Tension. A+ There are a number of reasons why matter would take up a smaller amount of space.
If the matter is a gas, increased pressure or compression will result in a smaller volume.
Gases condensing to a liquid will occupy a smaller amount of space.
Temperature can also affect the volume that matter occupies. As temperature decreases, matter will generally reduce in volume and this applies to many gases, solids and liquids.
Finally, chemical reactions can result in the products having a smaller volume than the reactants although the reverse is equally true.
When the same amount of matter occupies a smaller space, its density increases. This can lead to an increase in pressure or temperature, depending on the system. In some cases, this can result in a phase change, such as from a gas to a liquid or a liquid to a solid.
Tension. A+ There are a number of reasons why matter would take up a smaller amount of space. If the matter is a gas, increased pressure or compression will result in a smaller volume. Gases condensing to a liquid will occupy a smaller amount of space. Temperature can also affect the volume that matter occupies. As temperature decreases, matter will generally reduce in volume and this applies to many gases, solids and liquids. Finally, chemical reactions can result in the products having a smaller volume than the reactants although the reverse is equally true.
Tension. A+ There are a number of reasons why matter would take up a smaller amount of space. If the matter is a gas, increased pressure or compression will result in a smaller volume. Gases condensing to a liquid will occupy a smaller amount of space. Temperature can also affect the volume that matter occupies. As temperature decreases, matter will generally reduce in volume and this applies to many gases, solids and liquids. Finally, chemical reactions can result in the products having a smaller volume than the reactants although the reverse is equally true.
shearing
shearing
In a chemical change, the amount of matter in the new substances remains constant. This is known as the law of conservation of mass, which states that matter cannot be created or destroyed in a chemical reaction, only rearranged.
Yes, according to Einstein's equation E=mc^2, matter can be converted into energy. This transformation occurs in processes like nuclear reactions, where a small amount of matter is converted into a large amount of energy.
Adaptive radiation occurs when a species occupies a habitat with unoccupied niches
actually it occurs because of the law of conservation of matter= matter can't be created or destroyed it is just being changed
A nuclear fission reaction occurs in an atomic bomb. This is when the nucleus of an atom is split into two or more smaller nuclei, releasing a large amount of energy in the process.
When matter is packed into the same amount of space as its density, it is referred to as being at its maximum density or at its highest level of compression. This typically occurs under high pressure or in specific conditions where the matter is tightly packed together.
The principle of matter conversion or mass, shows that the item used will have the same mass in the liquid and solid state considering than nothing else is allowed into or out of the environment where the change in matter occurs.