Chapter 3 notes

Chemical Bonding

Textbook exercise solved short questions.

Short Questions

Exercise Short Questions

Q.1 What type of elements lose their outer electron easily and what type of elements gain electron easily?

Ans. Metals are the elements which prefer to lose their valence electrons and form cation (positively charged ion). So, they are electropositive in nature.

Non-metals are the elements which prefer to gain electrons from others and form anion (negatively charged ion). So, they are electronegative in nature.

Q.2 Why does lower molecular mass covalent compound exist as gases or low boiling liquids?

Ans. Low molecular mass covalent compounds exist as gases or have low boiling liquids because of their weak intermolecular forces make it easier for the molecule to separate and move apart.

Q.3 Give one example of an element which exists as a crystalline solid and it has covalent bonds between its atoms.

Ans. Diamond is an example of an element that exists as a crystalline solid and has covalent bonds in its atoms.

Q.4 Which property of metals makes them malleable and ductile?

Ans. Metals are malleable and ductile because of their ability to undergo plastic deformation without breaking. This property is due to the metallic bonding present in metals which allows the layers of metal atoms to slide over each other when a force is applied.

Q.5 Is Coordinate covalent bond a strong bond?

Ans. Coordinate covalent bonds are strong bonds but not stronger than covalent bond. In a coordinate covalent bond, the shared electron pair donated by one atom. This results in a strong bond because both electrons are held together tightly between the two atoms creating a stable molecular structure. This type of one sided sharing of electrons provides the strength which makes it a strong type of covalent bond.

Q.6 Write down dot and cross formula of HNO3.

Ans. Dot-cross formula of nitric acid is:

[Dot and cross diagram: the nitrogen atom is bonded to two oxygen atoms (one by a double bond, one by a coordinate bond) and to an O–H group through shared electron pairs.]

Illustration (added)
N O O O H double bond (4 shared e⁻) coordinate bond N→O O–H single bond
Schematic of the HNO₃ dot-and-cross structure: N shares a double bond with one O, a coordinate bond with another O, and a single bond with the O of the O–H group.

Practice Exercise Questions

Q.7 What types of elements form ionic bonds?

Ans. An ionic bond is formed between metals and non-metals. Metals are electropositive prefer to lose electrons and non-metals are electro-negative prefer to gain electrons.

Q.8 What are the conditions for ionic bond to be formed?

Ans. There should be large electronegativity difference between two atoms, allow them to transfer electrons, from one atom to another.

i. One atom should be metal (electro-positive) and other atom should be non-metal (electro negative) in nature.

ii. There should be strong electrostatic force of attraction between atoms to hold them together.

Q.9 What type of elements form covalent bond?

Ans. The non-metals elements show tendency of sharing electrons between them and form covalent bond.

Q.10 How covalent bond is different from an ionic bond?

Ans. In a covalent bond, atoms share electrons while in an ionic bond, one atom gives up electrons to another. Covalent bonds form between non-metals whereas, ionic bond form between metal & non-metal.

Q.11 Which compound is not able to form a coordinate covalent bond?

Ans. An ionic compound is not able to form a coordinate covalent bond.

Q.12 What type of atoms form metallic bond?

Ans. Metallic bonds consist of sea of mobile electrons with positive metal ions. They are present in elements which have loosely bound electrons that do not remain in the valence shell and leave the atom to form a sea of electrons. Such a structure is observed usually in atoms e.g., sodium and iron.

Q.13 Give a comparison of metallic bond with an ionic bond.

Ans.

PropertyMetallic BondIonic Bond
DefinitionA bond which has positively charged ions, bound together by the mobile electrons.A bond formed by the transfer of electrons from one atom (metal) to another (non-metal), resulting in ions.
NatureNon-directional; electrons are delocalized and shared across all atoms.Non-directional; electrostatic attraction occurs between specific positively and negatively charged ions.
FormationFound in pure metals and alloys.Found in compounds between metals and non-metals.
Electron BehaviorElectrons form a "sea of electrons" that move freely within the metal lattice.Electrons are transferred from the metal (which becomes a cation) to the non-metal (which becomes an anion).
Bond StrengthStrong due to the attraction between the positive metal ions and the sea of delocalized electrons.Strong due to the electrostatic forces between oppositely charged ions.
Electrical ConductivityHigh delocalized electrons allow metals to conduct electricity efficiently.Low in solid form; high when dissolved in water or molten, as ions become free to move.
Thermal ConductivityFree electrons transfer energy efficiently.Low; thermal conduction depends on ionic vibrations rather than free electrons.
Malleability/DuctilityHigh the delocalized electron cloud allows layers of atoms to slide over each other without breaking the bond.Low; ionic bonds are brittle, and shifting the lattice causes repulsion between like charges, leading to fracture.
ExamplesFound in metals like copper, gold, aluminum, and alloys like brass.Found in compounds like sodium chloride (NaCl) and magnesium oxide (MgO).

SLO Based Additional Short Questions

Why do atoms form chemical bonds?

Q.14 Why do atoms react?

Ans. Atoms react to form a chemical bond and achieve stability by acquiring inert gas electronic configuration.

Q.15 What is meant by duplet rule?

Ans. The attaining of two electrons in the outermost shell by sharing, by losing or by gaining electrons is called duplet rule. e.g. helium.

Q.16 What is meant by octet rule?

Ans. The attaining of eight electrons in the outermost shell by sharing, by losing or by gaining electrons is called octet rule. e.g. neon.

Q.17 Name different types of chemical bond.

Ans. Types of Bonds
We shall consider here three types of bonds.

i. Ionic bond
ii. Covalent bond
iii. Coordinate covalent bond

Q.18 Why do atoms follow duplet or octet rule?

Ans. Because they would like to lower their energy by completing their duplet or octet. For example, for sodium atom it is easy to lose one electron and stabilize itself than to gain seven electrons while completing its octet.

Q.19 Differentiate between Electropositive and Electronegative Elements.

Ans. Electropositive Elements:

i. Electropositive means tendency to lose electron to form cation.
ii. All metals are electropositive in nature.
iii. They have low ionization energy and low electronegativity.

Example:
Na → Na⁺ + 1e⁻
Mg → Mg²⁺ + 2e⁻

Electronegative Elements:

i. Electronegative means tendency to accept electron to form anion.
ii. All non-metals are electronegative in nature.
iii. They have high ionization energy and high electronegativity.

For example:
F + e⁻ → F⁻
O + 2e⁻ → O²⁻

Q.20 Why do atoms form chemical bonds?

Ans. Atoms have a tendency to decrease their energy. They can do this by combining with other atoms. It is a natural phenomenon because it increases the stability of atoms.

Q.21 How do atoms succeed in lowering their energy?

Ans. Atoms can lower their energy by forming chemical bonds with other atoms and to achieve more stable configuration with lower energy.

Q.22 When are atoms considered to be unstable?

Ans. The atoms having less than 2 or 8 electrons in their valence shells are unstable.

Chemical Bond

Q.23 Define electronic configuration.

Ans. The arrangement of electrons around the nucleus of an atom in shells and sub-shells is called electronic configuration.

Q.24 What is meant by a chemical bond?

Ans. A force of attraction between atoms that holds them together in a molecule is called a chemical bond. e.g. H – H (hydrogen molecule)

Q.25 What is the effect of attractive and repulsive forces in the formation of a chemical bond?

Ans. If attractive forces become dominant, the decrease in the energy of the system takes place, due to which chemical bond is formed. While, if repulsive forces become dominant, the increase in the energy of the system takes place, due to which no chemical bond is formed.

Ionic Bond

Q.26 Describe the applications of ionic compounds?

Ans. Conduction of ionic compounds in molten state and in form of an aqueous solution has been utilized to prepare many important elements and compounds.

For example, electrolysis of molten sodium chloride gives us sodium metal and chlorine gas. Similarly electrolysis of aqueous sodium chloride gives sodium hydroxide and chlorine gas.

Q.27 Define ionic bond with an example.

Ans. The bond formed by the complete transfer of electrons from one atom (electropositive) to another (electronegative) is called ionic bond. e.g. Formation of bond between sodium and chloride ions.

Q.28 Define ionic compounds and why these compounds are neutral?

Ans. Compounds that consist of ions joined by electrostatic forces are called ionic compounds. The total positive charge of the cations must be equal to the total negative charge of the anions. This is because ionic compounds are electrically neutral as a whole.

Q.29 Why do the ionic compounds high have melting and boiling points?

Ans. As ionic compounds are made up of positive and negative ions, there exist strong electrostatic forces of attraction between oppositely charged ions. So, a great amount of energy is required to break these forces.

Q.30 What is crystal lattice?

Ans. Ions are spherical and oppositely charged they can surround each other from all the sides, ionic bonds are non-directional. This arrangement of ions is called crystal lattice.

Q.31 Ionic compounds conduct electricity in solution or molten form. Why?

Ans. Ionic compounds in solid state are bad conductor of electricity because ions are tightly packed and unable to move, whereas in solution or molten form ions can move freely which make them good conductor of electricity.

Q.32 Ionic compounds are solids. Justify.

Ans. Ionic compounds have strong electrostatic forces of attraction between positively and negatively charged ions which holds them together in a three dimensional crystalline or solid form. e.g. sodium chloride (NaCl) is crystalline solid.

Q.33 Why are ionic compounds easily soluble in water?

Ans. Water has high dielectric constant that weakens the attraction between the ions of ionic compounds due to which they are easily soluble in water.

Covalent Bond

Q.34 Why covalent compounds have lower melting points than ionic compounds?

Ans. This is because ionic compounds involve breaking the ionic bond. Breaking the electrostatic forces between ions requires large amounts of energy. Thus, ionic compounds have high melting points and boiling points. Melting of covalent solids involves the breaking of intermolecular forces, which are much weaker than electrostatic forces. Thus, less energy is required to break the intermolecular forces between covalent molecule.

Q.35 What is meant by bonding electrons?

Ans. The valence electrons, which are involved in chemical bonding, are termed as bonding electrons. e.g. H• ×H

Q.36 What is meant by covalent bond?

Ans. The bond formed by the mutual sharing of electrons between non-metals is called covalent bond. Covalent bond is classified into three types.

• Single covalent bond
• Double covalent bond
• Triple covalent bond

Q.37 What is meant by single covalent bond? Give examples.

Ans. When one electron is contributed by each bonded atom, one bond pair is formed and it forms a single covalent bond. It is represented by (—). Examples: Molecules with single covalent bonds are hydrogen, (H—H), hydrochloric acid, (H—Cl).

Q.38 What is meant by double covalent bond? Give examples.

Ans. When each bonded atom contributes two electrons, two bond pairs are shared and a double covalent bond is formed. It is represented by (=).

e.g. A molecule with double covalent bond is oxygen, (O = O) ; or O2.

Q.39 What is a triple covalent bond? Explain with an example.

Ans. When each bonded atom contributes three electrons, three bond pairs are shared and a triple covalent bond is formed. It is indicated by (≡).

Example: molecules with triple covalent bonds are nitrogen (N2) and ethyne (C2H2). :N• + •N: ⟶ :N⦀N: or N≡N or N2

Q.40 Point out the type of covalent bonds in CH4, C2H4, N2 and O2

Ans.

i. CH4 has 4 Single covalent bond

ii. C2H4 has 1 Double covalent bond and 4 Single covalent bond.

iii. N2 has triple covalent bond   N ≡ N

iv. O2 has double covalent bond.   O = O

Q.41 Considering the electronic configuration of nitrogen atom, how many electrons are involved in bond formation and what type of covalent bond is formed?

Ans. The electronic configuration of nitrogen is N7= 1s², 2s², 2p³. The valence shell of nitrogen is deficient of three electrons. Thus two nitrogen atoms share their three valence electrons each to form a triple covalent bond with three pairs of electrons and six electrons as a total are shared, i.e., :N⦀N:

Formation of Covalent Compound

Q.42 How water molecule is formed?

Ans. A water molecule is formed when two hydrogen atoms share their electrons separately with the electrons of one oxygen atom.

Illustration (added)
O H H ⟶ O H H shared electron pairs (O–H)
Two hydrogen atoms each share one electron with oxygen, giving H₂O with two single covalent bonds.
Q.43 How carbon dioxide is formed?

Ans. A carbon dioxide molecule is formed when an atom of carbon shares its four electrons with two oxygen atoms. Each oxygen atom also shares two electrons. :O = C = O:

Coordinate Covalent Bond

Q.44 Define coordinate covalent bond.

Ans. A type of covalent bond in which the bond pair of electrons is donated by one of the bonded atoms only is called coordinate covalent or dative bond. Example: [H3O]⁺

Q.45 How is coordinate covalent bond formed in NH4⁺?

Ans. Nitrogen from ammonia molecule donates its lone pair of electrons to H⁺ in order to form a coordinate covalent bond.

Illustration (added)
H—N—H H | lone pair + H⁺ ⟶ H—N—H H | | H + the N→H bond uses the lone pair donated by nitrogen
Ammonia donates its lone pair to H⁺, forming the ammonium ion NH₄⁺ — a coordinate covalent bond.
Q.46 Differentiate between donor and acceptor atom.

Ans.

Donor atomAccepter atom
i. During the formation of coordinate covalent bond the atom which donate a lone pair of electron is called donor.
Example: In formation of NH4⁺, N is donor.
i. During the formation of coordinate covalent bond the atom which accept an electron pair is called acceptor.
Example: In formation of NH4⁺, H⁺ is accepter.
Q.47 Why is the BF3 electron deficient?

Ans. Boron has the electronic configuration as 1s² 2s² 2p¹. This means that it needs five more electrons to be stabilized. In BF3 it shares three electrons with three fluorine atoms and attains six electrons in its valence shell and still two electrons are required to complete octet. It still retains the tendency to gain two more electrons and therefore remains electron deficient.

Q.48 Draw Lewis dot and cross structure of ammonia molecules.

Ans. [Lewis structure: nitrogen at the centre with one lone pair, bonded to three hydrogen atoms by shared dot-and-cross electron pairs — H ו N(:) with H above and H below.]

Q.49 Draw Lewis dot and cross structure of nitrogen molecule.

Ans. :N⦀N: — each nitrogen keeps one lone pair and shares three electron pairs (dots from one atom, crosses from the other) forming the triple bond.

Q.50 How is coordinate covalent bond formed between NH3 and BF3?

Ans. [Diagram: the lone pair on nitrogen of H3N: is donated to boron of BF3, giving H3N → BF3.]

Q.51 Draw Lewis dot and cross structure of methane.

Ans. [Lewis structure: carbon at the centre sharing four dot-and-cross electron pairs with four hydrogen atoms — H•×CוH with H above and H below.]

Q.52 Draw Lewis dot and cross structure of ethyne.

Ans. H•×C⦀CוH — the two carbon atoms share three electron pairs (triple bond) and each carbon shares one pair with a hydrogen atom.

Q.53 What is meant by electronegative atom?

Ans. The atom which attract the bond pair of electrons more strongly than the other one in polar covalent bond formation will be called as more electronegative atom as compared to the other bonded atom. For example, in HCl molecule, Cl is more electronegative atom as compared to H atom.

Q.54 How hydronium ion (H3O⁺) is formed?

Ans. Acids provide protons (H⁺) when dissolved in water. This proton has an empty outer shell and can accept a pair of electrons present on the oxygen atom in water molecule. As a result of this, a hydronium on (H3O⁺) is formed.

Metallic Bond

Q.55 What is meant by metallic bond?

Ans. A bond formed between metal atoms (positively charged ions) due to mobile or free electrons is called metallic bond.

Illustration (added)
M⁺M⁺M⁺M⁺ M⁺M⁺M⁺M⁺ positive metal ions fixed in a lattice delocalized "sea" of mobile electrons Free electrons move throughout the lattice, binding the positive ions together.
Metallic bonding: fixed positive metal ions held together by a delocalized sea of mobile electrons.
Q.56 State the physical properties of metals.

Ans.

i. Metals have high melting and boiling points.
ii. They are good conductor of heat and electricity.
iii. They are mostly solids, possess metallic luster and can be polished.
iv. They are hard, malleable and ductile.

Q.57 Metals are good conductor of electricity. Why?

Ans. Electricity is produced as a result of movement of free electrons. Metals are good conductor of electricity as they have free or mobile electrons which move freely in the spaces between atoms of a metal.

Q.58 What do you mean by malleable and ductile?

Ans. Malleable means a material that can be hammered into sheets and ductile means a material that can be drawn into wires.

Q.59 What are the uses of metals?

Ans. Metals are extensively used in many industries. They are used in machinery, automobiles, railways, air crafts, rockest, construction industry, electronics industry, jewellery, electric wires and many more.

Electropositive Character of Metals

Q.60 What is electropositivity? Explain with an example.

Ans. Electropositivity is the property of a metal element to readily lose its valence electrons and gain a positive charge. Metals are highly electropositive elements, e.g. Sodium atom can lose 1 electron to from a positive ion.

Electronegative Character of Non-Metals

Q.61 What is meant by electronegative character of Non-metals?

Ans. Non-metals have an affinity towards electrons. They tend to gain electrons and become negatively charged ions called anions. They are therefore, named as electronegative elements. Non-metals readil react with metals forming ionic bonds.

Compare the properties of ionic and covalent compounds

Q.62 Compare the properties of ionic and covalent compound.

Ans.

IonicCovalent
i. In ionic compounds oppositely charged ions are properly arranged to give a crystalline structure. As a whole the compound is neutral. There exists a strong electrostatic force between their ions.i. Covalent compounds mostly exist as discrete neutral molecules. There exists a strong electrostatic attraction between the nuclei and the shared electrons.
ii. Ionic compounds are usually solids having high melting and boiling points. The melting point of sodium chloride is 801°C because it is difficult to break the strong electrostatic forces of attraction between the oppositely charged ions.ii. Covalent compounds are made of two or more non-metals. Lower molecular mass covalent compounds are gases or low boiling liquids. High molecular mass covalent compounds exist as solids. Generally, they have lower melting and boiling points.

Intermolecular Forces of Attraction

Q.63 Define intermolecular forces.

Ans. A weak force of attraction formed between two molecules is called intermolecular force.

e.g: i) Dipole-Dipole forceattraction
ii) Hydrogen Bonding

Q.64 Why HCl has dipole-dipole forces of attraction?

Ans. In HCl chlorine being more electronegative atom attracts the shared pair of electron and partial negative charge is created on chlorine and in turn partial positive charge on hydrogen.

When partial positive and partial negative charges exist at different poles in a molecule, the adjacent molecules will arrange themselves in such a way that negative end of that molecule comes near to positive end of other molecule. It results a net force of attraction called dipole-dipole interaction.

Q.65 Why are dipole forces of attraction not found in halogen molecules?

Ans. Halogen molecules form a non-polar covalent bond between them. In order to make non-polar bonds, no electronegativity difference of elements is required, due to which dipole forces do not develop in halogen molecules.

Q.66 What types of attractive forces exist between HCl molecules?

Ans. Weak intermolecular forces exist between HCl molecules, i.e. Dipole - Dipole forces between HCl molecule.

Q.67 What is meant by hydrogen bonding?

Ans. A bond formed between partially positive charge hydrogen atom of one molecule and partially negative charge atom (F, O or N) of the other molecule is called hydrogen bonding. e.g. HF, H2O, NH3 etc.

Q.68 Draw a structure of water molecules showing hydrogen bonding.

Ans. [Structure: chains of H—O(H) molecules linked by dotted hydrogen bonds between the δ⁺ hydrogen of one molecule and the δ⁻ oxygen of the next.]

Illustration (added)
H—O H H—O H H—O H H—O H hydrogen bond δ⁺ on H, δ⁻ on O — dotted lines show the intermolecular hydrogen bonds
Water molecules link through hydrogen bonds: the δ⁺ hydrogen of one molecule attracts the δ⁻ oxygen of the neighbouring molecule.

Nature of Bonding and Properties

Q.69 What do you know about coal?

Ans. Coal is the amorphous form of carbon whereas diamond and graphite are its crystalline forms. Coal is used as a fuel in electricity generating plants.

Q.70 Why diamond is considered so hard?

Ans. Diamond is an allotrope of carbon in which the carbon atoms are arranged in a diamond cubic crystal lattice. Due to the presence of strong covalent bonds and a rigid tetrahedral structure, diamond is the hardest material ever discovered.

Illustration (added)
C C C C C each carbon bonds to 4 others by strong covalent bonds, repeating in every direction
Each carbon atom in diamond is covalently bonded to four other carbons in a rigid, repeating tetrahedral lattice.
Q.71 What is the structure of Graphite?

Ans. In graphite, each carbon atom is linked with 3 other carbon atoms by a single covalent bond resulting in the hexagonal ring arranged in a layer. It has a 2-dimensional layers structure. The 4 valency of the carbon atom is satisfied by weak van der waal's forces between 2 layers.

Q.72 Give two uses of Graphite.

Ans. (i) Due to its stability in high temperatures and chemical inertness, graphite is used in many refractory items such as carbon refractory bricks.

(ii) The electrodes of graphite are used in electrical metallurgical furnaces. It is used as an anode in electrolytic processes.

Q.73 Enlist two uses of diamonds.

Ans. Diamonds, due to their exceptional hardness, are highly valued in industries.

i. Diamond tipped glass cutters are used to make clean cuts in glass.
ii. Diamond-tipped drill bits are used to drill through hard rocks in mining operation.

Constructed Response Questions

Q.1 (Ex Q. 3 (i)) Why HF is a liquid while HCl is a gas?

Ans. Hydrofluoric acid (HF) is a liquid at room temperature, while hydrochloric acid (HCl) is a gas. The primary reason for this difference lies in the nature of the intermolecular forces present in each substance.

• Intermolecular Forces: HF molecules can form strong hydrogen bonds due to the highly electronegative fluorine atom. These hydrogen bonds lead to stronger attractions between HF molecules, resulting in a higher boiling point and allowing it to exist as a liquid at room temperature.

• Molecular Structure: HCl is a polar molecule but does not form hydrogen bonds as strong as those in HF. The intermolecular forces in HCl are primarily dipole-dipole interactions and London dispersion forces, which are weaker than hydrogen bonds. As a result, HCl has a lower boiling point and exists as a gas at room temperature.

Q.2 (Ex Q. 3 (ii)) Why covalent compounds are generally not soluble in water?

Ans. Covalent compounds are generally not soluble in water because they do not dissociate into ions when they are dissolved in water. Water is a polar molecule; it has partial positive charge on one end and a partial negative charge on the other. Ionic compounds dissolve in water because water molecules surround and separate the ions due to their charges. However, covalent compounds do not have ions to interact with water molecules. So, they do not dissolve easily in water.

Q.3 (Ex Q. 3 (iii)) How do metals conduct heat?

Ans. Metals conduct heat because of their free moving electrons. These electrons can move throughout the metal structure carrying heat energy from one part of the metal to another. This ability of electrons to move freely in metals allows them to transfer heat efficiently making metals good conductors of heat.

Q.4 (Ex Q. 3 (iv)) How many oxides does nitrogen form. Write down the formula of oxides.

Ans. Nitrogen forms several oxides including:

• Nitrogen monoxide (NO)
• Nitrogen dioxide (NO2)
• Dinitrogen trioxide (N2O3)
• Nitrous oxide (N2O)
• Dinitrogen pentaoxide (N2O5)

Q.5 (Ex Q. 3 (v)) What will happen if NaBr is treated with AgNO3 in water?

Ans. When sodium bromide is treated with silver nitrate in water, a chemical reaction will occur. The silver nitrate will react with the sodium bromide to form silver bromide which is insoluble in water and will precipitate out of the solution as a white solid. The other product of the reaction will be sodium nitrate which will remain dissolved in water.

NaBr + AgNO3 → AgBr + NaNO3

Q.6 (Ex Q. 3 (vi)) Why does iodine exist as a solid while Cl2 exist as a gas?

Ans. Iodine exists as a solid while chlorine (Cl2) exists as a gas due to differences in their molecular structures and intermolecular forces.

Iodine (I2) is larger molecule than chlorine. The larger size of iodine molecule leads to stronger vander Waals forces (dispersion forces) between them. These stronger intermolecular forces require more energy to overcome that's why, iodine is a solid at room temperature.

Chlorine (Cl2) consists of smaller molecules with weaker vander Waals forces. This allows chlorine to remain in a gaseous state at room temperature because the energy is sufficient for the molecules to move freely and not be held together as a solid.

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