Which brand in each of the following pairs has the greater ionic character? msp; a . Na — F or Na — I b . Li — — Cl or Cs — Cl c . Ca − S or C — 0 d . Mg — N or Mg — P
Which brand in each of the following pairs has the greater ionic character? msp; a . Na — F or Na — I b . Li — — Cl or Cs — Cl c . Ca − S or C — 0 d . Mg — N or Mg — P
Which brand in each of the following pairs has the greater ionic character?
msp;
a
.
Na
—
F or Na
—
I
b
.
Li
—
—
Cl or Cs
—
Cl
c
.
Ca
−
S or C
—
0
d
.
Mg
—
N or Mg
—
P
Expert Solution
Interpretation Introduction
(a)
Interpretation:
Among the given pair of bonds, the bond that possesses the greater ionic character is to be identified.
Concept Introduction:
The ability that is possessed by an atom to attract the bonding pair of electrons towards itself is known as electronegativity. The electronegativity decreases while going down the group and increases while moving left to right in the period.
In ionic compounds, the bonding is formed by the complete transfer of the electrons between the atoms to achieve the stable electron configuration like the noble gases. The higher electronegativity difference between two atoms of a compound corresponds to the greater ionic character of the compound.
Answer to Problem 19QAP
Among the given pair of bonds, the bond that possesses the greater ionic character is Na−F.
Explanation of Solution
The given pair of bonds is Na−F and Na−I.
The electronegativity value of sodium is 0.9.
The electronegativity value of fluorine is 4.0.
The electronegativity value of iodine is 2.5.
The difference in the electronegativity values for Na−F bond is,
Differenceinelectronegativity for Na−F bond=4.0−0.9=3.1
The difference in the electronegativity values for Na−I bond is,
Differenceinelectronegativity for Na−I bond=2.5−0.9=1.6
The difference in the electronegativity values for Na−F bond is 3.1 and for Na−I bond is 1.6.
Thus, the difference in the electronegativity values for Na−F bond is higher than the difference in the electronegativity values for Na−I bond. Hence, Na−F bond possesses the greater ionic character than Na−I bond.
Expert Solution
Interpretation Introduction
(b)
Interpretation:
Among the given pair of bonds, the bond that possesses the greater ionic character is to be identified.
Concept Introduction:
The ability that is possessed by an atom to attract the bonding pair of electrons towards itself is known as electronegativity. The electronegativity decreases while going down the group and increases while moving left to right in the period.
In ionic compounds, the bonding is formed by the complete transfer of the electrons between the atoms to achieve the stable electron configuration like the noble gases. The higher electronegativity difference between two atoms of a compound corresponds to the greater ionic character of the compound.
Answer to Problem 19QAP
Among the given pair of bonds, the bond that possesses the greater ionic character is Ca−O.
Explanation of Solution
The given pair of bonds is Ca−S and Ca−O.
The electronegativity value of calcium is 1.0.
The electronegativity value of sulfur is 2.5.
The electronegativity value of oxygen is 3.5.
The difference in the electronegativity values for Ca−S bond is,
Differenceinelectronegativity for Ca−S bond=2.5−1.0=1.5
The difference in the electronegativity values for Ca−O bond is,
Differenceinelectronegativity for Ca−O bond=3.5−1.0=2.5
The difference in the electronegativity values for Ca−O bond is 2.5 and for Ca−S bond is 1.5.
Thus, the difference in the electronegativity values for Ca−O bond is higher than the difference in the electronegativity values for Ca−S bond. Hence, Ca−O bond possesses the greater ionic character than Ca−S bond.
Expert Solution
Interpretation Introduction
(c)
Interpretation:
Among the given pair of bonds, the bond that possesses the greater ionic character is to be identified.
Concept Introduction:
The ability that is possessed by an atom to attract the bonding pair of electrons towards itself is known as electronegativity. The electronegativity decreases while going down the group and increases while moving left to right in the period.
In ionic compounds, the bonding is formed by the complete transfer of the electrons between the atoms to achieve the stable electron configuration like the noble gases. The higher electronegativity difference between two atoms of a compound corresponds to the greater ionic character of the compound.
Answer to Problem 19QAP
Among the given pair of bonds, the bond that possesses the greater ionic character is Cs−Cl.
Explanation of Solution
The given pair of bonds is Li−Cl and Cs−Cl.
The electronegativity value of chlorine is 3.0.
The electronegativity value of lithium is 1.0.
The electronegativity value of cesium is 0.7.
The difference in the electronegativity values for Li−Cl bond is,
Differenceinelectronegativity for Li−Cl bond=3.0−1.0=2.0
The difference in the electronegativity values for Cs−Cl bond is,
Differenceinelectronegativity for Cs−Cl bond=3.0−0.7=2.3
The difference in the electronegativity values for Li−Cl bond is 2.0 and for Cs−Cl bond is 2.3.
Thus, the difference in the electronegativity values for Cs−Cl bond is higher than the difference in the electronegativity values for Li−Cl bond. Hence, Cs−Cl bond possesses the greater ionic character than Li−Cl bond.
Expert Solution
Interpretation Introduction
(d)
Interpretation:
Among the given pair of bonds, the bond that possesses the greater ionic character is to be predicted.
Concept Introduction:
The ability that is possessed by an atom to attract the bonding pair of electrons towards itself is known as electronegativity. The electronegativity decreases while going down the group and increases while moving left to right in the period.
In ionic compounds, the bonding is formed by the complete transfer of the electrons between the atoms to achieve the stable electron configuration like the noble gases. The higher electronegativity difference between two atoms of a compound corresponds to the greater ionic character of the compound.
Answer to Problem 19QAP
Among the given pair of bonds, the bond that possesses the greater ionic character is Mg−N.
Explanation of Solution
The given pair of bonds is Mg−N and Mg−P.
The electronegativity value of magnesium is 1.2.
The electronegativity value of nitrogen is 3.0.
The electronegativity value of phosphorus is 2.1.
The difference in the electronegativity values for Mg−N bond is,
Differenceinelectronegativity for Mg−N bond=3.0−1.2=1.8
The difference in the electronegativity values for Mg−P bond is,
Differenceinelectronegativity for Mg−P bond=2.1−1.2=0.9
The difference in the electronegativity values for Mg−N bond is 1.8 and for Mg−P bond is 0.9.
Thus, the difference in the electronegativity values for Mg−N bond is higher than the difference in the electronegativity values for Mg−P bond. Hence, Mg−N bond possesses the greater ionic character than Mg−P bond.
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The inductive effect (+I and -I) in benzene derivatives, does it guide ortho, meta or para?
19.57 Using one of the reactions in this chapter, give the correct starting material (A-L)
needed to produce each structure (a-f). Name the type of reaction used.
(b)
ہ مرد
(d)
HO
(c)
དང་ ་་ཡིན་ད་དང་
(f)
HO
Br
B
D
of
oli
H
J
Br
K
C
人
↑
Inductive effect (+I and -I) in benzene derivatives.
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