Chemical Bonding and Molecular Structure MCQ Questions & Answers in Inorganic Chemistry | Chemistry
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361.
Among the following compounds the one that is polar and has the central atom with $$s{p^2}$$ hybridisation is
A
$${H_2}C{O_3}$$
B
$$Si{F_4}$$
C
$$B{F_3}$$
D
$$HCl{O_2}$$
Answer :
$${H_2}C{O_3}$$
$${H_2}C{O_3}$$ and $$B{F_3}$$ both have triangular planar structure
$$B{F_3}$$ is symmetrical
$$\therefore \,\mu = 0$$ hence non polar, $${H_2}C{O_3}$$ is not symmetrical hence polar in nature.
362.
Among the following orbital bonds, the angle is minimum between
A
$$s{p^3}\,{\text{bonds}}$$
B
$${p_x}\,\,{\text{and}}\,{p_y} - {\text{orbitals}}$$
When $${p_x}$$ and $${p_y}$$ form bond, then the bond angle is minimum and it is only $${90^ \circ }.$$ NOTE
Bond angle in $$s{p^3}$$ bonds, $$H - O - H$$ in water and in $$sp$$ bonds are $${109^ \circ }28,{180^ \circ }$$ and $${180^ \circ }$$ respectively.
363.
Polarity in a molecule and hence the dipole moment depends primarily on electronegativity of the constituent atoms and shape of a molecule. Which of the following has the highest dipole moment?
A
$$C{O_2}$$
B
$$HI$$
C
$${H_2}O$$
D
$$S{O_2}$$
Answer :
$${H_2}O$$
Thus, $${H_2}O$$ has highest dipole moment.
364.
The bond dissociation energy of $$B - F\,\,{\text{in}}\,\,{\text{B}}{{\text{F}}_3}$$ is $$646\,\,kJ\,\,mo{l^{ - 1}}$$ whereas that of $$C - F\,\,{\text{in}}\,\,C{F_4}\,\,{\text{is}}\,\,515\,kJ\,\,mo{l^{ - 1}}.\,\,$$ The correct reason for higher $$B - F$$ bond dissociation energy as compared to that of $$C - F$$ is
A
stronger $$\sigma $$ bond between $$B\,{\text{and}}\,F\,\,{\text{in}}\,\,B{F_3}$$ as compared to that between $$C\,{\text{and}}\,F\,\,{\text{in}}\,\,C{F_4}.$$
B
significant $$p\pi - p\pi $$ interaction between $$B\,{\text{and}}\,F\,\,{\text{in}}\,\,B{F_3}$$ whereas there is no possibility of such interaction between $$C\,{\text{and}}\,F\,\,{\text{in}}\,\,C{F_4}.$$
C
lower degree of $$p\pi - p\pi $$ interaction between $$B\,{\text{and}}\,F\,\,{\text{in}}\,\,B{F_3}$$ than that between $$C\,{\text{and}}\,F\,\,{\text{in}}\,\,C{F_4}.$$
D
smaller size of $$B - {\text{atom}}$$ as compared to that of $$C - {\text{atom}}$$
Answer :
significant $$p\pi - p\pi $$ interaction between $$B\,{\text{and}}\,F\,\,{\text{in}}\,\,B{F_3}$$ whereas there is no possibility of such interaction between $$C\,{\text{and}}\,F\,\,{\text{in}}\,\,C{F_4}.$$
NOTE : The delocalised $$p\pi - p\pi \,$$ bonding between filled $$p - {\text{orbital}}$$ of $$F$$ and vacant $$p - {\text{orbital}}$$ of $$B$$ leads to shortening of $$B - F$$ bond length which results in higher bond dissociation energy of the $$B - F$$ bond.
365.
The given structures I, II and III of carbonate ion represent :
A
hybrid structures
B
isomeric structures
C
canonical structures
D
dipole structures
Answer :
canonical structures
The structures represent canonical or resonating structures of carbonate ion.
366.
Which of the correct increasing order of lone pair of electrons on the central atom?
A
$$I{F_7} < I{F_5} < Cl{F_3} < Xe{F_2}$$
B
$$I{F_7} < Xe{F_2} < Cl{F_2} < I{F_5}$$
C
$$I{F_7} < Cl{F_3} < Xe{F_2} < I{F_5}$$
D
$$I{F_7} < Xe{F_2} < I{F_5} < Cl{F_3}$$
Answer :
$$I{F_7} < I{F_5} < Cl{F_3} < Xe{F_2}$$
The number of lone pairs of electrons on central atom in various given species are
$$\eqalign{
& {\rm{Species}}\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,{\rm{Number of lone}} \cr
& \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,{\rm{pairs on central}} \cr
& \,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,{\rm{atom}} \cr
& I{F_7}\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,nil \cr
& I{F_5}\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,1 \cr
& Cl{F_3}\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,2 \cr
& Xe{F_2}\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,3 \cr
& {\rm{Thus the correct increasing order is}} \cr
& \mathop {I{F_7}}\limits_0 < \mathop {I{F_5}}\limits_1 < \mathop {Cl{F_3}}\limits_2 < \mathop {Xe{F_2}}\limits_3 \cr} $$
367.
Which of the following molecules contains covalent and coordinate bonds?
A
$$CC{l_4}$$
B
$${H_2}S{O_4}$$
C
$$NaCl$$
D
$$Mg{\left( {OH} \right)_2}$$
Answer :
$${H_2}S{O_4}$$
\[{{H}_{2}}S{{O}_{4}};H-O-\underset{\begin{smallmatrix}
\downarrow \\
O
\end{smallmatrix}}{\overset{\begin{smallmatrix}
O \\
\uparrow
\end{smallmatrix}}{\mathop{S}}}\,-O-H\]
368.
Which types of bonds are present between two carbon atoms in acetylene molecule?
A
Two $$sigma$$ bonds and one $$pi$$ bond
B
Three $$sigma$$ bonds
C
One $$sigma$$ bond and two $$pi$$ bonds
D
Three $$pi$$ bonds
Answer :
One $$sigma$$ bond and two $$pi$$ bonds
In acetylene molecule, triple bond between two carbon atoms is formed by one $$sigma$$ and two $$pi$$ bonds.
369.
Which of the following is non-polar?
A
$$S{O_2}$$
B
$$C{O_2}$$
C
$${H_2}O$$
D
$$N{H_3}$$
Answer :
$$C{O_2}$$
Since the dipoles are equal and acting in opposite directions. Therefore, the net dipole moment is zero.
370.
Dipole moment of $${H_2}O$$ is $$1.85\,D.$$ If the bond angle is $${105^ \circ }$$ and $$O - H$$ bond length is $$0.94\mathop {\text{A}}\limits^{\text{o}} ,$$ what is the magnitude of charge on the
oxygen atom in water molecule?