+2 unit charges - the alpha particle is a helium nucleus.
+ve charges
An alpha particle has a charge of +2 (elementary charges), since it contains two protons.
If a mixture is electrically neutral, for every alpha particle (which has a charge of +2), there must be two beta particles (each with a charge of -1) to balance the charges. So there are two more beta particles than alpha particles in the balloon.
An alpha particle has a charge of +2 (elementary charges). A beta particle has a charge of -1 (electron) or +1 (positron).An alpha particle has a charge of +2 (elementary charges). A beta particle has a charge of -1 (electron) or +1 (positron).An alpha particle has a charge of +2 (elementary charges). A beta particle has a charge of -1 (electron) or +1 (positron).An alpha particle has a charge of +2 (elementary charges). A beta particle has a charge of -1 (electron) or +1 (positron).
N.a.p.k.i.n.s.~Never Accepting Paper Kappa's In Nupe's Society
1. How is the secret alpha phi alpha Handshake done? 2. What is if any the secret password for alpha phi alpha? 3. How many white members are there in alphi phi alpha?
An alpha particle has a charge of +2 (elementary charges), since it contains two protons.
An alpha particle has a charge of +2 (elementary charges), since it contains two protons.
The force of repulsion between the alpha particle and the gold nucleus can be calculated using Coulomb's law, given by F = k * (q1 * q2) / r^2, where k is the Coulomb constant, q1 and q2 are the charges of the particles, and r is the distance between them. Given the charges of an alpha particle and a gold nucleus, and the distance of 1pm, the force of repulsion can be calculated to be extremely large due to the proximity of the particles and the high charges involved.
When a positively charged alpha particle approaches a positively charged nucleus, it experiences a strong electrostatic repulsion due to the like charges. This repulsion can prevent the alpha particle from getting too close, resulting in scattering rather than a direct hit. If the alpha particle has sufficient energy, it may overcome the repulsive barrier and get close enough to undergo nuclear reactions, such as fusion or the emission of other particles. However, in most cases, it will simply be deflected.
The force between charges decreases as the distance between them increases. Like charges repel each other. Oppostite charges attract each other
Alpha rays are positively charged, beta negatively charged and gamma rays is an electromagnetic wave(like light) which has no charge. They have obtained their charges on basis of where they originated from within the atom.