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183 questions
Chemistry/Paper 2/Chemical Bonding
CAIEAS Level9701-as · Paper 2

Chemical Bonding

183 questions· page 1 of 19

Q12023 May/Jun·P228 partsEasy
(a)(i)

State the type of bonding present in magnesium and in sodium chloride.

bonding in magnesium

bonding in sodium chloride

(a)(ii)

Explain the difference in the melting points of magnesium and sodium chloride.

(a)(iii)

Explain the difference in the melting points of phosphorus and sulfur in terms of structure and bonding.

(b)(i)

Define electronegativity.

(b)(ii)

Explain why electronegativity increases across a period.

(b)(iii)

Name the strongest intermolecular force that exists between NH3(l)\text{NH}_3(\text{l}) molecules.

(b)(iv)

Draw a diagram to show the formation of the strongest intermolecular force between two molecules of NH3(l)\text{NH}_3(\text{l}).

Include any relevant lone pairs of electrons and dipoles.

(b)(v)

The melting points of ice and ammonia are shown in Table 1.2.

Table 1.2

solidmelting point/K
ice273
ammonia195

Suggest two reasons for the difference in the melting points of ice and ammonia.

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Q12017 Oct/Nov·P224 partsMedium-Easy
(a)

Predict the shapes of AlCl₃ and PCl₃.

Draw diagrams to show the shapes, name the shapes and state the bond angles.

(b)(i)

Explain, in terms of structure and bonding, why the melting point of SiCl₄ is much lower than that of NaCl.

(b)(ii)

Explain why the melting point of SiCl₄ is higher than that of PCl₃.

(b)(iii)

Draw the 'dot-and-cross' diagram of a molecule of SiCl₄.
Show outer electrons only.

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Q12013 Oct/Nov·P214 partsEasy
(a)

Complete the table below by using simple hydrogen-containing compounds. One example has been included.

number of bond pairsnumber of lone pairsshape of moleculeformula of a molecule with this shape
30trigonal planarBH3\text{BH}_3
40
31
22
(b)(i)

Draw a ‘dot-and-cross’ diagram of the TeF6\text{TeF}_6 molecule, showing outer electrons only.

(b)(ii)

What will be the shape of the TeF6\text{TeF}_6 molecule?

(b)(iii)

What is the FTeF\text{F}-\text{Te}-\text{F} bond angle in TeF6\text{TeF}_6?

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Q12013 Oct/Nov·P224 partsMedium-Easy
(a)

Complete the table below by using simple hydrogen-containing compounds. One example has been included.

number of bond pairsnumber of lone pairsshape of moleculeformula of a molecule with this shape
30trigonal planarBH₃
40
31
22
(b)(i)

Draw a ‘dot-and-cross’ diagram of the TeF₆ molecule, showing outer electrons only.

(b)(ii)

What will be the shape of the TeF₆ molecule?

(b)(iii)

What is the F–Te–F bond angle in TeF₆?

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Q12013 Oct/Nov·P235 partsMedium-Easy
(a)

In the boxes below, draw the ‘dot-and-cross’ diagram of a molecule of each of these compounds. Show outer electrons only.
State the shape of each molecule.

(b)(i)

Explain, using ammonia as the example, the meaning of the term bond polarity.

(b)(ii)

Explain why the ammonia molecule is polar.

(b)(iii)

State one physical property of ammonia which is caused by its polarity.

(c)

When ammonia gas is mixed with hydrogen chloride, white, solid ammonium chloride is formed.

State each type of bond that is present in one formula unit of ammonium chloride and how many of each type are present.
You may draw diagrams.

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Q3(c)2012 Oct/Nov·P223MMedium-Easy
(c)

Ammonia is a weak base which forms salts containing the ammonium ion.

Describe, with the aid of an equation, the formation and structure of the ammonium ion. You should use displayed formulae in your answer.

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Q12010 May/Jun·P216 partsMedium-Easy
(a)

Chlorine, Cl2\text{Cl}_2, is a gas at room temperature whereas bromine, Br2\text{Br}_2, is a liquid under the same conditions.

Explain these observations.

(b)

The gases nitrogen, N2\text{N}_2, and carbon monoxide, CO\text{CO}, are isoelectronic, that is they have the same number of electrons in their molecules.

Suggest why N2\text{N}_2 has a lower boiling point than CO\text{CO}.

(c)(i)

a co-ordinate bond

(c)(ii)

a covalent bond

(c)(iii)

a lone pair

(d)

Hydrogen cyanide, HCN\text{HCN}, is a gas which is also isoelectronic with N2\text{N}_2 and with CO\text{CO}.
Each molecule contains a strong triple bond with the following bond energies.

bondbond energy / kJ mol1\text{kJ mol}^{-1}
CN-\text{C}\equiv\text{N} in HCN\text{HCN}890
NN\text{N}\equiv\text{N}994
CO\text{C}\equiv\text{O}1078

Although each compound contains the same number of electrons and a strong triple bond in its molecule, CO\text{CO} and HCN\text{HCN} are both very reactive whereas N2\text{N}_2 is not.

Suggest a reason for this.

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Q32010 May/Jun·P232 partsMedium-Easy
(a)(vi)

the element in Period 3 (Na to Ar) with the greatest electrical conductivity

.............

(b)

From the section of the Periodic Table above, identify two elements whose hydrides form hydrogen bonds between their molecules.

............. and .............

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Q22013 Oct/Nov·P212 partsEasy
(a)

What is the HCH\text{H}-\text{C}-\text{H} bond angle at the terminal =CH2\text{=CH}_2 group in propene?

(b)(ii)

When cyclopropane reacts with chlorine, three different compounds with the molecular formula C3H4Cl2\text{C}_3\text{H}_4\text{Cl}_2 can be formed.

Draw displayed structures of each of these three compounds.

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Q22013 Oct/Nov·P222 partsMedium-Easy
(a)

What is the H–C–H bond angle at the terminal =CH₂ group in propene?

(b)(ii)

When cyclopropane reacts with chlorine, three different compounds with the molecular formula C₃H₄Cl₂ can be formed.

Draw displayed structures of each of these three compounds.

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