Other features include deformation belts made of folds and faults. These cracks in the ground may be caused by movement deep inside the planet. The surface is also very dry. There is only a tiny trace of water vapor in the air. Scientists think Venus might have had liquid water a long time ago.

It is hard to study Venus because of its extreme conditions. The atmosphere is very thick and heavy. It has a pressure of over 90 bar. The heat is also very high. These things can quickly break tools sent to the surface. Most of what we know comes from looking down from space. We use orbital radar to map the hills and valleys.

VenusLanderTopo.png
VenusLanderTopo.png
Some spacecraft have landed to take close-up pictures. The Soviet Union sent ten successful landers to the surface. These probes, called Venera, helped us see the rocks and dust. They found that some rocks are porous and easy to crush.

Venus has very few impact craters from space rocks. This happens for two main reasons. First, the thick atmosphere burns up small rocks before they hit. Second, large craters are rare because of volcanic activity.

PIA00103 Venus - 3-D Perspective View of Lavinia Planitia.jpg
PIA00103 Venus - 3-D Perspective View of Lavinia Planitia.jpg
Many scientists believe a huge event happened long ago. This event might have covered the whole planet in lava. This would have erased old craters and made the surface look young. This process might happen in cycles. The inside of the planet heats up until lava covers everything. Then the planet cools down and the cycle starts again.

Learning about Venus helps us understand how planets work. The planet's gravity and crust strength are similar to Earth's. This is why the highest mountains are a similar height to Earth's mountains. For example, Maxwell Montes is about 11 kilometers high.

InteriorOfVenus.svg
InteriorOfVenus.svg
This is similar to the height of the Himalayas. Even though Venus is very different, it shares many rules with Earth. Recent studies from October 2023 suggest Venus might have had plate tectonics once. This means it might have been a much more livable place in the ancient past.

496 words

The geology of Venus is the study of the planet's surface, its crust, and its interior.

Hemispheric View of Venus.tif
Hemispheric View of Venus.tif
Venus is the closest planet to Earth in our solar system. It is very similar to Earth in terms of its mass, size, and density. However, Venus lacks a magnetic field and recognizable plate tectonics. Most of the surface is made of bare rock. This is mostly volcanic bedrock. About 75% of the surface is composed of this rock. Some areas have thin, patchy layers of regolith, which is a layer of loose dust and broken rock. This surface is very different from the surfaces of Earth, the Moon, or Mars.

Volcanism is the primary driver of geological change on Venus. The planet features various volcanic landforms. Some of these appear to be unique to Venus. For example, there are pancake domes, which are flat, disk-shaped volcanic features.

PIA00084 Eistla region pancake volcanoes.jpg
PIA00084 Eistla region pancake volcanoes.jpg
There are also arachnoids, which are large features that resemble a spider's web.
VenusianArachnoid.png
VenusianArachnoid.png
Venus also has shield and composite volcanoes. These are similar to those found on Earth. However, the volcanoes on Venus are significantly shorter. Because Venus has a similar composition to Earth, scientists believe volcanism may still be happening today.

The topography of Venus is relatively flat. It is divided into three main units: lowlands, plains, and highlands. The lowlands generally lie below zero elevation. The deposition plains have an average elevation between 0 and 2 kilometers. These plains cover more than half of the planet. The highlands cover about 10% of the surface.

Aphrodite terra topo.jpg
Aphrodite terra topo.jpg
Major highland provinces include Aphrodite Terra, Ishtar Terra, and Lada Terra. Other regions like Beta Regio and Themis Regio are also part of the highlands. Some highland areas reflect radar signals very strongly. This might be due to different minerals, such as pyrite, being stable at higher elevations. Higher elevations have lower temperatures and pressures. This allows for distinct mineralogy to occur.

Venusian mountains are quite impressive despite the generally flat landscape. The most important elevations are found in mountain chains around Lakshmi Planum. Maxwell Montes is the highest at 11 kilometers.

VenusLanderTopo.png
VenusLanderTopo.png
Akna Montes and Freya Montes are also significant, reaching 7 kilometers. The total vertical distance from the lowest point to the highest point is about 11 kilometers. This is similar to the distance between the ocean floor and the Himalayas on Earth. This similarity exists because the gravity and the strength of the lithosphere are similar on both planets. Some areas, like the southwest side of Maxwell Montes, show steep inclines of 45 degrees.

Studying the surface is very difficult due to extreme conditions. The atmosphere is incredibly thick, with a pressure of over 90 bar. Temperatures are also extremely high. These factors limit how long a landing probe can survive. Because permanent clouds hide the surface in visible light, scientists use orbital radar.

Venus dome 3D.jpg
Venus dome 3D.jpg
The Soviet Union successfully landed ten probes on the surface. These were called Venera probes. They returned images of rock and regolith. The rocks were found to be porous and easily crushed. Some rocks resembled tholeiitic basalts, while others resembled alkaline basalts. These findings help us understand the chemical makeup of the Venusian crust.

Venus has very few impact craters compared to the Moon or Mercury. This is partly because the thick atmosphere burns up small meteorites. There are almost no craters smaller than 5 kilometers in diameter.

PIA00103 Venus - 3-D Perspective View of Lavinia Planitia.jpg
PIA00103 Venus - 3-D Perspective View of Lavinia Planitia.jpg
The lack of large craters suggests the surface is geologically young. Scientists believe a global resurfacing event may have occurred. This event likely happened between 300 and 500 million years ago. One theory is that the planet's interior heats up over time. This heat might eventually force mantle material to the surface in a massive volcanic event. This would erase old craters and cover the planet in new lava.

Understanding Venus provides deep connections to planetary science. It helps us study how planets evolve without plate tectonics. Recent studies from October 2023 suggest Venus may have had plate tectonics in the distant past. If this is true, Venus might have once had a more habitable environment.

InteriorOfVenus.svg
InteriorOfVenus.svg
This could mean the planet was once capable of supporting life. The study of Venusian geology helps scientists compare the histories of Earth and its neighbors. It reveals how heat, gravity, and atmosphere shape a world over billions of years.

737 words
🖼️ Images & Media (13)
File:VenusDonMiguel.gif
VenusDonMiguel.gif
Hemispheric View of Venus.tif
File:VenusLanderTopo.png
VenusLanderTopo.png
File:Aphrodite terra topo.jpg
Aphrodite terra topo.jpg
File:PIA00103 Venus - 3-D Perspective View of Lavinia Planitia.jpg
PIA00103 Venus - 3-D Perspective View of...
File:Venus Danilova Aglaonice Saskia.png
Venus Danilova Aglaonice Saskia.png
File:PIA00084 Eistla region pancake volcanoes.jpg
PIA00084 Eistla region pancake volcanoes.jpg
File:Venus dome 3D.jpg
Venus dome 3D.jpg
File:VenusianArachnoid.png
VenusianArachnoid.png
File:InteriorOfVenus.svg
InteriorOfVenus.svg
File:VenusLava.jpg
VenusLava.jpg
File:Mgn f45n019 1.gif
Mgn f45n019 1.gif

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