With it being a dipositive ion, the original element has lost 2 electrons. Making the configuration 1s2 2s2 2p6 3s2 2p4. That Configuration is Sulfur.
If a sodium atom loses an electron to become a Na+ ion, its electron configuration will be the same as neon (1s22s22p6). Both sodium and neon have stable electron configurations.
2,8,1 or with sub-levels 1s22s22p63s1
The element with this electron configuration is carbon (C). This electron configuration corresponds to 6 electrons, which is the atomic number of carbon.
The element with this electron configuration is manganese (Mn), which has 25 electrons.
Vanadium ( V) has that configuration. Its atomic number is 23.
1s22s22p63s1 or [Ne]3s1
If a sodium atom loses an electron to become a Na+ ion, its electron configuration will be the same as neon (1s22s22p6). Both sodium and neon have stable electron configurations.
1s22s22p63s1
The electron configuration notation 1s²2s²2p⁶3s¹ corresponds to the element sodium (Na). This configuration indicates that sodium has a total of 11 electrons, with the outermost electron in the 3s orbital, which is characteristic of alkali metals. Sodium is located in Group 1 of the periodic table and is known for its reactivity, particularly with water.
Atoms of the element sodium (atomic number 11) have the electron configuration 1s22s22p63s1 with the noble gas form [Ne] 3s1
Sodium atoms do have electrons that are arranged in energy levels. The electron configuration of sodium is 1s22s22p63s1.
2,8,1 or with sub-levels 1s22s22p63s1
The element with this electron configuration is carbon (C). This electron configuration corresponds to 6 electrons, which is the atomic number of carbon.
The element with this electron configuration is manganese (Mn), which has 25 electrons.
Vanadium ( V) has that configuration. Its atomic number is 23.
Lithium (Li) has the electron configuration 1s2 2s1.
The electron configuration of phosphorus is [Ne]3s2.3p3.