answersLogoWhite

0

it is gamma radiation
alpha and gamma are two
Size and charge mostly.

An alpha particle is basically the size of four protons and has 2 units of positive charge, so it doesn't get very far. A beta particle is just an electron, which has 1/2000 the mass of one proton, and one unit of negative charge, so it interacts less and gets a little further. A gamma ray has no mass and no charge and must resort to electromagnetic field effects to happen to it in order for it to interact. Therefore it can travel pretty far compared to the other two.

User Avatar

Wiki User

12y ago

What else can I help you with?

Continue Learning about Natural Sciences

Which type of radiation is most penetrating in solid substances?

Gamma radiation is the most penetrating type of radiation in solid substances due to its highly energetic nature and ability to penetrate through thick materials. Its high penetration power makes it difficult to shield against, requiring dense materials such as lead or concrete for effective protection.


Why do alpha beta and gramma have different penetrating abilities?

Alpha, beta, and gamma radiation have different penetrating abilities due to their difference in energy and interaction with matter. Alpha particles are the least penetrating, as they are heavier and lose energy quickly when passing through material. Beta particles have higher energy and can penetrate more deeply than alpha particles. Gamma rays are the most penetrating as they are electromagnetic radiation with high energy and can pass through most materials.


What particle has the highest penetrating ability?

Gamma rays have the highest penetrating ability among all particles. They are a form of electromagnetic radiation and can travel long distances through materials, making them difficult to shield against.


The most penetrating type of radiation is the a Gamma ray b Nuclide c Beta particle d Alpha particle?

Generally gamma radiation is the most penetrating one, but it is also least ionising. I don't quite understand what you mean by saying "Nuclide" radiation. Nuclides are generally isotopes, not radiation. Nuclides (isotopes) don't have to be radioactive, but the isotopes that lie outside the curve of stability (function of the number of proton and the number of neutrons in a particular nucleus) are unstable and do decay (are radioactive)


What type of radiation from the nucleus is more penetrating than either alpha or beta particles?

Gamma radiation

Related Questions

What stops gamma radiation from penetrating through materials?

Gamma radiation is stopped by dense materials such as lead or concrete, which absorb and block the radiation, preventing it from penetrating through.


What form of ionizing radiation is the most penetrating?

Gamma radiation is the most penetrating form of ionizing radiation. It can pass through most materials and requires dense materials, such as lead or concrete, to effectively shield against it.


Which is the most penetrating and dangerous radiation?

Gamma radiation is the most penetrating and dangerous form of radiation. It can travel long distances through air and penetrate materials easily, which makes it more hazardous to human health.


What form of ionizing radiation most penetrating?

Gamma radiation is the most penetrating form of ionizing radiation due to its high energy and no mass or charge, allowing it to travel through most materials. It requires thick layers of dense materials, such as lead or concrete, to shield against it effectively.


Why type of radiation has the highest penetrating ability?

Gamma radiation has the highest penetrating ability among alpha, beta, and gamma radiation. This is because gamma rays have the shortest wavelength and highest frequency, allowing them to penetrate most materials easily.


Which type of radiation is most penetrating in solid substances?

Gamma radiation is the most penetrating type of radiation in solid substances due to its highly energetic nature and ability to penetrate through thick materials. Its high penetration power makes it difficult to shield against, requiring dense materials such as lead or concrete for effective protection.


What is the correct decreasing penetrating power of alphabetagamma radiationbs?

The correct order for decreasing penetrating power of radiation is: gamma > beta > alpha. Gamma radiation is highly penetrating and can pass through most materials, beta radiation can penetrate thin materials, and alpha radiation can be stopped by a piece of paper or even the outer layers of skin.


What form of radiation is the most penatrating?

Gamma rays are by far the most penetrating of the three types of radiation.


Which types of radiation has the greatest penetrating ability?

Gamma rays have the greatest penetrating ability among all types of radiation. They are highly energetic electromagnetic waves that can pass through most materials, including thick layers of concrete and lead.


Which has highest penetrating power?

Gamma rays have the highest penetrating power among alpha, beta, and gamma radiation. They can penetrate the body and various materials easily due to their high energy level.


Why do alpha beta and gramma have different penetrating abilities?

Alpha, beta, and gamma radiation have different penetrating abilities due to their difference in energy and interaction with matter. Alpha particles are the least penetrating, as they are heavier and lose energy quickly when passing through material. Beta particles have higher energy and can penetrate more deeply than alpha particles. Gamma rays are the most penetrating as they are electromagnetic radiation with high energy and can pass through most materials.


Which have the highest penetrating ability alpha beta or gamma?

Gamma rays have the highest penetrating ability among alpha, beta, and gamma radiation. They can penetrate most materials easily and require dense materials such as lead or concrete to shield against them effectively. Alpha and beta particles have lower penetrating abilities and can be stopped by materials such as paper or even the outer layers of skin.