Compared to a proton, an electron has a much smaller mass (approximately 1/1836 times the mass of a proton) and a negative charge. Electrons are located outside the nucleus of an atom, while protons are found within the nucleus.
By sheer size, I would assume MUCH larger. But through weight, the proton is much heavier compared to an electron. On any element, the atomic number is the weight of the nuetrons and protons. The weight of electrons is so small and insignificant, it is usual not looked on at the highschool level. And has no effect on the molar mass.
The proton exerts a greater electrostatic force on the electron in a hydrogen atom. This is because the proton has a much larger mass and positive charge compared to the much smaller mass and negative charge of the electron.
An electron has a very small mass compared to other particles, such as protons and neutrons. Its mass is about 1/1836 of the mass of a proton or neutron.
A hydrogen atom that has lost an electron has a net positive charge since it now has one less negatively charged electron compared to its positively charged proton. This charged hydrogen atom is known as a hydrogen ion, specifically a proton.
A proton is bigger than electron
A proton is bigger than electron
They have opposite charges.
The proton mass is about 2,000 times greater than the electron mass.
The proton mass is about 2,000 times greater than the electron mass.
Mass ratio proton (neutron)/electron: 1 836
Both are atomic particles; proton is positive and electron is negative. Electron is very small by comparation with a a proton.
Compared to a proton, an electron has a much smaller mass (approximately 1/1836 times the mass of a proton) and a negative charge. Electrons are located outside the nucleus of an atom, while protons are found within the nucleus.
The mass of an electron is about 1/1836 times the mass of a proton. This means that electrons are much lighter than protons.
The electron has very little mass compared to the neutron and proton. The neutrons and protons have a similar mass, about 2000 times greater than the mass of an electron.
Since the volume of a proton is significantly larger than the volume of an electron, the density of a proton will be much lower compared to the density of an electron. Densities are calculated by mass/volume, so with protons being much heavier than electrons, the lower volume of protons will result in a lower density compared to electrons.
The neutron is the largest of the particles mentioned. Compared to the proton, it has an additional weight of 1.293 MeV.