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The Lewis dot diagram for SiS2 would show Silicon (Si) at the center with one sulfur (S) atom on each side. Each sulfur atom would have six dots around it to represent its valence electrons, while silicon would have four dots around it.
These would be the elements in group 16. The elements in group 16 have six valence electrons. Those valence electrons are represented in a Lewis diagram by surrounding them with six dots. When drawing a diagram for an element with six valence electrons, there should be two pairs of dots (four total), and two separate dots.
In an electron dot diagram, the number of dots surrounding an atom represents its valence electrons. Each pair of dots can form a bond, meaning that the number of bonding pairs (dots that are shared between atoms) indicates how many bonds the atom can form. For example, if an atom has four valence electrons, it can form up to four covalent bonds by sharing those electrons. Thus, the arrangement of dots directly relates to the bonding capacity of the atom.
Galena (PbS) consists of lead (Pb) and sulfur (S) atoms. In a Lewis dot diagram for galena, the lead atom would be represented with its valence electrons shown as dots around it, while sulfur would have its valence electrons depicted as well. Lead typically has four valence electrons and sulfur has six, so the diagram would show lead sharing its electrons with sulfur to form the bond. However, as a compound, the Lewis structure would mainly focus on the ionic interaction, showing lead as a cation (Pb²⁺) and sulfur as an anion (S²⁻) without explicit dot representation for the ionic bond.
The electron dot formula for SF6 would show 6 pairs of dots around the central Sulfur atom, representing the 6 Fluorine atoms bonded to it. The Sulfur atom will have 12 valence electrons around it in total.
it has 6
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it has 6
six
The Lewis dot diagram for SiS2 would show Silicon (Si) at the center with one sulfur (S) atom on each side. Each sulfur atom would have six dots around it to represent its valence electrons, while silicon would have four dots around it.
These would be the elements in group 16. The elements in group 16 have six valence electrons. Those valence electrons are represented in a Lewis diagram by surrounding them with six dots. When drawing a diagram for an element with six valence electrons, there should be two pairs of dots (four total), and two separate dots.
there are 6 valence electrons in the outermost energy levei
..:O:.. l ..:O-S-O:" l ":O:" (SO4)2- 32 total electrons: 6 per atom plus 2grrr it wont get the spaces right. its 4 oxygen around a sulfur, all single bonds. each oxygen has 6 extra electrons around it
In the electron dot diagram for a sulfur ion, there would be eight dots represented. This is because sulfur typically forms an ion with a 2- charge, so it needs two more electrons to achieve a full outer shell of eight electrons.
Bohr model is simplified model of an atom structure, it contains:number of shells (energy levels) around the nucleuselectron number in each shellnumber of protons and electrons in nucleusSulphur atom consists of:Electrons in shells (energy levels):2 electrons8 electrons6 electronsIts symbol is S, nucleus contains 16 protons and 16 neutrons
S=C=S the equal sign represents a double bond so if you want the dot and cross put 2 dots and 2 crosses either side of the carbon then 4 dots on each sulphur so each atom has each electrons.