BCl has higher stability than TlCl3, because -

1. The +2 oxidation state of Tl is more stable than the +2 oxidation state of B
2. The +2 oxidation state of B is more stable than the +2 oxidation state of Tl
3. The +3 oxidation state of B is more stable than the +3 oxidation state of Tl
4. The +3 oxidation state of Tl is more stable than the +3 oxidation state of B

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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Boron trifluoride behaves as a Lewis acid because -

1. Boron trifluoride is electron-rich.

2. Boron trifluoride is electron-deficient.

3. Boron trifluoride is highly stable.

4. None of these.

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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The correct statement among the following regarding behavior of BCI3 and CCI4 in water is -

1. BCI 3  readily undergoes hydrolysis while  CCI 4  completely resists hydrolysis.
2. CCI 4   readily undergoes hydrolysis while  BCI 3  completely resists hydrolysis.
3. Both  BCI 3  and  CCI 4  readily undergo hydrolysis.
4. Neither  BCI 3  nor  CCI 4  undergo hydrolysis.

Subtopic:  Compounds of Carbon, Preparations, Properties & Uses |
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Boric acid is a-

1. Protic acid.

2. Weak monobasic acid.

3. Lewis acid.

4. Both '2' and '3'

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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The effect of heating Boric acid at 370 K or above is -

1. Orthoboric acid changes to metaboric acid.

2. Metaboric acid changes to boric oxide.

3. Both '1' and '2'

4. Neither '1' nor '2'

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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The shapes of BF3 and BH4- and the hybridization of boron in these species are respectively -

1. BF3 - triangular geometry, sp2BH4-- tetrahedral, sp3

2. BF3 - tetrahedral, sp2BH4- - triangular geometry, sp3

3.  BF3 - tetrahedral, sp3BH4- - triangular geometry, sp3

4. BF3 - tetrahedral, sp2 ; BH4- - triangular geometry, sp2

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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Reaction(s) that justify the amphoteric nature of aluminum is-

1. 2Al(s) + 6HCl(aq) 2Al+3(aq) + 6Cl-(aq) + 3H2(g)

2. 2Al(s) + 2NaOH(aq) + 6H2O(l)  2Na[Al(OH)4]-(aq) +3H2(g)

3. Both '1' and '2'

4. Neither '1' nor '2'

Subtopic:  Boron Family- Preparations, Properties & Uses |
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The electron-deficient compound among the following is -

1. SiCl4

2. BCl3

3. PCl3

4. ICl

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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The hybridization of carbon in (a) CO32- (b) diamond (c) graphite is respectively-

1. sp2sp3sp2

2. sp2sp3sp3

3. sp3sp3sp2

4. sp3sp2sp3

Subtopic:  Compounds of Carbon, Preparations, Properties & Uses |
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The B–F bond lengths in BF3 (130 pm) and BF4-(143 pm) differ because of-

1. Presence of triple bond character in BF3

2. Resonance in BF4-

3. Presence of a double bond character in BF3

4. Presence of a double bond character in BF4-

Subtopic:  Compounds of Boron- Preparations, Properties & Uses |
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