hybridization of pcl5 and sf6

Click hereto get an answer to your question ️ Write just the shape and hybridization in PCl5 and SF6 molecule. We consider 12 for sulfur because it needs to make a total of 6 bonds. Enjoy the videos and music you love, upload original content, and share it all with friends, family, and the world on YouTube. Types of bonds formed during the PCl5 hybridization-Equatorial bonds: 3 P–Cl bond which lies in one plane to make an angle with each other. In PCl5 the 5sp3d orbitals of phosphorus overlap with p orbitals of chlorine atoms. Together they form 5 P–Cl sigma bonds. Hence, the geometry of PCl5 can be represented as: There are five P–Cl sigma bonds in PCl5. Since the axial bond pairs agonize more repulsive interaction from the equatorial bond pairs, the axial bonds tend to be slightly longer.

Normally, SF6 can be prepared by exposing or combining S8 with F2. The central atom of PCl5 is P. In this case, phosphorous has an sp3d hybridization. The remaining two P–Cl bonds lie above and below the equatorial plane and make an angle of 90° with the plane. These bonds are called axial bonds. These bonds are called equatorial bonds. It is connected to 5 other atoms, one more than the 4 for sp3 hybridization. Sulfur hexafluoride has a central sulfur atom around which one can see 12 electrons or 6 electron pairs. Three P–Cl bonds lie in one plane and make an angle of 120° with each other. SF6 molecular geometry will be octahedral because if we look at the structure sulphur hexafluoride has a central sulphur atom around which12 electrons or 6 electron pairs are present and there are no lone pairs. To learn more about the hybridization of other atomic orbitals from the expert faculties register to BYJU’S now! SF6 Molecular Geometry, Lewis Structure, Shape, and Polarity. Define hybridization state the hybridisation and the shape of PCL5 and sf6 2 See answers Aryan1081 Aryan1081 According to VSEPR theory, a molecule with five bonding pairs must have both a trigonal bipyramidal electron geometry and molecular geometry The P atom needs five orbitals to form the five P-Cl bonds.

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