The electron configuration of astatine is: [Xe]4f145d106s26p5.
The radioactive element actinium (atomic number 89) has the electron configuration [Rn] 6d1 7s2
The electronic configuration of copper is Ar 3d10 4s1.
Nb or niobium has the electron configuration of [Kr]4d45s1
Electronic configuration of scandium: [Ar]3d1.4s2
The negative ion F has the same electronic configuration as the positive ion Ne. This is because the negative ion F gains an electron to achieve a stable octet configuration, similar to the stable electronic configuration of the noble gas Ne.
The radioactive element actinium (atomic number 89) has the electron configuration [Rn] 6d1 7s2
what is the electronic configuration of the atomC6
The most probable formula for the astatine ion is At-. Astatine commonly forms anions by gaining an extra electron to achieve a stable electron configuration.
The electronic configuration of tin is: [Kr]D10.5s2.5p2.
The electronic configuration of copper is Ar 3d10 4s1.
The electronic configuration of Bromine is [Ar] 3d10 4s2 4p5.
Electronic configuration means the arrangement of electrons in shells in atoms. Eg:Electronic configuration of Sodium is 1s2,2s2,2p6,3s1.
Nb or niobium has the electron configuration of [Kr]4d45s1
Electronic configuration of scandium: [Ar]3d1.4s2
The electron configuration of polonium is: [Xe]6s24f145d106p4.
H- has one additional electron compared to H. The electronic configuration is: 1s2
Astatine has multiple energy levels, but the exact number depends on the context in which you are referring to them. In an atom, astatine can have multiple electron energy levels based on its electron configuration. In a nuclear context, astatine isotopes may have different energy levels related to their nuclear structure and decay modes.