Since they are p orbitals, 6 electrons are occupied in the 3p orbital. there are 3 types of p orbital, px, py and pz
The maximum number of unpaired electrons in a 3p subshell is three. Each of the three p orbitals can hold one electron with the same spin before pairing occurs, according to Hund's rule. Thus, if all three orbitals are occupied by single electrons, the total number of unpaired electrons in the 3p subshell is three.
18. 2 in the 3s, 6 in the 3p and 10 in the 3d.
The third period of the periodic table can hold a maximum of 18 electrons. This includes filling the 3s, 3p, and 3d sublevels with a total of 8, 6, and 4 electrons respectively.
The first level can hold 2, the second can hold 8, and the third can hold 18 electrons. However, the outer level never holds more than 8; therefore an atom containing only 3 levels will have only 8 in the 3rd level.
Silicon (Si) has an atomic number of 14, meaning it has 4 valence electrons in its outer shell (the 3s and 3p orbitals). In the case of the Si 2- ion, it gains two additional electrons, bringing the total number of valence electrons to 6. Since the additional electrons occupy the 3p orbital, Si 2- has 4 valence s electrons and 2 additional p electrons. Therefore, Si 2- possesses 2 valence p electrons.
The max. number of electrons that can fill the 3s orbital is 2.
The maximum number of unpaired electrons in a 3p subshell is three. Each of the three p orbitals can hold one electron with the same spin before pairing occurs, according to Hund's rule. Thus, if all three orbitals are occupied by single electrons, the total number of unpaired electrons in the 3p subshell is three.
3s^2 3p^6 3d^10 18 electron altogether in the third shell.
The maximum number of electrons in the 2p sublevel is 6. The p sublevel has three orbitals, each of which can take two electrons.
18. 2 in the 3s, 6 in the 3p and 10 in the 3d.
Silicon is a chemical metal element. There are 14 electrons in a single atom.
The third period of the periodic table can hold a maximum of 18 electrons. This includes filling the 3s, 3p, and 3d sublevels with a total of 8, 6, and 4 electrons respectively.
The first level can hold 2, the second can hold 8, and the third can hold 18 electrons. However, the outer level never holds more than 8; therefore an atom containing only 3 levels will have only 8 in the 3rd level.
Where do you live? Tell me how many electrons it has first. the number at the bottom of the element in bold black.
3s^2 3p^6 3d^10 18 electron altogether in the third shell.
Silicon (Si) has an atomic number of 14, meaning it has 4 valence electrons in its outer shell (the 3s and 3p orbitals). In the case of the Si 2- ion, it gains two additional electrons, bringing the total number of valence electrons to 6. Since the additional electrons occupy the 3p orbital, Si 2- has 4 valence s electrons and 2 additional p electrons. Therefore, Si 2- possesses 2 valence p electrons.
An energy sublevel refers to an electron orbital, which are designated as s, p, d or f. The maximum number of electrons in a p-type energy sublevel is 6.