WebAnswer (1 of 5): SF6 have hybridization as sp3d2. Six fluorine atoms are at exactly 90° to sulphur. The shape would be octahedral. WebDec 6, 2024 · Molecular structure influences several properties of matter, such as reactivity, polarity, phase, color, magnetism, and bioactivity. The bond angles an atom falls into are only slightly dependent on the rest of the molecule. That is, they are mostly local and can therefore be understood as transferable properties. Octahedral Molecular geometry:
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WebMay 24, 2024 · The Sulfur bromide (SBr6), (OC-6-11)- molecule contains a total of 6 bond(s) There are 6 non-H bond(s). The 2D chemical structure image of Sulfur bromide (SBr6), … Web2 days ago · All the Phosphorus-Chlorine equatorial bonds make 90 degrees and 120 degrees bond angles, two each, with the further bonds in the atom. The second type of bond is the axial bond. Each of these bonds between P and Cl makes 3 90 degrees and 180 degrees bond angles with the supplementary bonds. Hybridization of PCl5 frosty 5k run for adoption
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WebThe bond angle in the molecule H2S is _____ because the _____ A. exactly 180 degrees; the S atom has two bonds B. less than 109.5 degrees; lone pairs force the hydrogen atoms closer together. C. exactly 109.5; the S atom has four charge clouds D. greater than 109.5 degrees; lone pairs allow the bond angle to expand. WebMar 11, 2024 · Lewis structure of SBr6 contains six single bonds between the Sulfur (S) atom and each Bromine (Br) atom. The Sulfur atom (S) is at the center and it is surrounded by 6 Bromine atoms (Br). The Sulfur atom … Webbond angles about a central atom. Geometry is determined by the total number of bonded atoms and lone pairs around the central atom. Shape(or molecular structure) refers to the position of the atomsin a molecule. Shape is determined by the relative placement of the bonded atoms around the central atom. For a molecule, geometry and shape are the frosty8x10