SF. Mole Hybridization Formal Charge: S Atom Formal Charge: F Atom(s) Polar? Valence e # = Electron Group Geometry Molecular Shape IC3 Hybridization Formal Charge: I Atom Formal Charge: CI Atom(s) Polar? Electron Group Geometry Electron Group Geometry Valence e #= Molecular Shape Molecular Shape CH3CN Hybridization Hybridization Formal Charge: C #1 Atom Formal Charge: C#2 Atom Polar? Formal Charge: H Atom(s) Formal Charge:

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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SF.
Mole
Hybridization
Formal Charge:
S Atom
Formal Charge:
F Atom(s)
Polar?
Valence e # =
Electron Group Geometry
Molecular Shape
IC3
Hybridization
Formal Charge:
I Atom
Formal Charge:
CI Atom(s)
Polar?
Electron Group Geometry Electron Group Geometry
Valence e #=
Molecular Shape
Molecular Shape
CH3CN
Hybridization
Hybridization
Formal Charge:
C #1 Atom
Formal Charge:
C#2 Atom
Polar?
Formal Charge:
H Atom(s)
Formal Charge:
Transcribed Image Text:SF. Mole Hybridization Formal Charge: S Atom Formal Charge: F Atom(s) Polar? Valence e # = Electron Group Geometry Molecular Shape IC3 Hybridization Formal Charge: I Atom Formal Charge: CI Atom(s) Polar? Electron Group Geometry Electron Group Geometry Valence e #= Molecular Shape Molecular Shape CH3CN Hybridization Hybridization Formal Charge: C #1 Atom Formal Charge: C#2 Atom Polar? Formal Charge: H Atom(s) Formal Charge:
Expert Solution
Step 1

The formal charge on an atom in a molecule is the charge assigned to the atom. The assumption here is that the electrons are shared equally between atoms, regardless of their electronegativity. The formula for the formal charge is given                 as qf=V-N-B2. Here, qf is the formal charge, V is the number of valence electrons, B is the total number of shared electrons, and N is the number of non-bonding valence electrons

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