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Q: How far can gamma radiation travel in air?
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How far does gamma travel in air?

over 20 meters


How far will gamma travel?

Gamma Rays will travel as long as they have energy


How far does alpha radiation travel?

It Travels a few centimeters in air as the have weak energy.


What form of radiation is the most penatrating?

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


Which of the three kinds of radiation is most penetrating?

Gamma ray, by far. Alfa can be blocked by as little as a piece of notebook paper, buy Gamma (from sources such as a reactor core) will pass through 6 feet for stailsteel-lined concrete and can give a leathal dose in as little as 20 minutes.


How does the speed of visible light compare with the speed of gamma ray?

Gamma radiation is the fastest, as it is light. speed of gamma radiation = c (light speed) speed of beta radiation < c ( below light speed ) speed of alpha radiation < c/10 ( far below light speed )


How far does an alpha particle travel?

This depends on their energy. An alpha particle that comes from nuclear decay is usually only able to travel a short distance, a few centimeters, through air. Alpha particles as cosmic rays, however, are much more energetic, and can penetrate quite deeply, even through many meters of solid shielding. These can penetrate the atmosphere.


Answer for radiation from gamma to radio waves?

Gamma rays are very high energetic rays whereas radio waves are very weak in strength. However, radio waves can travel far distances and have large wavelength. Radio waves have large application in the field of telecommunication.


Which type of radiation travels the furthest in air?

In air, among the common types of ionizing radiation, gamma rays typically travel the furthest. Gamma rays are highly energetic electromagnetic waves or photons that have no mass or charge. Because of their high energy and lack of charge, they can penetrate matter more deeply than other forms of ionizing radiation like alpha and beta particles. Alpha particles, consisting of two protons and two neutrons, have a relatively low range in air because they are heavy and positively charged. Beta particles, which are high-speed electrons (beta-minus) or positrons (beta-plus), also have a limited range in the air due to their interactions with air molecules and electrons in the medium. Gamma rays, on the other hand, have no charge and interact with matter primarily through electromagnetic interactions. This allows them to penetrate air and other materials more deeply. However, the extent to which gamma rays can travel through air depends on their energy level. Higher-energy gamma rays can penetrate further than lower-energy ones. Extremely high-energy gamma rays from cosmic sources can even penetrate the Earth's atmosphere and reach the surface. It's worth noting that while gamma rays can travel far in the air, they can still be attenuated (absorbed or scattered) by denser materials or shielded effectively using appropriate shielding materials such as lead or concrete, depending on their energy level.


Is it true that the three major kinds of radiation gamma rays can penetrate the farthest into a material?

Gamma rays can travel furthest into a material which is why it is emitted in a nuclear bomb blast. In a supernova gamma rays are burst out in all directions. Gamma rays are so deadly all life on Earth could be annihilated because of a single supernova from as far as 7 light years away!


What use is alpha radiation?

It is used in smoke detectors as it cannot travel far in air. Alpha radiation is emitted and as long as the detector in the device is receiving the alpha radiation, then no smoke is present. When smoke particles are present, they interrupt the radiation, and so the detector doesn't pick up the radiation, causing the alarm to go off.


How can gamma decay without having mass?

It can't, as far as I know. "Gamma decay" doesn't refer to the decay of gamma rays; rather, it refers to a decay of ATOMS, or some other particles, which produces gamma rays in the process.