SO3 Use the matching numbers below to indicate the molecule Hybridization Electron-domain geometry Molecular geometry , and Polarity Hybridization: 1 = sp, 2 = sp², 3 = sp³, 4 = sp³d, 5 = sp3d² Electron-domain geometry: 6 = linear, 7 = Trigonal planar, 8 = Tetrahedral, 9 = Trigonal bipyramidal, 9 = Octahedral Molecular geometry: 10 = Linear, 11 = Trigonal planar, 12 = Bent, 13 = Tetrahedral, 14 = Trigonal pyramidal, 1 Seesaw, 16 = T-shaped, 17 = Octahedral, 18 = Square pyramidal 19 = Square planar Polarity: 20 = Polar, 21 = Non polar %3D
SO3 Use the matching numbers below to indicate the molecule Hybridization Electron-domain geometry Molecular geometry , and Polarity Hybridization: 1 = sp, 2 = sp², 3 = sp³, 4 = sp³d, 5 = sp3d² Electron-domain geometry: 6 = linear, 7 = Trigonal planar, 8 = Tetrahedral, 9 = Trigonal bipyramidal, 9 = Octahedral Molecular geometry: 10 = Linear, 11 = Trigonal planar, 12 = Bent, 13 = Tetrahedral, 14 = Trigonal pyramidal, 1 Seesaw, 16 = T-shaped, 17 = Octahedral, 18 = Square pyramidal 19 = Square planar Polarity: 20 = Polar, 21 = Non polar %3D
Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter9: Bonding And Molecular Structure: Orbital Hybridization And Molecular Orbitals
Section: Chapter Questions
Problem 53IL: The sulfamate ion, H2NSO3, can be thought of as having been formed from the amide ion, NH2, and...
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