The bonding in C 2 2 − ion, is to be described using the localized electron model and molecular orbital model. Concept introduction: The valence bond theory is based on the assumption that all the bonds present between two atoms are localized bonds formed by the donation of an electron from each atom. The localized electron model consists of the following, The Lewis structure is drawn. The arrangement of the electron pairs is determined. The required hybrid orbitals are specified. The electronic configuration for multi-electron atom is written using the molecular orbitals. The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as, Bond order = [ ( Electrons in bonding orbitals ) − ( Electrons in anti-bonding orbitals ) ] 2 To determine: Bonding in C 2 2 − on the basis of the localized electron model and molecular orbital model.
The bonding in C 2 2 − ion, is to be described using the localized electron model and molecular orbital model. Concept introduction: The valence bond theory is based on the assumption that all the bonds present between two atoms are localized bonds formed by the donation of an electron from each atom. The localized electron model consists of the following, The Lewis structure is drawn. The arrangement of the electron pairs is determined. The required hybrid orbitals are specified. The electronic configuration for multi-electron atom is written using the molecular orbitals. The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as, Bond order = [ ( Electrons in bonding orbitals ) − ( Electrons in anti-bonding orbitals ) ] 2 To determine: Bonding in C 2 2 − on the basis of the localized electron model and molecular orbital model.
Solution Summary: The author describes the valence bond theory using the localized electron model and molecular orbital model.
Definition Definition Theory that explains how individual atomic orbitals with an unpaired electron each, come close to each other and overlap to form a molecular orbital giving a covalent bond. VBT gives a quantum mechanical approach to the formation of covalent bonds with the help of wave functions using attractive and repulsive energies when two atoms are brought from infinity to their internuclear distance.
Chapter 4, Problem 79E
Interpretation Introduction
Interpretation: The bonding in C22− ion, is to be described using the localized electron model and molecular orbital model.
Concept introduction: The valence bond theory is based on the assumption that all the bonds present between two atoms are localized bonds formed by the donation of an electron from each atom. The localized electron model consists of the following,
The Lewis structure is drawn.
The arrangement of the electron pairs is determined.
The required hybrid orbitals are specified.
The electronic configuration for multi-electron atom is written using the molecular orbitals. The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as,
A small artisanal cheesemaker is testing the acidity of their milk
before it coagulates. During fermentation, bacteria produce lactic
acid (K₁ = 1.4 x 104), a weak acid that helps to curdle the milk and
develop flavor. The cheesemaker has measured that the developing
mixture contains lactic acid at an initial concentration of 0.025 M.
Your task is to calculate the pH of this mixture and determine whether
it meets the required acidity for proper cheese development. To
achieve the best flavor, texture and reduce/control microbial growth,
the pH range needs to be between pH 4.6 and 5.0.
Assumptions:
Lactic acid is a monoprotic acid
H
H
:0:0:
H-C-C
H
:0:
O-H
Figure 1: Lewis Structure for Lactic Acid
For simplicity, you can use the generic formula HA to represent the acid
You can assume lactic acid dissociation is in water as milk is mostly water.
Temperature is 25°C
1. Write the K, expression for the dissociation of lactic acid in the space provided. Do not forget to
include state symbols.…
Curved arrows are used to illustrate the flow of electrons. Using the provided starting and product
structures, draw the curved electron-pushing arrows for the following reaction or mechanistic step(s).
Be sure to account for all bond-breaking and bond-making steps.
:0:
:0
H.
0:0
:0:
:6:
S:
:0:
Select to Edit Arrows
::0
Select to Edit Arrows
H
:0:
H
:CI:
Rotation
Select to Edit Arrows
H.
<
:0:
:0:
:0:
S:
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Quantum Molecular Orbital Theory (PChem Lecture: LCAO and gerade ungerade orbitals); Author: Prof Melko;https://www.youtube.com/watch?v=l59CGEstSGU;License: Standard YouTube License, CC-BY