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 Multiple Choice QuestionsMultiple Choice Questions

71.

Carbon cannot reduce Fe2O3 to Fe at a temperature below 983 K because

  • free energy change for the formation of CO is more negative than that of Fe2O3

  • CO is thermodynamically more stable than Fe2O3

  • carbon has higher affinity towards oxygen than iron

  • iron has higher affinity towards oxygen than carbon


72.

Which one of the following is a covalent crystal?

  • Rock salt

  • Ice

  • Quartz

  • Dry ice


73.

The percentage of p-character of the hybrid orbitals in graphite and diamond are respectively

  • 50 and 75

  • 67 and 75

  • 33 and 75

  • 33 and 25


74.

An alkali metal hydride (NaH) reacts with diborane in. A to give a tetrahedral compound B which is extensively used as reducing agent in organic synthesis. The compounds A and B respectively are

  • C2H6 and C2H5Na

  • CH3COCH3 and B3N3H6

  • C6H6 and NaBH4

  • (C2H5)2O and NaBH4


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75.

The correct statement is

  • BF3 is the strongest Lewis acid among the other boron halides

  • BI3 is the weakest Lewis acid among the other boron halides

  • there is maximum pπ- pπ back boinding in BF3

  • there is minimum pπ- pπ back boinding in BF3


76.

The hybridisation of C in diamond, graphite and ethyne is in the order.

  • sp3, sp, sp2

  • sp3, sp2, sp

  • sp, sp2, sp3

  • sp2, sp3, sp


77.

The formula of mineral borax is :

  • Na2B4O7

  • Na2B4O7.4H2O

  • Na2B4O7.5H2O

  • Na2B4O7.10H2O


78.

The electronegativities of C, N, Si and P are in the order of

  • P < Si<C < N

  • Si <P < C<N

  • P < Si < N < C

  • Si <P < N <C


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79.

Addition of mineral acid to an aqueous solution of borax, the following compound is formed

  • pyroboric acid

  • boron hydride

  • meta boric acid

  • orthoboric acid


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80.

Which of the following equations correctly represents the standard heat of formation (Hf°H) of methane ?

  • C (diamond) + 4H (g) → CH4 (g)

  • C (diamond) + 2H2 (g) → CH4 (g)

  • C (graphite) + 2H2 (g) → CH4 (g)

  • C (graphite) + 4H (g) → CH4 (g)


C.

C (graphite) + 2H2 (g) → CH4 (g)

Since, graphite is the standard state of carbon and hydrogen is found in form of H2

Therefore, standard heat of formation of methane is

C (graphite) + 2H2 (g) → CH4 (g)


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