There are 6 valence electron in each sulfur atom, so 6+6=12. Then because there is a single bond you have to subtract two electrons, 12-2=10. To satisfy the octet rule we must make a double bond between the two atoms. Your final result should look like this:
::S=S::
The Lewis dot structure for strontium sulfide (SrS) would show strontium with two dots (representing its two valence electrons) bonded to sulfur, which would have six dots (representing its six valence electrons). The two elements share electrons to form an ionic bond.
A synonym for Lewis diagram is Lewis structure. It is a schematic representation of the bonding between atoms in a molecule and the arrangement of valence electrons around atoms.
The Lewis dot structure of carbon disulfide (CS2) consists of a carbon atom in the center bonded to two sulfur atoms by double bonds. Each sulfur atom has six valence electrons, while the carbon atom has four valence electrons, resulting in a total of 16 valence electrons in the structure.
nitrogen chlorine
The Lewis structure of SbCl5 has the Sb in the center with 5 Cl molecules branching off like a star. The branches of the molecules should be drawn as straight lines.
:Sr
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Resonance structure.
The Lewis dot structure for germanium (Ge) is: Ge: :Ge:
The Lewis structure of the compound CCLO is as follows: CCCl-O.
The formal charge of the NCO Lewis structure is zero.
No, not exactly. It is an ionic compound so it would not have a Lewis dot structure. However, the carbonate anion, CO3^2- does have a Lewis dot structure.
The molecular geometry of the BR3 Lewis structure is trigonal planar.
The Lewis structure was created by American chemist Gilbert N. Lewis in 1916. Lewis proposed using dots to represent the valence electrons of an atom in order to show how atoms bond together in molecules.
The Lewis structure of NCS is a linear molecule with nitrogen (N) in the center, connected to carbon (C) on one side and sulfur (S) on the other side. Each atom is surrounded by a total of 8 valence electrons.
The Lewis dot structure for strontium sulfide (SrS) would show strontium with two dots (representing its two valence electrons) bonded to sulfur, which would have six dots (representing its six valence electrons). The two elements share electrons to form an ionic bond.