Chemical Bonding and Molecular Structure MCQ Questions & Answers in Inorganic Chemistry | Chemistry
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41.
The compound with no dipole moment is
A
methyl chloride
B
carbon tetrachloride
C
methylene chloride
D
chloroform
Answer :
carbon tetrachloride
TIPS/Formulae :
i) Dipole moment is vector quantity. When vector sum of all dipoles in molecule will be zero, then molecule will not have net dipole moment.
(ii) NOTE: For net dipole moment to be equal to zero, all the atoms attached to central atom must be identical and geometry must be regular.
∴ Carbon tetrachloride having regular geometry and identical atoms attached to bonds has zero dipole moment.
42.
$$CaO$$ and $$NaCl$$ have the same crystal structure
and approximately the same ionic radii. If $$U$$ is the lattice energy of $$NaCl,$$ the approximate lattice energy of $$CaO$$ is
A
$$\frac{U}{2}$$
B
$$U$$
C
$$4\,C$$
D
$$2\,U$$
Answer :
$$4\,C$$
$${\text{Lattice energy}} = \frac{{{\text{Product of charges}}}}{{{\text{interionic distance}}}}$$
In $$NaCl$$ the product of charges $$ = 1 \times 1;$$ In $$CaO$$ product of charges $$ = 2 \times 2 = 4$$ while the inter ionic distance is almost same in both. Thus lattice energy of $$CaO$$ is almost four times the lattice energy of $$NaCl.$$
43.
Which molecule/ion out of the following does not contain unpaired electrons?
44.
The maximum possible number of hydrogen bonds a water molecule can form is
A
$$2\,$$
B
$$4$$
C
$$3$$
D
$$1$$
Answer :
$$4$$
$${H_2}O$$ molecule can form four hydrogen bonds per molecule, two via lone pairs and two via hydrogen atoms.
45.
Which of the following species is paramagnetic?
A
$$O_2^{2 - }$$
B
$$NO$$
C
$$CO$$
D
$$C{N^ - }$$
Answer :
$$NO$$
The molecular orbital configuration of $$NO$$ is
$$KK{\left( {\sigma 2s} \right)^2}{\left( {\mathop \sigma \limits^* 2s} \right)^2}{\left( {\sigma 2{p_x}} \right)^2}$$ $${\left( {\pi 2{p_y}} \right)^2}{\left( {\pi 2{p_z}} \right)^2}{\left( {\mathop \pi \limits^* 2{p_y}} \right)^1}$$
So, $$NO$$ is paramagnetic because it contains one unpaired electron.
46.
Which of the following angle corresponds to $$s{p^2}$$ hybridisation?
A
$${90^ \circ }$$
B
$${120^ \circ }$$
C
$${180^ \circ }$$
D
$${109^ \circ }$$
Answer :
$${120^ \circ }$$
The angle corresponds to $$s{p^2}$$ hybridisation, triangular planar is $${120^ \circ }.$$
47.
In an octahedral structure, the pair of $$d$$ orbitals involved in $${d^2}s{p^3} $$ - hybridisation is
A
$${d_{{x^2} - {y^2}}},{d_{{z^2}}}$$
B
$${d_{xz}},{d_{{x^2} - {y^2}}}$$
C
$${d_{{z^2}}},{d_{xz}}$$
D
$${d_{xy}},{d_{yz}}$$
Answer :
$${d_{{x^2} - {y^2}}},{d_{{z^2}}}$$
In the formation of $${d^2}s{p^3}$$ hybrid orbitals, two $$\left( {n - 1} \right)d$$ - orbitals of $${{\text{e}}_g}$$ set, i.e. $$\left( {n - 1} \right){d_{{z^2}}}$$ and $$\left( {n - 1} \right){d_{{x^2} - {y^2}}}$$ orbitals, one $$ns$$ and three $$np\left( {n{p_x},n{p_y}\,{\text{and}}\,n{p_z}.} \right)$$ orbitals combine together.
48.
Which of the following molecules has two $$sigma$$ $$\left( \sigma \right)$$ and two $$pi$$ $$\left( \pi \right)$$ bonds?