1s22s22p63s23p3
The electron configuration of 1s22s22p3s1 is not the ground state electron configuration of any element. This configuration contains 8 electrons, which in the ground state would be oxygen. The ground state configuration of oxygen is 1s22s22p4.
The excited state of phosphorus occurs when an electron is promoted to a higher energy level within its electron configuration. This results in phosphorus having more energy than in its ground state, which can lead to the emission of light or other forms of energy when the electron returns to its original energy level.
Phosphorus typically fills its outermost electron shell in the third energy level, or s sublevel, in its ground state configuration.
Yes, an atom of phosphorus is stable. Phosphorus has a stable electron configuration in its ground state, with 15 electrons arranged in energy levels. It forms stable compounds with other elements to fulfill its outer electron shell.
The ground state electron configuration of bromine is Ar 4s 3d 4p.
The electron configuration of gallium is: [Ar]3d104s24p1.
The electron configuration of 1s22s22p3s1 is not the ground state electron configuration of any element. This configuration contains 8 electrons, which in the ground state would be oxygen. The ground state configuration of oxygen is 1s22s22p4.
The excited state of phosphorus occurs when an electron is promoted to a higher energy level within its electron configuration. This results in phosphorus having more energy than in its ground state, which can lead to the emission of light or other forms of energy when the electron returns to its original energy level.
Phosphorus typically fills its outermost electron shell in the third energy level, or s sublevel, in its ground state configuration.
Yes, an atom of phosphorus is stable. Phosphorus has a stable electron configuration in its ground state, with 15 electrons arranged in energy levels. It forms stable compounds with other elements to fulfill its outer electron shell.
The ground state electron configuration for nitrogen is [He]2s2.2p3.
The ground state electron configuration of bromine is Ar 4s 3d 4p.
The ground-state electron configuration for the V3 ion is Ar 3d2.
The ground state electron configuration for iron (Fe) is Ar 3d6 4s2.
The ground state electron configuration of iron (Fe) is Ar 3d6 4s2.
Ground state electron configuration of zinc (Zn): [Ar]3d104s2.
The expected ground-state electron configuration of copper is ; however, the actual configuration is because a full dsubshell is particularly stable. There are 18 other anomalous elements for which the actual electron configuration is not what would be expected.