Pretty small. Although the exact mass of these particles (there are three "flavors" of neutrinos) is unknown, the maximum possible mass of the heaviest possible neutrino is about a millionth of the mass of an electron.
A neutrino is an elementary particle and is considered to be nearly massless. Their rest mass is still not well determined, but it is known to be very small, less than 0.12 eV. In comparison, the mass of an electron is about 511,000 eV.
They aren't 3 they are in fact 12 if you count anti matter as a separate particle from matter. Electron, muon, tau, electron neutrino, muon neutrino and tau neutrino. The same apply to anti matter positron, anti muon, anti tau, postrin neutrino, anti muon neutrino, and anti tau neutrino.
The charge of a neutrino is neutral, meaning it has no electric charge.
An antineutrino is a subatomic particle that is the antimatter counterpart of a neutrino. The main difference between an antineutrino and a neutrino is their electric charge - neutrinos have no charge, while antineutrinos have a negative charge.
An antineutrino is a subatomic particle that is the antimatter counterpart of a neutrino. It has opposite properties, such as opposite electric charge and lepton number, compared to a neutrino. Neutrinos are neutral particles, while antineutrinos have a negative charge.
Yes, it has a mass - though the mass is quite small. As far as I know, the neutrino has not been found to have smaller parts.
A neutrino is an elementary particle and is considered to be nearly massless. Their rest mass is still not well determined, but it is known to be very small, less than 0.12 eV. In comparison, the mass of an electron is about 511,000 eV.
An antimuon neutrino is an antileptonic elementary particle which is the antiparticle of a muon neutrino.
An antielectron neutrino is an antileptonic elementary particle - the antiparticle of an electron neutrino.
A photon is a unit of light and has a mass of 0 where is a Neutrino has a small but nonzero mass. Neutrino's are similar to electrons in most regards, except neutrino's have no charge. Where photon's travel at the speed of light neutrino's come close but do not.
I would say a neutrino, because its charge is zero. ------------------------------------------------------------------------ Neutrino is not considered as a subatomic particle. Proton (positively charged) and electron (negatively charged) have very small electrical charge.
They aren't 3 they are in fact 12 if you count anti matter as a separate particle from matter. Electron, muon, tau, electron neutrino, muon neutrino and tau neutrino. The same apply to anti matter positron, anti muon, anti tau, postrin neutrino, anti muon neutrino, and anti tau neutrino.
Tau neutrino was created in 2000.
Electron neutrino was created in 1956.
Neutrinos, but their mass is very, very small.
The charge of a neutrino is neutral, meaning it has no electric charge.
Baksan Neutrino Observatory was created in 1977.