The electron configuration of CO2 is 1s2 2s2 2p2.
The electron configuration for the Co2 ion is Ar 3d7.
The electron configuration of the Co2 ion is Ar 3d7.
The electron configuration of carbon dioxide (CO2) is 1s2 2s2 2p2.
The electron configuration for oxygen is [He]2s2.2p4.The electron configuration for sulfur is [Ne]3s2.3p4.
The electronic configuration of einsteinium is: [Rn]5f11.7s2.
The electron configuration for the Co2 ion is Ar 3d7.
The electron configuration of the Co2 ion is Ar 3d7.
The electron configuration of carbon dioxide (CO2) is 1s2 2s2 2p2.
Cobalt electron configuration is [Ar]3d7.4s2.Cobalt(2+) electron configuration is [Ar]3d7.
Co2+ has 25 electrons with the configuration: [Ar] 4s2 3d5 no its [Ar]3d^7
The electron configuration for oxygen is [He]2s2.2p4.The electron configuration for sulfur is [Ne]3s2.3p4.
A cation has a depleted electron configuration.
The electron configuration for beryllium, Be, is 1s22s2.
The electronic configuration of einsteinium is: [Rn]5f11.7s2.
Hydrogen electron configuration will be 1s1.
The electron configuration of francium is [Rn]7s1.
No, carbon dioxide (CO2) is not a radical. A radical is a molecule that has unpaired electrons, making it highly reactive. CO2 has a stable electron configuration with all its electrons paired, which contributes to its non-reactive nature under normal conditions.