answersLogoWhite

0


Want this question answered?

Be notified when an answer is posted

Add your answer:

Earn +20 pts
Q: What has a relative mass of 1839 if the mass of a electron is 1?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

Relative mass of electron?

1/1840 the mass if a hydrogen atom.


What are the charges and relative masses of the main subatomic particles?

electron = relative charge = 1- relative mass = 1/1840 proton = relative charge = 1+ relative mass = 1 neutron = relative charge = 0 relative mass = 1


Mass of electron compared to proton?

Mass of electron is about 1837 times less than the mass of proton


What are Atoms 3 particles?

Proton - Relative Atomic Mass of 1, charge of 1. Neutron - Relative atomic mass of 1, charge of 0. Electron - Negligible mass (0), charge of -1.


If a proton had a mass of 1 what is the mass of an electron and neutron relative to the mass of the proton?

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


What are the charges and relative masses of the three subatomic particles that are of most interest to chemists?

Proton: electrical charge +1, mass = 1.672621637(83)×10−27 kg, relative mass = 1.00727646677 amuNeutron: neutral, mass = 1.67492729(28)×10−27 kg, relative mass = 1.0086649156 amuElectron: electrical charge -1, mass 9.10938215(45)×10−31 kg, relative mass 5.4857990943×10−4 amu


What have almost equal masses to the proton?

No, it isn't. The mass of an electron is significantly smaller than that of a proton.The mass of 1,800 electrons is about the same as the mass of one single proton.The antiparticle of the electron, the positron, has the same mass as the electron.the mass of the electron is not the same to the mass of the proton


What has the least mass - electron neutron proton nucleus?

LEAST mass? That would be photos or neutrinos, which have no mass at all. Where Least is greater than zero? Electrons, probably; an electron is 1/1836th of a proton, I seem to recall. Neutrinos actually have a small nonzero mass, so small it has yet to be determined. No neutrino has a mass of more than a few eV, the electron has a mass of about 0.5MeV.


Identify where each subatomic particle is located?

There are three basic parts to an atom. These are: the electron, the proton, and the neutron.The proton is a positively charged particle, with a relative mass of one, that is located in the nucleus of the atom, along with the neutron, which has a relative mass of one, but a neutral charge. The electron has a negligible mass, and a charge of negative one, and is located around the outside of the nucleus, whizzing around in electron shells.Proton: Relative mass 1, relative charge +1, located in nucleus in centre of atomNeutron: Relative mass 1, relative charge 0, located in nucleus in centre of atomElectron: Relative mass 1/1836, relative charge -1, located in 'shells' around nucleusYou are correct but they are not all different but if you combine them you can make a ballance with all of them to make them the same charge


Electron and protons mass?

Answer*Relative Mass*Protons have a relative mass of 1 compared to neutrons.Neutrons have a relative mass of 1 compared to protons.Electron =5.45 x 10-4


Distinguish between the subatomic particles in terms of relative charge and mass?

Proton: Charge= +1.60 x 10-19 C; Relative Charge=+1; Mass: 1.672 x 10-24 g; Relative mass= 1 amu Electron: Charge= -1.60 x 10-19 C; Relative Charge=-1; Mass: 9.05 x 10-28 g; Relative mass= amu ~(1/1840 amu) Neutron: Charge= neutral ; Relative Charge=0; Mass: 1.674 x 10-24 g; Relative mass= 1 amu


The 3 subatomic particles?

The three subatomic particles in an atom are protons, neutrons, and electrons:Protons have a relative mass of 1 and a charge of +1, and they are found in the nucleus of an atom.Neutrons have a relative mass of 1 and no charge, and they are also found in the nucleus of an atom.Electrons have a relative mass of 1/1836 and a charge of -1. They are found in specific orbits around the nucleus and are held in these orbits by the positive charge of the protons in the nucleus.