Proton's have a positive charge, neutron'shave a neutral charge, electron's have a negative charge
If a proton would be 1, an electron would be 0.000544. An electron is 1,836 times lighter than a proton. A neutron would be 1.001 as a proton is 99.86% the mass of a neutron
Proton - positive charge (+) Neutron - neutral charge (0) Electron - negative charge (-)
Yes, an example of an electrostatic force acting in an atom is a proton attracting an electron. This attraction occurs due to the opposite charges of the proton (positive) and the electron (negative), leading to the electrostatic force of attraction between them.
A neutron has approximately the same mass as a proton. Electrons have much lower mass.
The proton mass is about 2,000 times greater than the electron mass.
The three principal particles of an atom are the proton, electron and neutron. The proton and electron have +1 and -1 charges respectively. The neutron does not have a charge.
The proton has a positive charge. The electron has a negative charge. And the neutron has a no charge.
Proton's have a positive charge, neutron'shave a neutral charge, electron's have a negative charge
Proton: Positive Neutron: No charge Electron: Negative
If a proton would be 1, an electron would be 0.000544. An electron is 1,836 times lighter than a proton. A neutron would be 1.001 as a proton is 99.86% the mass of a neutron
electron = relative charge = 1- relative mass = 1/1840 proton = relative charge = 1+ relative mass = 1 neutron = relative charge = 0 relative mass = 1
Electrons, down quarks, strange quarks, bottom quarks, muon lepton, and tau lepton all have negative charge. Also, the boson can be negative.
Neutron is neutral, proton is positive, electron is negative.
Neutron is neutral. Proton is positive. Electron is negative.
For the atom: proton is positive, electron is negative, neutron is neutral.
Proton: +1 Electron: -1 Neutron: 0
Neutron, proton, electron.Neutron, proton, electron.Neutron, proton, electron.Neutron, proton, electron.