Yes
The isotope radon-198 will alpha decay to polonium-194 as shown here: 86198Rn => 24He + 84194Po The radon is shown on the left, and the alpha particle, which is a helium nucleus, is shown of the right with the polonium.
Yes, alpha radiation is an ionizing radiation.
Three common types of waves given off during nuclear reactions are gamma rays, alpha particles, and beta particles. Gamma rays are high-energy electromagnetic radiation, alpha particles are helium nuclei consisting of two protons and two neutrons, and beta particles are high-energy electrons or positrons.
No. Decay is the process, radiation is the product.
Alpha particles are Helium nuclei, two protons and two neutrons - mass 4 and charge 2. These particles have very little penetrating capability - they can be stopped with a few inches of air, a sheet of paper, your skin, etc. As a result, alpha particles have no chance of penetrating the metal shell of the Geiger counter and participating in the ionization pulses that it counts.
No. Alpha radiation can trigger chemical reactions, but it cannot change the fact that helium does not form stable chemical bonds. Even if you could find a way of forcing such compounds together, they would spontaneously decompose.
If you mean "alpha radiation", that is the result of certain types of radioactive decay.
No, alpha radiation does not result in the emission of electrons. It involves the emission of alpha particles, which are helium nuclei consisting of 2 protons and 2 neutrons.
Nuclear chemistry deals with the chemical reactions involving radioactive elements. Gamma radiation is due to the electromagnetic force, beta radiation is due to the weak nuclear force, and alpha radiation is due to the residual strong force (which you might call the strong nuclear force). So... if you didn't have the nuclear force, you wouldn't have alpha radiation.
Yes, nuclear weapons or nuclear reactors produce radiation as a byproduct of nuclear reactions. This radiation can be in the form of gamma rays, alpha particles, or beta particles. Therefore, exposure to nuclear weapons or the fallout from a nuclear explosion can result in harmful levels of radiation.
becouse the human activities also produced as a result radiation orginate
The isotope radon-198 will alpha decay to polonium-194 as shown here: 86198Rn => 24He + 84194Po The radon is shown on the left, and the alpha particle, which is a helium nucleus, is shown of the right with the polonium.
Radioactive alpha, beta, and gamma radiation are produced during the decay of certain types of unstable atomic nuclei, such as those of radioactive elements like uranium or radium. These types of radiation can also be produced in nuclear reactions, such as those that occur in nuclear power plants or in nuclear weapons.
Yes, alpha radiation is an ionizing radiation.
Alpha (and beta) radiation is "particle radiation" Gamma is electro-magnetic radiation.
Three common types of waves given off during nuclear reactions are gamma rays, alpha particles, and beta particles. Gamma rays are high-energy electromagnetic radiation, alpha particles are helium nuclei consisting of two protons and two neutrons, and beta particles are high-energy electrons or positrons.
Alpha radiation is essentially a Helium nucleus (not the whole atom, apha particles don't have electrons on them). An alpha particle is just two protons and two neutrons and as a result they also have a relative charge of +2.