The electron configurartion of silicon is [Ne]3s23p2.
The noble gas configuration of silicon is [Ne] 3s^2 3p^2, where [Ne] represents the electron configuration of the noble gas neon. Silicon has 14 electrons, with two in the 3s orbital and two in the 3p orbital.
Silicon has 4 valence electrons. No noble gases will have 4 valence electrons.
An atom of silicon needs to gain 4 electrons in its 3p sublevel to attain the noble gas electron configuration of argon, the noble gas in period 3 of the periodic table.
The element with three occupied principal energy levels and four valence electrons is silicon (Si), which is in group 14 of the periodic table. Its electron configuration is 1s² 2s² 2p⁶ 3s² 3p². The noble gas configuration for silicon can be expressed as [Ne] 3s² 3p², where [Ne] represents the electron configuration of neon, the nearest noble gas preceding silicon.
Well, the steps I take are to first find the element on the periodic table that you are trying to write the configuration for. Then, determine which noble gas is in the previous period and put that element in brackets. You must have basic knowledge about electron configuration to understand the next part. Here is an example: Find the noble gas configuration of Silicon: Because the noble gas listed in the previous period of silicon is neon, we will start by putting brackets around it. The next step you must learn yourself. Answer: [Ne]3s²3p²
The electron configuration of silicon is [Ne]3s23p2.
Silicon is a metalloid, which means it has properties of both metals and nonmetals. It is not a noble gas.
The noble configuration for Ca is [Ar]4s2.
The element silicon (atomic number 14) has the following electron configuration :- Full configuration: 1s2 2s2 2p6 3s2 3p2- Compressed (without all standard script numbers): 1s2 2s2p6 3s2p2- Noble Gas form : [Ne] 3s2 3p2 / [Ne] 3s2p2 (this works because [Ne] symbolizes the electronic configuration of Neon, which is 1s2 2s2 2p6. When added to 3s2p2, it is equivalent to the full electron configuration of Silicon, when neutral.)The electon configuration of silicon is 1s22s22p63s23p2. The abbrieviated electron configuration is [Ne]3s23p2.
Silicon has the atomic no. of 14 and has 4 electrons in its outermost shell. Thus,in order to make bonds it must loose or gain 4 electrons in order to achieve stable configuration but this process requires lot of energy. Therefore, silicon mostly makes bonds by sharing its electrons.
The "Noble gas electron configuration," or the condensed electron configuration, for F is [He] 2s2 3p5.
The noble gas electron configuration of radon is [Xe]4f145d106s26p6.