16
The maximum number of electrons that can be held in the third orbit of an atom is 18. This is based on the formula 2n^2, where n is the principal quantum number of the orbit. For the third orbit (n=3), the maximum number of electrons is 2 x 3^2 = 18.
13 electrons are in the third orbit of Manganese.
The number of electrons per orbit in an atom is determined by the energy level of the orbit. Each orbit can hold a maximum number of electrons, with the first orbit holding up to 2 electrons, the second holding up to 8 electrons, the third holding up to 18 electrons, and so on.
In a lead atom, the number of electrons in each orbit are as follows: 2 electrons in the first orbit (closest to the nucleus) 8 electrons in the second orbit 18 electrons in the third orbit 32 electrons in the fourth orbit
The third orbit, also known as the third energy level or shell, can hold a maximum of 18 electrons. This is based on the formula 2n^2, where n is the principal quantum number representing the energy level. For the third orbit (n=3), the maximum number of electrons is 2 x 3^2 = 18 electrons.
The Third Principal Energy Level can hold 2 e- in the S orbital and6 e- in the P sublevel. So there's a total of eight e- in all.
Magnesium has 3 electron orbits. The first orbit can hold up to 2 electrons, the second orbit can hold up to 8 electrons, and the third orbit can hold up to 8 electrons.
yes
In a sulfur atom, the third energy level can contain a maximum of 18 electrons. The electrons are distributed among the different orbitals in the third energy level according to the rules of electron configuration.
http://www.answers.com/topic/atomic-orbital Atomic orbitals are cloud like structures around the nucleus of an atom that contain the atoms electrons. There are s, p, d, and f orbitals. S contain up to 2 electrons, P contain up to 6 electrons, d contain up to 10 electrons, and f contain up to 14 electrons. These orbitals have electrons containing different amounts of energy, and it is possible for electrons to jump to and from different orbitals. When this happen energy either needs to be added or released. The number of orbitals present in an atom is completely dependent on the number of electrons present in the atom.
The third electron shell can hold a maximum of 18 electrons. However, the number of electrons actually present in the third shell depends on the specific element and its atomic number.
the number of electrons found in the third shell of an helium atom are nill because its atomic number is 2