The hybridization of the sulfur atom in H2SO3 is sp2.
Sp2,120 is the hybridization of the central atom in SO2.
The central atom of H2S is sulfur. Sulfur in H2S undergoes sp3 hybridization, where the 3p orbitals and 1s orbital of sulfur mix to form four sp3 hybrid orbitals.
Sulfur hexafluoride (SF6) has sp3d2 hybridization because of its central sulfur atom's coordination number of 6. In order to accommodate this coordination number, the sulfur atom undergoes hybridization involving one 3s orbital, three 3p orbitals, and two 3d orbitals, resulting in sp3d2 hybridization. This allows the sulfur atom to form six bonding pairs with the surrounding fluorine atoms, creating a stable octahedral geometry.
The central atom in SIF6^2- is sulfur. The sulfur atom in SIF6^2- has an sp3d2 hybridization, which includes one s orbital, three p orbitals, and two d orbitals to form six sp3d2 hybrid orbitals around the sulfur atom.
The hybridization of SF3 is sp3d. It involves one sulfur atom and three fluorine atoms, with one lone pair on the sulfur atom. The central atom, sulfur, has one s orbital and three p orbitals hybridize to form five sp3d hybrid orbitals for bonding.
H2S2O8 has a larger percent by mass of sulfur because it contains two sulfur atoms in each molecule compared to one sulfur atom in H2SO3.
Sp2,120 is the hybridization of the central atom in SO2.
The central atom of H2S is sulfur. Sulfur in H2S undergoes sp3 hybridization, where the 3p orbitals and 1s orbital of sulfur mix to form four sp3 hybrid orbitals.
Sulfur hexafluoride (SF6) has sp3d2 hybridization because of its central sulfur atom's coordination number of 6. In order to accommodate this coordination number, the sulfur atom undergoes hybridization involving one 3s orbital, three 3p orbitals, and two 3d orbitals, resulting in sp3d2 hybridization. This allows the sulfur atom to form six bonding pairs with the surrounding fluorine atoms, creating a stable octahedral geometry.
The central atom in SIF6^2- is sulfur. The sulfur atom in SIF6^2- has an sp3d2 hybridization, which includes one s orbital, three p orbitals, and two d orbitals to form six sp3d2 hybrid orbitals around the sulfur atom.
The central atom in sulfur trioxide (SO3) is sulfur. Sulfur has 3 oxygen atoms bonded to it, forming a trigonal planar molecular geometry. Each oxygen atom is also attached to the sulfur atom through a double bond. Therefore, the hybridization of the sulfur atom in sulfur trioxide is sp2.
sp2, trigonal planar, bent
The hybridization of SF3 is sp3d. It involves one sulfur atom and three fluorine atoms, with one lone pair on the sulfur atom. The central atom, sulfur, has one s orbital and three p orbitals hybridize to form five sp3d hybrid orbitals for bonding.
sp3d is a typical answer - bit this assumes that d orbitals are sigificant in the bonding- you may be being taught differently.
The boron atom in BF3 has sp2 hybridization.
The carbon atom in CF4 has a hybridization of sp3.
The hybridization of the central atom in NCl3 is sp3.