[Ne]3s23p3
The electron configuration for Hf using noble gas shorthand is [Xe] 6s2 4f14 5d2. The noble gas shorthand represents the electron configuration of the noble gas xenon, which has an electron configuration of 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6.
P 3- is the ion with the noble gas configuration.
The noble gas shorthand for titanium is [Ar] 3d^2 4s^2. It represents the electron configuration of titanium by showing the number of electrons in each energy level, similar to the configuration of the noble gas element argon.
The election configuration for boron using the noble gas shorthand is [He] 2s^2 2p^1. This shorthand represents the electron configuration of boron by replacing the core electrons with the noble gas that comes before it on the periodic table, which in this case is helium.
The ground-state electron configuration for copper (Cu) using noble-gas shorthand is Ar 3d10 4s1.
Yes it is possible to write the noble gas configuration of all elements, though it is not possible to list all of them here.
2.3!<-----wrong shorthand electron configuration for Boron (B on the periodic table) is [He] 2s2 2p1 because Shorthand means building on the last noble gas element. So put the closest Noble gas element before this one and then the new addition.
P-3 ion is formed with 18 electrons.
The electron configuration for Pb using noble gas shorthand is [Xe] 4f^14 5d^10 6s^2 6p^2.
(Xe)6s24f145d4
The noble gas notation for beryllium (Be) is [He] 2s². This notation represents the electron configuration of beryllium by showing that it has the same electron configuration as helium ([He]) up to the previous noble gas before it, with two electrons in the 2s orbital.
In the shorthand method for showing electron configuration, the noble gas preceding the element is used to indicate the core electrons (inner shell electrons), while the valence electrons are indicated by the remaining electron configuration. For example, the electron configuration of potassium (K) can be written as [Ar] 4s¹, where [Ar] represents the noble gas core configuration (argon's electron configuration).