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In an atom, protons have a mass of approximately 1 atomic mass unit (amu) and a positive charge (+1), located in the nucleus. Neutrons also have a mass of about 1 amu but carry no charge (0), and they are found alongside protons in the nucleus. Electrons have a much smaller mass (about 1/1836 amu) and a negative charge (-1), and they orbit the nucleus in electron shells. Together, these particles make up the fundamental structure of an atom.
Protons (p) have a positive charge of +1 elementary charge, a mass of approximately 1.67 × 10^-27 kg, and are located in the nucleus of an atom. Neutrons (n) are neutral, have a mass similar to that of protons (about 1.67 × 10^-27 kg), and are also found in the nucleus. Electrons (e) have a negative charge of -1 elementary charge, a much smaller mass of about 9.11 × 10^-31 kg, and are located in the electron cloud surrounding the nucleus.
Neutrons (mass = 1 and charge = 0) and Protons (mass = 1 and charge = +1)
The two important characteristics of a neutron are its mass and charge. These are described below. 1) Mass of neutron. The mass of a neutron is equal to mass of a proton. The relative mass of neutron in 1 u. the absolute mass of a neutron is 1.6 * 10^-24 gram. 2) Charge of neutron. Neutron has no charge. It is electrically neutral. The two important characteristics of a Proton are its mass and charge. These are described below. 1) Mass of proton. The Proton is actually a hydrogen atom which has lost its electron. Since mass of an electron is very small, we can say that mass of proton is equal to mass of a hydrogen atom. The relative mass of neutron in 1 u. the absolute mass of a neutron is 1.6 * 10^-24 gram. 2) Charge of proton. The charge of a proton is equal and opposite to the charge of an electron. So absolute charge of a proton is 1.6*10^-19 coulomb.
Proton has uni-positive charge and is found within the nucleus
protons --- rel. mass 1 amu, rel. charge +1, location in the nucleus. neutrons --- rel. mass 1 amu, rel. charge 0, location in the nucleus. electrons --- rel. mass 0 amu, rel. charge -1, location outside the nucleus.
In an atom, protons have a mass of approximately 1 atomic mass unit (amu) and a positive charge (+1), located in the nucleus. Neutrons also have a mass of about 1 amu but carry no charge (0), and they are found alongside protons in the nucleus. Electrons have a much smaller mass (about 1/1836 amu) and a negative charge (-1), and they orbit the nucleus in electron shells. Together, these particles make up the fundamental structure of an atom.
Protons (p) have a positive charge of +1 elementary charge, a mass of approximately 1.67 × 10^-27 kg, and are located in the nucleus of an atom. Neutrons (n) are neutral, have a mass similar to that of protons (about 1.67 × 10^-27 kg), and are also found in the nucleus. Electrons (e) have a negative charge of -1 elementary charge, a much smaller mass of about 9.11 × 10^-31 kg, and are located in the electron cloud surrounding the nucleus.
Protons have a charge of +1 and are in the atomic nucleus. Neutrons have a charge of 0 and are also in the atomic nucleus. Electrons have a charge of -1 and are found outside of the nucleus, in the electron cloud.
Neutrons (mass = 1 and charge = 0) and Protons (mass = 1 and charge = +1)
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
protons --- rel. mass 1 amu, rel. charge +1, location in the nucleus. neutrons --- rel. mass 1 amu, rel. charge 0, location in the nucleus. electrons --- rel. mass 0 amu, rel. charge -1, location outside the nucleus.
To find the charge to mass ratio (specific charge) of an atom, you have to find both the charge of the nucleus and the mass of the nucleus charge of nucleus = proton number x charge of 1 proton (1.6x10^-19) mass of nucleus = nucleon number x mass of 1 proton (1.67x10^-27) the you have to divide the charge of the nucleus by he mass of nucleus e.g Q/M the answer should be in C/kg or Ckg^-1
protons --- rel. mass 1 amu, rel. charge +1, location in the nucleus. neutrons --- rel. mass 1 amu, rel. charge 0, location in the nucleus. electrons --- rel. mass 0 amu, rel. charge -1, location outside the nucleus.
The two important characteristics of a neutron are its mass and charge. These are described below. 1) Mass of neutron. The mass of a neutron is equal to mass of a proton. The relative mass of neutron in 1 u. the absolute mass of a neutron is 1.6 * 10^-24 gram. 2) Charge of neutron. Neutron has no charge. It is electrically neutral. The two important characteristics of a Proton are its mass and charge. These are described below. 1) Mass of proton. The Proton is actually a hydrogen atom which has lost its electron. Since mass of an electron is very small, we can say that mass of proton is equal to mass of a hydrogen atom. The relative mass of neutron in 1 u. the absolute mass of a neutron is 1.6 * 10^-24 gram. 2) Charge of proton. The charge of a proton is equal and opposite to the charge of an electron. So absolute charge of a proton is 1.6*10^-19 coulomb.
Proton has uni-positive charge and is found within the nucleus
Well, the proton is positive and weighs 1AU and the Neutron has a neutral charge and also weighs 1AU while the Electrons weigh less than an AU and are negative. The proton and neutron are in the nucleus and the leectrons hover around the nucleus in eliptical patterns.