The ability of gases to occupy smaller spaces under higher pressure is due to the compressibility of gas particles. When pressure is applied, the gas particles are forced closer together, reducing the volume they occupy. This behavior is described by Boyle's Law, which states that the volume of a gas is inversely proportional to its pressure, assuming constant temperature. As a result, increasing pressure leads to a decrease in volume, allowing gases to fit into smaller spaces.
Beta particles have a higher penetrating ability compared to alpha particles because they are smaller and have higher energy levels. This allows beta particles to travel further and penetrate deeper into materials, making them harder to stop than alpha particles. Additionally, beta particles can travel faster than alpha particles, increasing their ability to penetrate materials.
Compression is that ability to force a gas to fit into a smaller space. It has many benefits such as transportation when contained. When uncompressed, it can perform mechanical actions on ships and vehicles.
Gas particles can be compressed into smaller spaces because they have a lot of empty space between them. When gas particles are compressed, their volume decreases due to the reduction in this empty space, resulting in an increase in pressure.
True. When a river slows down, it loses its ability to carry large sediment particles, so it deposits them first. Smaller particles settle later as the energy of the river decreases further.
Igneous rock granite can undergo weathering and erosion over time, breaking down into smaller particles. These particles can then be transported and deposited, leading to the formation of sedimentary rocks such as sandstone or shale. Additionally, if granite is subjected to extreme heat and pressure, it can undergo metamorphism and transform into a new type of rock called gneiss.
Pressure actually is the force that the particles exercise over a particular level.When we are going up We'll find smaller quantity of particles above the level in which We are.So, if there is smaller quantity of particles above this level, there is also going to be a smaller force exercised on It.
Yes, particles in a gas can be compressed into a smaller volume by reducing the space between them. This will increase the pressure of the gas as the particles are forced closer together.
You can increase the volume of a gas by increasing the pressure applied to it. By compressing the gas into a smaller space, the gas particles will occupy a larger volume due to the increased pressure. This does not change the number or type of particles present in the gas.
this is bcos,they get constantly subjected to friction,pressure,temperature which has drastic effect on their size and shape and after a long period of time their properties get changed.
It is called compressibility. The compressibility of gases can be explained by the kinetic particle theory: due to the large amount of space between the gas particles and the weak attraction forces between them, gases can easily be compressed (the particles are brought closer to each other, thus reducing the volume of the gas).
Radioactivity.
the reason is because the molecules casing the pressure inhibit the molecules of the material.
the reason is because the molecules casing the pressure inhibit the molecules of the material.
Beta particles have a higher penetrating ability compared to alpha particles because they are smaller and have higher energy levels. This allows beta particles to travel further and penetrate deeper into materials, making them harder to stop than alpha particles. Additionally, beta particles can travel faster than alpha particles, increasing their ability to penetrate materials.
Compression is that ability to force a gas to fit into a smaller space. It has many benefits such as transportation when contained. When uncompressed, it can perform mechanical actions on ships and vehicles.
No not all the time. Usually the deeper you go the smaller the particles, due to the pressure pressurising the particles together thus making them smaller. However it depends how deep and what type of soil it is and what is consists of. Did this help?
Gas particles can be compressed into smaller spaces because they have a lot of empty space between them. When gas particles are compressed, their volume decreases due to the reduction in this empty space, resulting in an increase in pressure.