381. In silicon dioxide

A there are double bonds between silicon and oxygen atoms
B silicon atom is bonded to two oxygen atoms
C each silicon atom is surrounded by two oxygen atoms and each oxygen atom is bonded to two silicon atoms
D each silicon atom is surrounded by four oxygen atoms and each oxygen atom is bonded to two silicon atoms.
Answer :   each silicon atom is surrounded by four oxygen atoms and each oxygen atom is bonded to two silicon atoms.
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382. A metal $$X$$ reacts with aqueous $$NaOH$$  solution to form $$Y$$ and a highly inflammable gas. Solution $$Y$$ is heated and $$C{O_2}$$  is poured through it. $$Z$$ precipitates out and $$N{a_2}C{O_3}$$  is formed. $$Z$$ on heating gives $$A{l_2}{O_3}.$$  Identify $$X, Y$$ and $$Z.$$
$$X$$ $$Y$$ $$Z$$
(a) $$Al$$ $$NaAl{O_2}$$ $$Al{\left( {OH} \right)_3}$$
(b) $$A{l_2}{O_3}$$ $$NaAl{O_2}$$ $$A{l_2}C{O_3}$$
(c) $$A{l_2}{O_3}$$ $${\left[ {N{a_2}Al{O_2}} \right]^ + }O{H^ - }$$ $$Al{\left( {OH} \right)_3}$$
(d) $$Al$$ $$Al{\left( {OH} \right)_3}$$ $$A{l_2}{O_3}$$

A (a)
B (b)
C (c)
D (d)
Answer :   (a)
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383. Phosphorous acid on heating gives the following products : \[4{{H}_{3}}P{{O}_{3}}\xrightarrow{\Delta }3{{H}_{3}}P{{O}_{4}}+P{{H}_{3}}\]
The above reaction is an example of

A oxidation
B thermal decomposition
C disproportionation
D reduction
Answer :   disproportionation
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384. Aluminium chloride exists as dimer, $$A{l_2}C{l_6}$$  in solid state as well as in solution of non-polar solvents such as benzene. When dissolved in water, it gives

A $${\left[ {Al{{\left( {OH} \right)}_6}} \right]^{3 - }} + 3HCl$$
B $${\left[ {Al{{\left( {{H_2}{O}} \right)}_6}} \right]^{3 + }} + 3C{l^ - }$$
C $$A{l^{3 + }} + 3C{l^ - }$$
D $$A{l_2}{O_3} + 6HCl$$
Answer :   $${\left[ {Al{{\left( {{H_2}{O}} \right)}_6}} \right]^{3 + }} + 3C{l^ - }$$
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385. Which of the following statements are incorrect?
(i) Dry slaked lime reacts with $$C{l_2}$$  to give calcium chlorate.
(ii) With excess chlorine ammonia forms nitrogen trichloride.
(iii) Sulphur reacts with $$C{l_2}$$  to give $$SC{l_4}.$$
(iv) With hot and cone. $$NaOH,C{l_2}$$   gives sodium chlorate.

A (i) and (ii)
B (i) and (iii)
C (ii) and (iii)
D (ii) and (iv)
Answer :   (i) and (iii)
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386. $$NaB{H_4} + {I_2} \to X + Y + Z$$
\[B{{F}_{3}}+NaH\xrightarrow{450\,K}X+P\]
$$B{F_3} + LiAl{H_4} \to X + Q + R$$
$$X, Y, Z, P, Q$$    and $$R$$  in the reactions are
$$X$$ $$Y$$ $$Z$$ $$P$$ $$Q$$ $$R$$
(a) $$N{a_4}{B_4}{O_7}$$ $$NaI$$ $$HI$$ $$HF$$ $$LiF$$ $$Al{F_3}$$
(b) $${B_2}{H_6}$$ $$NaI$$ $${H_2}$$ $$NaF$$ $$LiF$$ $$Al{F_3}$$
(b) $${B_2}{H_6}$$ $$B{H_3}$$ $$NaI$$ $${B_3}{N_3}{H_6}$$ $$A{l_2}{F_6}$$ $$Al{F_3}$$
(c) $$B{H_3}$$ $${B_2}{H_6}$$ $${H_2}$$ $${B_3}{N_3}{H_6}$$ $$LiF$$ $$Al{F_3}$$

A (a)
B (b)
C (c)
D (d)
Answer :   (b)
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387. In the following reaction sequence in aqueous solution, the species $$X,Y\,{\text{and}}\,Z,$$   respectively, are
\[{{S}_{2}}O_{3}^{2-}\xrightarrow{A{{g}^{+}}}\underset{\begin{smallmatrix} \text{clear} \\ \text{solution} \end{smallmatrix}}{\mathop{X}}\,\xrightarrow{A{{g}^{+}}}\underset{\begin{smallmatrix} \text{white} \\ \text{precipitate } \end{smallmatrix}}{\mathop{Y}}\,\]       \[\xrightarrow{\text{with time }}\underset{\text{black precipitate }}{\mathop{Z}}\,\]

A $${\left[ {Ag{{\left( {{S_2}{O_3}} \right)}_2}} \right]^{3 - }},A{g_2}{S_2}{O_3},A{g_2}S$$
B $${\left[ {Ag{{\left( {{S_2}{O_3}} \right)}_3}} \right]^{5 - }},A{g_2}S{O_3},A{g_2}S$$
C $${\left[ {Ag{{\left( {S{O_3}} \right)}_2}} \right]^{3 - }},A{g_2}{S_2}{O_3},Ag$$
D $${\left[ {Ag{{\left( {S{O_3}} \right)}_3}} \right]^{3 - }},A{g_2}S{O_4},Ag$$
Answer :   $${\left[ {Ag{{\left( {{S_2}{O_3}} \right)}_2}} \right]^{3 - }},A{g_2}{S_2}{O_3},A{g_2}S$$
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388. In graphite, electrons are

A localised on each $$C$$-atom
B localised on every third $$C$$-atom
C spread out between the structure
D Both (B) and (C)
Answer :   Both (B) and (C)
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389. An aqueous solution of sodium carbonate absorbs $$NO$$  and $$N{O_2}$$  to give

A $$C{O_2} + NaN{O_3}$$
B $$C{O_2} + NaN{O_2}$$
C $$NaN{O_2} + CO$$
D $$NaN{O_3} + CO$$
Answer :   $$NaN{O_2} + CO$$
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390. Which of the following is the key step in the manufacture of sulphuric acid ?

A Burning of sulphur or sulphide ores in air to generate $$S{O_2}.$$
B Conversion of $$S{O_2}$$  to $$S{O_3}$$  by the reaction with oxygen in presence of catalyst.
C Absorption of $$S{O_3}$$  in $${H_2}S{O_4}$$  to give oleum.
D Both (B) and (C).
Answer :   Conversion of $$S{O_2}$$  to $$S{O_3}$$  by the reaction with oxygen in presence of catalyst.
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