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Solids have the highest density in comparison to liquids and gases. This is because the volume of a solid is smaller in comparison to the volume of a liquid or a gas. The particles that form a solid are very compact. Therefore, with these particles very close together, they reduce the volume of the solid. In some cases, you will find that a solid and a liquid of the same substance such as water, for example, will differ in volumes because the liquid has a larger volume.


A liquid has a higher volume in comparison to a solid, but a lower volume when compared to a gas. The same liquid will have a lower density if compared to a solid, but it will have a higher density when compared with to gas. These deductions are compounded by the fact that, liquids expand and even move when affected by heat. This is an aspect that most solids lack unless the solid has been heated to the point of changing its state. We can also note that liquids in relation to volume, expand less in comparison to gases when there is an increase in temperature. Head over to for more details. 


Gases have the highest volume in comparison to liquids and gases. Gaseous particles are not compact when compared to liquids and solids. However, gases score a low figure in density when compared to liquids and gases. When gases are subjected to high pressure, they will grow lower in volume, but higher in density. However, when gases are subjected to high temperatures, their volumes increase but their density decreases. It is a very key thing to know, that gases are lower in density because their particles are not compact.


Once you figure out which substance has a higher density compared to the others, and which one has the highest volume in comparison to the others, then you can boldly make your deductions and calculations accurately. Except for a few substances that behave differently compared to others, this formula cuts across all forms of matter. This makes it easier to make consistent calculations when observing the behavior of gases, solids and liquids under different pressures or temperatures.


It is important to know that density varies, with different solids, because some solids have more compact particles compared to others. The same case is true for liquids and gases. However, when appropriate pressure is applied, a solid can be forced to bear the same density and volume as another volume, due to compressing its particles. It is an exciting process of balancing what levels of pressure and temperatures to use in order to achieve the most accurate outcome for such endeavors. Visit to get started. 


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