Scientists have discovered that water on Earth is older than the sun itself – Enseñame de Ciencia

An amazing discovery was reported by scientists, because after making many experimental observations and studies, they concluded that the water on Earth is much longer than the sun, even before the formation of our solar system.

According to the observations of the radio observatory Atacama large millimeter array (ALMA)in the Atacama Desert in Chile, the water on our planet (at least half of the total percentage) is older than the age of the Sun, and researchers theorize that it originated in space.

In a publication made in space place (NASA Kids Platform), water formed in a place in the universe where the sun’s influence did not exist, a region known as “the place where the constant flow of solar matter and its magnetic field cease to influence its surroundings.”

How did you come to this conclusion?

Scientists from the Atacama Large Millimeter Array found that terrestrial water was formed in a distant place, specifically in the solar formation cloud located in V833 Orionis, a star in its early stages of life, which is located in the constellation Orion, the distance between this site and our planet is about 1300 light years. It is considered as “the missing link in the formation of the Earth”.

In the vicinity of this relatively young star is a vast ring of cosmic dust and gas, astronomers say, much like the Oort cloud. This form of “shell” is what blankets our solar system and sometimes matter turns into asteroids, comets, planets and even stars. In this space it was possible to trace water in a gaseous state (due to the high temperatures in interstellar space).

In this way, it was possible to trace the true origin of water in our solar system to the formation of our star, explains astronomer John J. Tobin, principal investigator of the article and member of the Radio Astronomy Observatory.

More evidence supporting this finding

In a publication issued in the important Nature magazineit was found that the composition of gaseous water in V883 (the solar formation cloud) is very similar to that in our solar system annotations, confirming that terrestrial water was formed over billions of years and older than the sun.

Perhaps this is the most important legacy that living beings have received from the universe.

This discovery is incredible and may explain why water is found on other planets and natural satellites such as Europa.

If you want to know some of the chemical properties of water, here we are sharing some that you are sure not to know:

Chemical properties of water

Water is an essential chemical for life and for all living things, and its chemical properties are very important to its ability to sustain and sustain life. Some of the most important chemical properties of water are:

polarity: Water is a polar molecule, which means it has a partial positive charge at one end and a partial negative charge at the other. This is because the oxygen atom in a water molecule is more electronegative than the hydrogen atoms, which pulls electrons toward the oxygen and creates charge separation. This polarity allows water to dissolve in other polar substances and form hydrogen bonds.

High heat capacityWater has a high heat capacity, which means it takes a lot of energy to raise its temperature. This is due to hydrogen bonds between water molecules, which require energy to break. This property helps stabilize the temperature of living things and the planet in general, and acts as a buffer against sudden changes in temperature.

Solvent capacity: Water is a universal solvent, which means it can dissolve a variety of polar substances and some ions. This is due to its polarity, which allows it to interact with other polar molecules and separate them into charged ions, facilitating chemical reactions and transport of substances in living organisms.

chimical interaction: Water can also take part in chemical reactions, as it has the ability to dissociate into hydrogen (H+) and hydroxyl (OH-) ions, making it both an acid and a weak base. This makes it important for the regulation of pH in living organisms and for the conduction of many essential chemical reactions.

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