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. BCI3  readily undergoes hydrolysis while  CCI4  completely resists hydrolysis.
2. CCI4  readily undergoes hydrolysis while  BCI3  completely resists hydrolysis.
3. Both  BCI3  and  CCI4  readily undergo hydrolysis.
4. Neither  BCI3  nor  CCI4  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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