The electronegativity of Chlorine, the value of the ionization energy and the electron affinity both are divided the values by 230 to get a value that values compared to Pauling’s scale has to be calculated. Concept introduction: Pauling’s scale is based on an empirical relation among the energy of a bond and the electronegativities of bonded atoms. E A-B > E A-A ×E B-B Mulliken’s Scale: According to this method electronegativity could be regarded as the average of the ionization energy and electron affinity of an atom Electronegativity = I .E+E .A 2
The electronegativity of Chlorine, the value of the ionization energy and the electron affinity both are divided the values by 230 to get a value that values compared to Pauling’s scale has to be calculated. Concept introduction: Pauling’s scale is based on an empirical relation among the energy of a bond and the electronegativities of bonded atoms. E A-B > E A-A ×E B-B Mulliken’s Scale: According to this method electronegativity could be regarded as the average of the ionization energy and electron affinity of an atom Electronegativity = I .E+E .A 2
Solution Summary: The author explains that the electronegativity of Chlorine, the value of the ionization energy and electron affinity are divided by 230 to get a value that values compared to Pauling’s scale has to
Definition Definition Change in energy of a neutral gaseous atom when an electron is added to the atom to form a negative ion.
Chapter 9, Problem 9.149QP
Interpretation Introduction
Interpretation:
The electronegativity of Chlorine, the value of the ionization energy and the electron affinity both are divided the values by 230 to get a value that values compared to Pauling’s scale has to be calculated.
Concept introduction:
Pauling’s scale is based on an empirical relation among the energy of a bond and the electronegativities of bonded atoms.
EA-B>EA-A×EB-B
Mulliken’s Scale:
According to this method electronegativity could be regarded as the average of the ionization energy and electron affinity of an atom
Describe a sequence of photophysical processes that can be followed by radiation adsorbed by a molecule in the ground state to give rise to phosphorescent emission.
State two similarities between fluorescence and phosphorescence.
State three photophysical processes that can be related to the effects of incident radiation on a molecule in its ground state. Consider that radiation can give rise to fluorescent emission, but not phosphorescent emission.
Chapter 9 Solutions
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