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Scientists create new form of water that could solve Einstein’s vampire mystery

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Scientists create new form of water that could solve Einstein’s vampire mystery

This water can absorb heat from the air and freeze faster than expected by heat transfer theory, solving one of science’s strangest mysteries, Einstein’s vampire.

Water can be found in three different states: solid, liquid and gaseous. But what if there is another form of water that doesn’t obey the usual laws of physics? Such water was recently created in a lab and could help explain one of science’s strangest mysteries, Einstein’s vampire.

Einstein’s vampire is a phenomenon in which a drop of water on a cold surface begins to suck heat from the surrounding air and freeze faster than expected by heat transfer theory. This is contrary to common sense and violates the second law of thermodynamics, which states that heat cannot move from a cold body to a hot one without external influence.

This phenomenon was predicted by Albert Einstein in 1924 when he developed quantum statistics for particles called bosons. However, so far no one has been able to observe the experiment in reality or give a convincing explanation of its causes.

But now a group of scientists from the US and China say they have been able to create a new form of water that can exhibit the Einstein vampire effect. They called it “vampire” or “Einstein” water.

To do this, they used a special device that allows you to control the pressure and temperature of water at the molecular level. They found that under certain conditions, water molecules can form complex structures that resemble snowflakes or stars. These structures have very low density and high resilience, so they are easily deformed under force.

Scientists suggest that this new form of water can suck heat from the surrounding air due to its elasticity. When air molecules collide with water molecules, they transfer some of their energy to them and cause them to vibrate. These vibrations cause the water structures to change their shape and release energy back in the form of heat. Thus, water constantly absorbs and gives off heat, maintaining its temperature below the ambient temperature.

This discovery could be of great importance for understanding the physics of water and its role in nature. Water is the most abundant and vital substance on Earth, but it still holds many secrets and anomalies. For example, it is not entirely clear why ice floats on the surface of water or how clouds form.

Scientists hope that their experiments will help uncover these mysteries and provide new opportunities for the development of science and technology. For example, one can imagine using “vampire” water to cool electronic devices or create new materials.



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