Beta is nothing but electrons. Its mass is very meagre. Its speed is higher. With all these beta can easily penetrate through the paper.
Where as the alpha is helium nucleus. Its mass is very high and so its speed is very low. Because of these, alpha cannot pass through the paper.
The residue is left behind on the filter paper because the filter paper acts as a barrier that traps solid particles while allowing liquids to pass through. As the liquid passes through the filter paper, solid particles that are too large to pass through get trapped, resulting in the residue accumulating on the filter paper.
filtrate
Colloids cannot pass through membranes because their particles are too large to fit through the membrane pores. However, they can pass through filter paper because filter paper has larger pores that allow colloidal particles to pass through while trapping larger particles.
A solution passes through a filter paper without being separated, as it contains particles that are small enough to pass through the pores of the filter paper. Suspensions, on the other hand, contain larger particles that get trapped by the filter paper, leading to separation from the liquid.
The water actually passes through the filter paper and the cornstarch. However, the cornstarch does not pass through the filter because the molecules are to large.
like a chicken
Alpha. Beta particles are blocked by a few mm of aluminum and gamma by a few cm of lead. Alpha. Beta particles are blocked by a few mm of aluminum and gamma by a few cm of lead.
Alpha particles can be stopped by a piece of paper, beta particles can penetrate through skin but can be stopped by a sheet of aluminum, while gamma rays are the most penetrating and can pass through most materials, requiring dense materials like lead or concrete to be stopped.
Radioactive materials such as uranium, radium, and plutonium give off alpha particles during radioactive decay. These particles consist of two protons and two neutrons and have low penetration power, making them easily blocked by materials like paper or skin.
There are different kinds of radiation and different kinds of paper. For the electromagnetic radiation, every material has "transparency windows". Sunlight is the electromagnetic radiation, too. As you can tell, some paper is transparent to it and some not. If we consider the particles radiation, then the particles nature and energy play major roles. Some heavy particles with low energy can be scattered by even relatively light obstacles. Whereas such particles as neutrino easily go through the entire Earth. alpha particles can be stopped by thin objects such as paper. beta particles can be stopped by thicker objects suck as plastic or aluminum foil gamma radiation can be stopped by several feet thick of concrete and/or lead
Yes
The small pores in the filter paper act as barriers that trap the mud particles, preventing them from flowing through. The size of the pores is smaller than the mud particles, so they cannot pass through. This separation process is known as filtration.
The residue is left behind on the filter paper because the filter paper acts as a barrier that traps solid particles while allowing liquids to pass through. As the liquid passes through the filter paper, solid particles that are too large to pass through get trapped, resulting in the residue accumulating on the filter paper.
filtrate
Colloids cannot pass through membranes because their particles are too large to fit through the membrane pores. However, they can pass through filter paper because filter paper has larger pores that allow colloidal particles to pass through while trapping larger particles.
A solution passes through a filter paper without being separated, as it contains particles that are small enough to pass through the pores of the filter paper. Suspensions, on the other hand, contain larger particles that get trapped by the filter paper, leading to separation from the liquid.
Alpha particles are positively charged particles consisting of two protons and two neutrons. They have low penetration power and can be stopped by a piece of paper or skin. Alpha particles are emitted during radioactive decay and can cause damage to living tissues if ingested or inhaled.