Satyendra Nath Bose was the well known Indian scientist after whom the sub atomic particle boson was named .
Bohr was not the discoverer of a particle.
neutrons
Protons and neutrons are roughly 1800 times heavier then electrons.
Ernest Rutherford, a New Zealand physicist, designed an experiment that led to the first successful detection of an individual subatomic particle, the proton. This experiment, known as the gold foil experiment, involved bombarding gold foil with alpha particles to study the structure of the atom.
A positively charged subatomic particle is called a proton. It is found in the nucleus of an atom and contributes to the overall positive charge of the nucleus.
They are leptons, bosons, hadrons, fermions etc.
Bohr was not the discoverer of a particle.
neutrons
A baryon is a variety of heavy subatomic particle created by the binding of quarks by gluons.
Protons and neutrons are roughly 1800 times heavier then electrons.
The atom is the smallest known particle.
Neutron: Mass: 1,00866491600(43) amu. Charge: neutral Electron: Mass: 5,4857990946(22)×10−4 amu. Charge: negative Proton: Mass: 1,007276466812(90) amu. Charge: positive
Electromagnetic radiation, such as light and radio waves, travels in a straight line. The fastest particle currently known is the neutrino, a subatomic particle with almost no mass and no electric charge.
A nucleon refers to either a proton or a neutron, which are the subatomic particles found within the nucleus of an atom. Both protons and neutrons are collectively known as nucleons.
An ElectronThe electron is a subatomic particle that carries a negative electric charge. It has no known components or substructure, and therefore is believed to be an elementary particle. An electron has a mass that is approximately 1/1836 that of the proton.
neutron has no electric charge.electron is negative whereas proton is positively charge.
Electron, lightest stable subatomic particle known. It carries a negative charge, which is considered the basic unit of electric charge. The rest mass of the electron is 9.109 × 10−31 kg, which is only 1/1,840the mass of a proton. An electron is therefore considered nearly massless in comparison with a proton or a neutron, and the electron mass is not included in calculating the mass number of an atom.