
(a)
Interpretation:
The
Concept introduction:
The ionization energy in periodic table
In periodic table the ionization energy is increases from left to right in a period due to increasing effective nuclear charge and it decreases from top to bottom of a group due to size of the atom is increases and the force of the attraction between centre of the nucleus and outer most electrons is decreases.
(b)
Interpretation:
The electron affinity of given hypothetical elements X and Z have to be comparatively explained.
Concept introduction:
Electron affinity is well-known as the electron gain enthalpy. Electron gain enthalpy is the amount of energy released when an isolated gaseous atom accepts an electron to form a monovalent gaseous anion.
(c)
Interpretation:
The electron affinity of given hypothetical elements X and Z have to be comparatively explained.
Concept introduction:
The ionization energy in periodic table
In periodic table the ionization energy is increases from left to right in a period due to increasing effective nuclear charge and it decreases from top to bottom of a group due to size of the atom is increases and the force of the attraction between centre of the nucleus and outer most electrons is decreases.
Electron affinity:
Electron affinity is well-known as the electron gain enthalpy. Electron gain enthalpy is the amount of energy released when an isolated gaseous atom accepts an electron to form a monovalent gaseous anion.
(d)
Interpretation:
The electron affinity of given hypothetical elements X and Z have to be comparatively explained.
Concept introduction:
The ionization energy in periodic table
In periodic table the ionization energy is increases from left to right in a period due to increasing effective nuclear charge and it decreases from top to bottom of a group due to size of the atom is increases and the force of the attraction between centre of the nucleus and outer most electrons is decreases.
Electron affinity:
Electron affinity is well-known as the electron gain enthalpy. Electron gain enthalpy is the amount of energy released when an isolated gaseous atom accepts an electron to form a monovalent gaseous anion.

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Chapter 8 Solutions
Student Solutions Manual for Ebbing/Gammon's General Chemistry
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