. Through the transfer of electrons between atoms
The electron configuration of sulfur is [Ne) 3s2.3p4.
The element with the electron configuration of 2.7 is chlorine (Cl). This configuration indicates that chlorine has 2 electrons in its first energy level and 7 electrons in its second energy level. Chlorine is a halogen and is known for its reactivity, often forming compounds by gaining an electron to achieve a stable octet.
The most electronegative element is fluorine. Its electron configuration is 1s2 2s2 2p5.
The answer is nitrogen. Nitrogen is one example of an element that has the same valence electron configuration as phosphorus.Ê
This group has the electron configuration of sulfur. The element sulfur has 16 electrons, and its electron configuration is 1s2 2s2 2p6 3s2 3p4.
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.
The element with the electron configuration 1s22s22p63s23p5 is fluorine (F).
This electron configuration corresponds to the element Palladium (Pd), which has the atomic number 46. It has the electron configuration [Kr] 5s2 4d10.
The element with electron configuration 1s22s23p1 is phosphorus, which has an atomic number of 15.
Sulfur (S) has the electron configuration 1s22s22p63s23p4.
The element with that electron configuration is Iron.
Fluorine is the element that will accept an electron the most easily. It has a high electronegativity, making it highly capable of attracting and accepting an extra electron to achieve a stable electron configuration.
Sodium has the electron configuration of neon.