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Why Do You Feel So Light In The Water?

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why do you feel so light in the water?

 While swimming or while your body is completely submerged in water, have you ever felt how lighter you are than usual?

 It is a common occurrence that objects appear to be lighter in the water! If you're not used to this feeling, try submerging your hand in a bucket of water to get a feel for it quickly.

 To understand the reason behind this, let's touch on the main issue that needs to be explained in order to understand everything, which is “weight”!

What is meant by weight? And why become lighter in water? 

 Weight is not just a number on a scale; It is a measure of how strong the force of gravity is in attracting the mass.

 We have all seen movies of people jumping on the moon or how they kick rocks on the moon very lightly without effort or trouble as if they were on Earth!

 This clearly indicates that the value of the weight can change, even if the mass remains constant. In the previous case, the value of the gravitational constant changes, and thus the weight of the body changes.

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why do you feel so light in the water?

 However, when talking about swimming, it is hard to give an example of the moon! Feeling light while swimming occurs for different reasons than the lightness felt by astronauts on the moon!

 There is a force that acts against gravity when an object is immersed in water, which is what makes us feel lighter. The buoyancy force is this upward force acting against gravity.

 No matter how much you know about the force of buoyancy, the explanation has a close relationship to the Archimedes principle that you've probably heard about before!

1- Archimedes' principle story

 The origins of Archimedes' principle lie in the story of an ancient ruler who ordered the making of a golden crown. The goldsmith made the crown, as the king commanded, but the king was suspicious of the purity of the gold used in the crown. There were no ways to verify this purity at the time.

 So, the king commissioned a local scholar, Archimedes, to find a solution to the problem.

 Archimedes decided to consider this issue. But later, as he was entering the bathtub, he noticed that the water had spilled from the tub, and discovered that the amount of this water was proportional to the volume of the object submerged.

 The scientist discovered that he could use this fact to compare the crown to an amount of gold of the same weight. Hence, he can tell if the gold is pure or not.

2- Buoyancy and apparent weight

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buoyancy and apparent weight

 Archimedes' principle states that the upward buoyant force exerted on a partially or fully submerged body is equal to the weight of the fluid displaced by the body. Mathematically, this is the product of the density, the volume of the fluid displaced, and the value of the gravitational constant.

 But one question remains, why is there an absolute rising power? The question may seem too scientific and you don't care to know the answer, but it is the basis for solving our main dilemma in the article!

 To understand this, let's dive a little deeper into fluid statistics. The pressure in a fluid varies linearly with depth. This means that the pressure force acting on the top of the submerged object is actually less than the pressure force on the bottom of the object.

 So the forces are unbalanced, and we get a net force that works in the upward direction.

3- Apparent weight

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apparent weight

 After we've provided enough scientific theories, it's time to explain our key question here, which is why you feel so light in the water!

 When an object is submerged in a liquid, the buoyant force acts in the opposite direction to the weight. What we feel is the result of these two forces, which is a buoyant force subtracted from the actual weight, equal to the apparent weight.

 This force is the same that makes ships float on the surface of the seas and oceans!

 In short, buoyancy is the main reason for this, which works when our bodies are immersed in water, causing the body to pull upward and here we feel lighter.

 Whoever said the greatest ideas come in the shower has never lied!


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