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Sagot :
Answer:
Density refers to the amount of matter in the rocks
Explanation:
The term "density" refers to the amount of mass per unit of volume.
An object's average density is equal to its whole mass divided by its total volume.
An object constructed of a relatively dense material (such as iron) will have less volume than one made of a less dense substance of comparable mass (such as water).
Density is defined as mass divided by volume
where stands for density, for mass, and for volume.
Unit for mass is ,Unit for Volume is ,So the unit for density is
Temperature and pressure affect the density of a substance. For solids and liquids, this variance is often minimal, but for gases, it is significantly bigger.
When you apply more pressure on an object, it shrinks in volume and so becomes denser. With a few exceptions, increasing the temperature of a substance decreases its density by expanding its volume.
Due to the decrease in density of the heated fluid, which causes it to rise relative to denser unheated material, heating the bottom of a fluid leads in convection of heat from the bottom to the top in most materials.
Explanation:
Density refers to the amount of matter in the rocks
Explanation:
The term "density" refers to the amount of mass per unit of volume.
An object's average density is equal to its whole mass divided by its total volume.
An object constructed of a relatively dense material (such as iron) will have less volume than one made of a less dense substance of comparable mass (such as water).
Density is defined as mass divided by volume
where stands for density, for mass, and for volume.
Unit for mass is ,Unit for Volume is ,So the unit for density is
Temperature and pressure affect the density of a substance. For solids and liquids, this variance is often minimal, but for gases, it is significantly bigger.
When you apply more pressure on an object, it shrinks in volume and so becomes denser. With a few exceptions, increasing the temperature of a substance decreases its density by expanding its volume.
Due to the decrease in density of the heated fluid, which causes it to rise relative to denser unheated material, heating the bottom of a fluid leads in convection of heat from the bottom to the top in most materials.
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