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Future of Earth

space Maturity 7-9

Our Earth will change a lot.

Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
The Sun will get much bigger. It will get very hot. This will make the oceans go away. The Earth will be very hot too.
Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
Soon, the Sun will swallow the Earth. Can you imagine a giant Sun?
Sun red giant.svg
Sun red giant.svg

57 words

Our Earth will change over a long time.

Solar evolution (English).svg
Solar evolution (English).svg
The Sun will get much brighter. This makes the Earth get very hot.
Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
The heat will make the oceans dry up. This happens because the water turns into steam. Without water, plants will die. Without plants, animals will have no food.
Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
Finally, the big Sun will swallow the Earth. It is amazing to think about our future.

78 words

Earth will change in many ways over a very long time.

Solar evolution (English).svg
Solar evolution (English).svg
The Sun is getting brighter. This will make Earth much hotter. In about 600 million years, carbon dioxide will drop. This gas is needed for plants to make food. Without it, most plants may die. If plants die, animals will have no food.
Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
In one billion years, the Sun will be 10% brighter. The oceans might turn into steam and dry up. This is called a moist greenhouse.
Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
In two to three billion years, Earth's magnetic field may stop. This field is a shield called a magnetosphere. Without it, the air could leak away. In four billion years, Earth may become like Venus. It will be so hot that the surface melts. All life will be gone by then. Finally, the Sun will grow very large. This is called a red giant phase. The Sun may swallow the Earth in 7.5 billion years.
Pangaea continents.svg
Pangaea continents.svg
Other things can change Earth too. Moving plates may make a new supercontinent. Space rocks like asteroids can also hit our planet.

191 words

Our planet is constantly changing in many ways. Some changes happen very slowly over millions of years. Other changes might happen much faster due to space events. Scientists study these changes to guess what Earth will look like in the future.

Solar evolution (English).svg
Solar evolution (English).svg
We look at the Sun, the air, and the ground. We also look at how living things interact with the world. Understanding these paths helps us see the long story of our home.

Many things will happen in a specific order as time goes on. First, the Sun will get steadily brighter. This extra light will change how the air and ground work together. This process will lower the amount of carbon dioxide in the air.

Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
Around 600 million years from now, there may not be enough carbon dioxide for most plants. Without plants, most animals will not have food to eat. In one billion years, the Sun will be 10% brighter. This could cause the oceans to turn into steam in a moist greenhouse.
Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
Later, the planet's magnetic shield may stop working. This could let the air leak away into space.

Humans are also changing the Earth right now. This period is called the Holocene extinction.

1979-253-Fonderie-Horne.jpg
1979-253-Fonderie-Horne.jpg
Human actions like changing habitats and climate change are causing many species to disappear. Since 1950, there has been a large loss of life called a biotic crisis. Some experts say 10% of species were lost by 2007. This change might last for five million years. If humans disappear, the planet will slowly return to a slower pace of natural change.
Anti-nuclear weapons protest, UK 1980.JPG
Anti-nuclear weapons protest, UK 1980.JPG

Space can also bring big risks to our world. Asteroids or comets could hit the Earth and cause huge disasters. A big hit could create a cloud of dust that blocks the sun. This would make the land much colder for many months. Another risk is a supernova, which is a huge explosion of a star. If a supernova happens near us, it could damage the ozone layer. This layer protects us from harmful rays from the Sun. Scientists think there might be 20 such explosions near Earth in the next two billion years.

Earth's surface and its place in space also move.

Pangaea continents.svg
Pangaea continents.svg
The plates under the ground move and might make a new supercontinent in 250 to 350 million years. The way the Earth tilts might even change wildly in the next 1.5 to 4.5 billion years. Even the Sun's own life has an end. In about 7.5 billion years, the Sun will enter a red giant phase. It will grow so large that it may swallow the Earth. By then, the surface will be so hot that it melts.
Red Giant Earth warm.jpg
Red Giant Earth warm.jpg

473 words

Scientists use current data to predict the biological and geological future of Earth. They look at several long-term influences to see how our planet might change. These influences include the chemistry of the surface and the cooling of the interior. They also study the Sun's increasing luminosity, which is its brightness. Gravitational interactions with other objects in the Solar System play a role too.

Solar evolution (English).svg
Solar evolution (English).svg
Understanding these processes helps us see how Earth will evolve over billions of years.

One major driver of change is the steady increase in solar luminosity. As the Sun gets brighter, more solar radiation reaches Earth. This extra energy increases the weathering of silicate minerals on the surface. This process affects the carbonate–silicate cycle, which regulates our atmosphere. Consequently, the level of carbon dioxide in the atmosphere will decrease. In about 600 million years, carbon dioxide levels will fall too low for C3 carbon fixation. This is the method of photosynthesis used by most trees.

Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
While some plants use C4 carbon fixation to survive at ten parts per million, most plants will eventually die. This loss of plants would likely cause the demise of almost all animal life.

As time continues, the planet faces even more extreme shifts. In about one billion years, solar luminosity will be 10% higher. This will cause the atmosphere to become a "moist greenhouse." This state leads to the runaway evaporation of the oceans. Such an event would likely end plate tectonics and the entire carbon cycle.

Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
Between 2 and 3 billion years from now, the planet's magnetic dynamo may cease. This is the process that creates our magnetic field. Without it, the magnetosphere may decay, causing a loss of volatiles from the outer atmosphere. Eventually, in about 4 billion years, a runaway greenhouse effect will make Earth more extreme than Venus. The surface will become hot enough to melt.

Geological processes also shape the planet's surface through plate tectonics. As part of the ongoing supercontinent cycle, plates will move and collide. This will likely create a new supercontinent in 250 to 350 million years.

Pangaea continents.svg
Pangaea continents.svg
Additionally, the Earth's axial tilt may undergo chaotic variations. This could involve changes of up to 90° within the next 1.5 to 4.5 billion years. While the orbit remains generally stable, these shifts can influence the planetary climate significantly. Predictable cycles, like Milankovitch cycles, also drive periodic glacial periods. These are caused by variations in eccentricity, axial tilt, and precession.

Human activity is currently a major influence on the biosphere. This era is known as the Holocene extinction. Humans have modified more than one-third of the land surface. We also use about 20% of global primary production. Since the 1950s, a biotic crisis has caused a large loss of species. By 2007, it was estimated that 10% of total species were lost.

1979-253-Fonderie-Horne.jpg
1979-253-Fonderie-Horne.jpg
At current rates, 30% of species may face extinction in the next century. This event could last for five million years and change how life evolves.

Celestial events pose additional risks to life on Earth. Impacts from comets or asteroids can cause mass extinctions. A major impact from an object 10 kilometers or larger can create a global disaster. Such an event creates a cloud of dust that blocks sunlight. This can lower land temperatures by 10°C within a week and halt photosynthesis for months. There is also the risk of a near-Earth supernova. A supernova is a massive stellar explosion. An explosion within 32 light-years could deplete the ozone layer for centuries. This would increase UV-B radiation, which harms the phytoplankton at the base of the food chain.

Finally, the life of the Sun determines the ultimate fate of Earth. In about 7.5 billion years, the Sun will enter its red giant phase. During this stage, the star expands significantly. The Sun's expansion may cause it to absorb the Earth entirely. By this time, all life on Earth will have long been extinct. The planet's journey is one of constant, massive transformation driven by both internal and external forces.

690 words
🖼️ Images & Media (14)
File:Red Giant Earth warm.jpg
Red Giant Earth warm.jpg
File:1979-253-Fonderie-Horne.jpg
1979-253-Fonderie-Horne.jpg
File:Anti-nuclear weapons protest, UK 1980.JPG
Anti-nuclear weapons protest, UK 1980.JPG
File:Barringer Crater aerial photo by USGS.jpg
Barringer Crater aerial photo by USGS.jpg
File:IceAgeEarth.jpg
IceAgeEarth.jpg
File:Tidal braking.svg
Tidal braking.svg
File:Pangaea continents.svg
Pangaea continents.svg
File:PangeaUltimaRoughEstimation.png
PangeaUltimaRoughEstimation.png
File:Dynamo Theory - Outer core convection and magnetic field generation.svg
Dynamo Theory - Outer core convection and...
File:Solar evolution (English).svg
Solar evolution (English).svg
File:Atacama Desert between Antofagasta and Taltal.jpg
Atacama Desert between Antofagasta and Taltal.jpg
File:Venuspioneeruv.jpg
Venuspioneeruv.jpg

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