Chemistry

The p-Block Elements.

Question:

Assertion (A): Silicones are water repelling in nature.
Reason (R): Silicones are organosilicon polymers, which have (-R2SiO-) as repeating unit.
(a) Both A and R are true and R is the correct explanation of A.
(b) Both A and R are true but R is not the correct explanation of A.
(c) Both A and R are not correct. ‘
(d) A is not correct but R is correct.

Answer:

b) Silicones are organosilicon polymers and they are hydrophobic in nature. Silicones neither react nor absorb water molecules.

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The p-Block Elements.

Q 1.

Describe two similarities and two dissimilarities between B and Al.

Q 2.

A certain salt X, gives the following results.
(i) Its aqueous solution is alkaline to litmus.
(ii) It swells up to a glassy material Y on strong heating.
(iii) When cone.H2SO4is added to a hot solution of X, white crystal of an acid Z separates out.

Q 3.

What is the basic building unit of all silicates?

Q 4.

How is excessive content of C02 responsible for global warming?

Q 5.

Give one method for industrial preparation and one for laboratory preparation of CO and C02 each.

Q 6.

Discuss the pattern of variation in the oxidation states of
(i) B to Tl (ii) C to Pb.

Q 7.

Explain why the following compounds behave as Lewis acids?
(i) BC13
(ii) AICI3

Q 8.

Why does borontrifluori.de behave as a Lewis acid?

Q 9.

Explain what happens when boric acid is heated.

Q 10.

CO2 is gas while SiO2 is solid at room temperature. Give reason.

Q 11.

The+1 oxidation state in group 13 and +2 oxidation state in group 14 becomes more and more stable with increasing atomic number. Explain.

Q 12.

Suggest a reason as to why CO is poisonous.

Q 13.

Assertion (A): If aluminium atoms replace a few silicon atoms in three dimensional network of silicon dioxide, the overall structure acquires a negative charge.
Reason (R): Aluminium is trivalent while silicon is tetravalent.
(a) Both A and R are true and R is the correct explanation of A.
(b) Both A and R are true but R is not the correct explanation of A.
(c) Both A and R are not correct.
(d) A is not correct but R is correct.

Q 14.

Elements of group 14
(a) exhibit oxidation state of +4 only (b) exhibit oxidation state of +2 and +4
(c) form  M2-and M4+ ion (d) form M2+ and M4+ ions.

Q 15.

What are Fullerenes ? How are they prepared ?

Q 16.

Give reason why boron and aluminium tend to form covalent compounds.

Q 17.

In the structure of diborane
(a) all hydrogen atoms lie in one plane and boron atoms lie in a plane perpendicular to this plane.
(b) 2 boron atoms and 4 terminal hydrogen atoms lie in the same plane and 2 bridging hydrogen atoms lie in the perpendicular plane.
(c) 4 bridging hydrogen atoms and boron atoms lie in one plane and two terminal hydrogen atoms lie in a plane perpendicular to this plane.
(d) all the atoms are in the same plane.

Q 18.

Out of CCl4 and SiCl4 which one react with water and why?

Q 19.

What is meant by catenation? Why does ‘C show the property of catenation to maximum extent?

Q 20.

Give reasons:
(a) Why do Boron halides form addition compound with NH3?
(b) The tendency for catenation decreases down the group in Group 14.
(c) PbO2 is a stronger oxidising agent than SnO2.

Q 21.

How is boron obtained from borax? Give chemical equations with reaction conditions.

Q 22.

The geometry of a complex species can be understood from the knowledge of type of hybridisation of orbitals of central atom. The hybridisation of orbitals of central atom in [B(OH)4]- and the geometry of the complex are respectively
(a) sp3, tetrahedral
(b) sp3, square planar                                                    
(c) sp3d2, octahedral                                                            
(d) dsp2, square planar

Q 23.

Write the resonance structure of CO32- and HCO3  .

Q 24.

What is dry ice? Why is it so called?

Q 25.

What happens when
(i) Quick lime is heated with coke?
(ii) Carbon monoxide reacts with Cl2?

Q 26.

(a) Why do Boron halides form addition compound with NH3?
(b) Assign appropriate reason for each of the following observations:-
(i) Anhydrous AlCl3 is used as a catalyst in many organic reactions.
(ii) No form of elemental silicon is comparable to graphite.

Q 27.

Catenation, i.e., linking •of similar atoms depends on size and electronic  configuration of atoms. The tendency of catenation in Group 14 elements  follows the order
(a) C > Si > Ge > Sn
(b) C » Si > Ge = Sn
(c) Si > C > Sn > Ge
(d) Ge > Sn > Si > C

Q 28.

A compound X, of boron reacts with NH3 on heating to give another compound Y which is called inorganic benzene. The compound X can be prepared by treating BF3 with lithium aluminium hydride. The compounds X and Y are represented by the formulas.
(a) B2H6,B3N3H6
(b) B203, B3N3H6
(c) BF3, B3N3H6
(d) B3N3H6 , B2H6

Q 29.

Which of the following statements are correct?
(a) Fullerenes have dangling bonds.
(b) Fullerenes are cage-like molecules.
(c) Graphite is thermodynamically most stable allotrope of carbon.
(d) Graphite is slippery and hard and therefore used as a dry lubricant in

Q 30.

Explain why is there a phenomenal decrease in ionization enthalpy from carbon to silicon.

Q 31.

How would you explain the lower atomic radius of Ga as compared to Al?

Q 32.

Why does boron form stable electron deficient compounds?

Q 33.

Why do boron halides form addition compounds with NH3?

Q 34.

What happens when boric acid is heated?

Q 35.

What is producer gas ?

Q 36.

Mention the state of hybridisation of B in BH4.

Q 37.

Give the chemical reactions as an evidence for each of the following observations.
(i) Tin (II) is a reducing agent whereas lead (II) is not.
(ii) Gallium (I) undergoes disproportionation reaction.

Q 38.

Ionisation enthalpy (∆ tH1 kJ mol-1) for the elements of Group 13 follows the order.
(a) B > A1 > Ga > In > T1
(b) B < A1 < Ga< In (c) B < A1 > Ga < In < T1                                        
(d) B > A1 < Ga > In < T1

Q 39.

The reason for small radius of Ga compared to Al is_________ .
(a) poor screening effect of d and f orbitals
(b) increase in nuclear charge
(c) presence of higher orbitals
(d) higher atomic number

Q 40.

Match the species given in Column I with properties given in Column II.

Column I Column II
(i) Diborane (a) Used as a flux for soldering metals
(ii) Gallium                                         ‘ (b) Crystalline form of silica
(iii) Borax (c) Banana bonds
(iv) Aluminosilicate (d) Low melting, high boiling, useful for measuring high temperatures
(v) Quartz (e) Used as catalyst in petrochemical industries

 

Q 41.

What are electron deficient compounds? Are BCl3 and SiCl4 electron deficient species? Explain.

Q 42.

The linear shape of C02 is due to  ______ .
(a) sp3 hybridisation of carbon
(b) sp hybridisation of carbon
(c) pπ-pπ bonding between carbon and oxygen
(d) sp2 hybridisation of carbon

Q 43.

If a trivalent atom replaces a few silicon atoms in three dimensional network of silicon dioxide, what would be the type of charge on overall structure?

Q 44.

Match the species given in Column I with the properties mentioned in Column II.

Column I Column II
(i) BF4 (a) Oxidation state of central atom is +4
(ii) A1C13 (b) Strong oxidising agent
(iii) SnO (c) Lewis acid
(iv) Pb02 (d) Can be further oxidised
  (e) Tetrahedral shape

Q 45.

Assertion (A): Silicones are water repelling in nature.
Reason (R): Silicones are organosilicon polymers, which have (-R2SiO-) as repeating unit.
(a) Both A and R are true and R is the correct explanation of A.
(b) Both A and R are true but R is not the correct explanation of A.
(c) Both A and R are not correct. ‘
(d) A is not correct but R is correct.

Q 46.

How can you explain higher stability of BCl3 as compared to TlCl3?

Q 47.

Aluminium trifluoride is insoluble in anhydrous HF but dissolves on addition of NaF. Aluminium trifluoride precipitates out of the resulting solution when gaseous BF3 is bubbled through. Give reason.

Q 48.

What happens when
(a) Borax is heated strongly
(b) Boric acid is added to water
(c) Aluminium is treated with dilute NaOH
(d) BF3 is reacted with ammonia?

Q 49.

Boric acid is polymeric due to
(a) its acidic nature (b) the presence of hydrogen bonds
(c) its monobasic nature (d) its geometry

Q 50.

The type of hybridisation of boron in diborane is
(a) sp (b) sp2(c) sp3(d) dsp2