A long time ago, Earth was new. 
A long time ago, Earth was new. 
Earth was very different a long time ago. 
Early Earth was a very hot place. It was a lava planet. Big rocks hit the planet often. One huge rock hit the Earth. We call this rock Theia. Theia was the size of Mars. This hit helped make the Moon.
Space rocks like comets also hit Earth. These rocks may have brought water to the planet. Soon, the surface began to cool. Water vapor in the air turned into rain. This rain made a huge ocean. The ocean covered nearly all of the Earth.
Life began to live in these oceans. The oldest known rock is a mineral called zircon. It is from Western Australia. This tiny grain is 4.404 billion years old. Life appeared at least 3.5 billion years ago. It changed the air and the ground.
The early Earth was a very different place than it is today. Scientists often call this time Proto-Earth. This period lasted for the first one billion years of our history. It began about 4.55 billion years ago. The planet grew through a way called accretion. This means bits of dust and gas came together to form the world. 
Things happened in steps to shape the planet. First, the Earth grew from the solar nebula. Then, a huge planet called Theia hit the Earth. Theia was about the size of Mars. This collision created magma oceans. It also helped form the core of our planet. Later, comets and meteorites hit the surface. This is called a late veneer bombardment. These space rocks may have brought water to the Earth.
Scientists use many tools to learn this history. They use radiometric dating to find old ages. This helps them know when rocks formed. One team of scientists shared new ideas in June 2023. They suggested Earth might have formed in only three million years. Most people think it took 50 to 100 million years. There is still a lot of debate in the science community. 
We have found real clues from this time. The oldest known rock is a tiny mineral called zircon. It is 4.404 billion years old. You can find it in the Jack Hills of Western Australia. There are also old rocks in Greenland. These rocks are about 3.7 billion years old. Other terrains like the Isua greenstone belt are 3.8 billion years old. These numbers help us map out the past.
As the Earth cooled, the world changed again. Water vapor in the air turned into rain. This rain made a superocean that covered nearly everything. The lava planet became an ocean planet. Soon, the first life forms appeared in these waters. Life began to change the air and the ground. Today, we live on a world shaped by these ancient events. 
Early Earth, often called Proto-Earth, describes the first billion years of our planet's history. This period began approximately 4.55 billion years ago (Gya) during the formation of the young Solar System. It covers the entire Hadean eon and about one-third of the Archean eon. This era ended around 3.5 or 3.6 Gya at the start of the Paleoarchean era. Understanding this time is vital because it shows how a molten world became a home for life. 
The formation of the planet began through a process called accretion. During accretion, material from the solar nebula gathered together to build the Earth. The early Proto-Earth was a smaller body with about 0.63 Earth masses. As it grew, it began clearing its neighborhood of other objects. This stage involved a transition in the atmosphere. The primary atmosphere was mostly hydrogen and helium from the protoplanetary disk. Eventually, this changed into a secondary atmosphere. This new atmosphere was rich in nitrogen, methane, and other gases.
Violent collisions shaped the physical structure of the planet. One major event was a collision with a Mars-sized planet named Theia. Theia was a co-orbital planet that likely came from the L4 Lagrange point. This massive impact occurred about 0.032 billion years after the Solar System formed. The collision resulted in episodes of core formation. It also created massive magma oceans, which are large layers of molten rock.
After the core formed, the planet experienced a period called the "late veneer" bombardment. During this time, meteorites and comets from the Outer Solar System hit the Earth. These space objects may have delivered water and other volatile compounds. These compounds moved into the Earth's mantle, crust, and ancient atmosphere. As the surface eventually cooled toward the end of the Hadean, the planet changed. Water vapor in the atmosphere condensed and fell as rain. This created a superocean that covered nearly the entire surface. This turned the lava planet into an ocean planet by the early Archean.
Scientists use radiometric dating to study these ancient timelines. Most theories suggest planets like Earth form in 50 to 100 million years. However, there is ongoing debate in the planetary science community. In June 2023, one team of scientists reported new evidence. They suggested the Earth might have formed in only three million years. Despite these debates, we know life appeared in the oceans within the first billion years. Life began to affect the atmosphere and the surface through different organisms.
We have very few surviving pieces of crust from this era. The oldest dated rock is a mineral called zircon. This zircon is 4.404 billion years old. It was found in the Jack Hills of the Narryer Gneiss terrane in Western Australia. Other ancient terrains include the Isua greenstone belt, which dates to 3.8 Gya. This was around the time of the peak Late Heavy Bombardment. Researchers also found 3.7-billion-year-old rocks in Greenland that may contain graphite. Some scientists even look at 4.1-billion-year-old zircon grains for clues about early life.
The evolution of Earth's environment allowed life to thrive. The distance from the Sun and the planet's physical properties were key. These factors helped life emerge and develop photosynthesis. Photosynthesis is the process used by organisms to turn light into energy. This process helped life spread and evolve further. The combination of geological history and atmospheric changes created the world we recognize today. 
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