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Chemistry · Class 12 Science

Ch 11The Solid State — Class 12 Chemistry, concept-first.

In Class XI you learnt that matter exists in three physical states — solid, liquid and gas. Which of these is the most stable for a given substance, at a particular temperature and pressure, is decided by the tug-of-war between two opposing factors:

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Key concepts

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Chapter contents

The NCERT structure, section by section. Open a section to see its questions, then read the concept-first solution.

1.1

General Characteristics of Solid State

In Class XI you learnt that matter exists in three physical states — solid, liquid and gas. Which of these is the most stable for a given substance, at a particular temperature and pressure, is decide…

1.2

Amorphous and Crystalline Solids

Solids are classified as crystalline or amorphous depending on the nature of the order in which their constituent particles are arranged.

1.3

Classification of Crystalline Solids

Most solid substances are crystalline rather than amorphous. Metals such as iron, copper and silver; non-metals such as sulphur, phosphorus and iodine; and compounds such as sodium chloride, zinc sulp…

1.3.1

Molecular Solids

In molecular solids the constituent particles are molecules. They are sub-divided into three types according to the kind of attraction between the molecules.

1.3.2

Ionic Solids

In ionic solids the constituent particles are ions. The solid is a three-dimensional arrangement of cations and anions held together by strong coulombic (electrostatic) forces.

1.3.3

Metallic Solids

A metallic solid can be pictured as an orderly collection of positive metal ions immersed in a "sea" of free electrons.

1.3.4

Covalent or Network Solids

When covalent bonds form continuously between adjacent atoms throughout a crystal, the whole crystal becomes effectively one enormous molecule.

1.4

Crystal Lattices and Unit Cells

Think of tiles laid to cover a floor: they generate a repeating pattern. If you mark the same point on every tile (say its centre) and look only at the marked points, you get a regular set of points —…

1.4.1

Primitive and Centred Unit Cells

Unit cells fall into two broad categories — primitive and centred.

1.5

Number of Atoms in a Unit Cell

A crystal lattice is built from an enormous number of unit cells, and every lattice point holds one constituent particle.

1.5.1

Primitive Cubic Unit Cell

A primitive (simple) cubic unit cell has atoms only at its eight corners. As Fig. 1.12 shows, each corner atom is shared between eight adjacent unit cells — four in the same layer and four in the laye…

1.5.2

Body-Centred Cubic Unit Cell

A body-centred cubic (bcc) unit cell has an atom at each of the eight corners and, in addition, one atom right at the body centre. Fig.

1.5.3

Face-Centred Cubic Unit Cell

A face-centred cubic (fcc) unit cell has atoms at all eight corners and also at the centre of each of the six faces. As Fig.

1.6

Close Packed Structures

In solids the particles pack together as tightly as possible, leaving the least empty space. To understand how, we treat the particles as identical hard spheres and build the structure up in stages.

1.6.1

Formula of a Compound and Number of Voids Filled

When particles close-pack into a ccp or hcp structure, two kinds of voids are created. The number of octahedral voids equals the number of close-packed particles (), while the number of tetrahedral vo…

1.7

Packing Efficiency

However the constituent particles are arranged, some empty space always remains in the form of voids. The packing efficiency is the percentage of the total space that is actually occupied by the parti…

1.7.1

Packing Efficiency in hcp and ccp Structures

Both close-packed arrangements — hcp and ccp — are equally efficient, so it is enough to work out the efficiency for the ccp (fcc) structure.

1.7.2

Efficiency of Packing in Body-Centred Cubic Structures

In a body-centred cubic (bcc) structure the central atom touches the two corner atoms lying along the body diagonal (Fig. 1.25). Let the edge length be .

1.7.3

Packing Efficiency in Simple Cubic Lattice

In a simple cubic lattice the atoms sit only at the corners of the cube and touch each other along the edge (Fig. 1.26). So the edge length and the radius are related by:

1.8

Calculations Involving Unit Cell Dimensions

From the dimensions of a unit cell we can calculate its volume, and if the density of the substance is known we can find the mass of the atoms in the cell.

1.9

Imperfections in Solids

Even though crystalline solids possess long range order, real crystals are not perfect. A solid is usually an aggregate of many small crystals, and these carry defects — especially when crystallisatio…

1.9.1

Types of Point Defects

Point defects are of three types: (i) stoichiometric, (ii) impurity and (iii) non-stoichiometric defects.

1.10

Electrical Properties

Solids show an astonishing spread of electrical conductivities — covering about 27 orders of magnitude, from roughly to . On this basis solids are grouped into three types:

1.10.1

Conduction of Electricity in Metals

A conductor may carry current either by the movement of electrons or by the movement of ions. Metallic conductors belong to the first category and electrolytes to the second.

1.10.2

Conduction of Electricity in Semiconductors

In a semiconductor the gap between the valence band and the conduction band is small (Fig. 1.33c), so a few electrons can jump into the conduction band and give some conductivity.

1.11

Magnetic Properties

Every substance has some magnetic character, and its origin lies in the electrons. Each electron behaves like a tiny magnet, with a magnetic moment arising from two motions (Fig. 1.35):

Exercises

+Show 26 questions26 questions
  1. 1.1Define the term 'amorphous'. Give a few examples of amorphous solids.Free
  2. 1.2What makes a glass different from a solid such as quartz? Under what conditions could quartz be converted into glass?Free
  3. 1.3Classify each of the following solids as ionic, metallic, molecular, network (covalent) or amorphous. (i) Tetra phosphorus decoxide ($P_4O_{…Free
  4. 1.4(i) What is meant by the term 'coordination number'? (ii) What is the coordination number of atoms: (a) in a cubic close-packed structure? (…Preview
  5. 1.5How can you determine the atomic mass of an unknown metal if you know its density and the dimension of its unit cell? Explain.Preview
  6. 1.6'Stability of a crystal is reflected in the magnitude of its melting points'. Comment. Collect melting points of solid water, ethyl alcohol,…Preview
  7. 1.7How will you distinguish between the following pairs of terms: (i) Hexagonal close-packing and cubic close-packing? (ii) Crystal lattice and…Preview
  8. 1.8How many lattice points are there in one unit cell of each of the following lattice? (i) Face-centred cubic (ii) Face-centred tetragonal (ii…Preview
  9. 1.9Explain (i) The basis of similarities and differences between metallic and ionic crystals. (ii) Ionic solids are hard and brittle.Preview
  10. 1.10Calculate the efficiency of packing in case of a metal crystal for (i) simple cubic (ii) body-centred cubic (iii) face-centred cubic (with t…Preview
  11. 1.11Silver crystallises in fcc lattice. If edge length of the cell is $4.07\times10^{-8}$ cm and density is 10.5 g cm$^{-3}$, calculate the atom…Preview
  12. 1.12A cubic solid is made of two elements P and Q. Atoms of Q are at the corners of the cube and P at the body-centre. What is the formula of th…Preview
  13. 1.13Niobium crystallises in body-centred cubic structure. If density is 8.55 g cm$^{-3}$, calculate atomic radius of niobium using its atomic ma…Preview
  14. 1.14If the radius of the octahedral void is r and radius of the atoms in close-packing is R, derive relation between r and R.Preview
  15. 1.15Copper crystallises into a fcc lattice with edge length $3.61\times10^{-8}$ cm. Show that the calculated density is in agreement with its me…Preview
  16. 1.16Analysis shows that nickel oxide has the formula $Ni_{0.98}O_{1.00}$. What fractions of nickel exist as $Ni^{2+}$ and $Ni^{3+}$ ions?Preview
  17. 1.17What is a semiconductor? Describe the two main types of semiconductors and contrast their conduction mechanism.Preview
  18. 1.18Non-stoichiometric cuprous oxide, $Cu_2O$ can be prepared in laboratory. In this oxide, copper to oxygen ratio is slightly less than 2:1. Ca…Preview
  19. 1.19Ferric oxide crystallises in a hexagonal close-packed array of oxide ions with two out of every three octahedral holes occupied by ferric io…Preview
  20. 1.20Classify each of the following as being either a p-type or a n-type semiconductor: (i) Ge doped with In (ii) Si doped with B.Preview
  21. 1.21Gold (atomic radius = 0.144 nm) crystallises in a face-centred unit cell. What is the length of a side of the cell?Preview
  22. 1.22In terms of band theory, what is the difference (i) between a conductor and an insulator (ii) between a conductor and a semiconductor?Preview
  23. 1.23Explain the following terms with suitable examples: (i) Schottky defect (ii) Frenkel defect (iii) Interstitials and (iv) F-centres.Preview
  24. 1.24Aluminium crystallises in a cubic close-packed structure. Its metallic radius is 125 pm. (i) What is the length of the side of the unit cell…Preview
  25. 1.25If NaCl is doped with $10^{-3}$ mol % of $SrCl_2$, what is the concentration of cation vacancies?Preview
  26. 1.26Explain the following with suitable examples: (i) Ferromagnetism (ii) Paramagnetism (iii) Ferrimagnetism (iv) Antiferromagnetism (v) 12-16 a…Preview

More questions

+Show 23 questions23 questions
  1. Q1Why are solids rigid?Free
  2. Q2Why do solids have a definite volume?Free
  3. Q3Classify the following as amorphous or crystalline solids: Polyurethane, naphthalene, benzoic acid, teflon, potassium nitrate, cellophane, p…Free
  4. Q4Refractive index of a solid is observed to have the same value along all directions. Comment on the nature of this solid. Would it show clea…Preview
  5. Q5Classify the following solids in different categories based on the nature of intermolecular forces operating in them: Potassium sulphate, ti…Preview
  6. Q6Solid A is a very hard electrical insulator in solid as well as in molten state and melts at extremely high temperature. What type of solid…Preview
  7. Q7Ionic solids conduct electricity in molten state but not in solid state. Explain.Preview
  8. Q8What type of solids are electrical conductors, malleable and ductile?Preview
  9. Q9Give the significance of a 'lattice point'.Preview
  10. Q10Name the parameters that characterise a unit cell.Preview
  11. Q11Distinguish between (i) Hexagonal and monoclinic unit cells (ii) Face-centred and end-centred unit cells.Preview
  12. Q12Explain how much portion of an atom located at (i) corner and (ii) body-centre of a cubic unit cell is part of its neighbouring unit cell.Preview
  13. Q13What is the two dimensional coordination number of a molecule in square close-packed layer?Preview
  14. Q14A compound forms hexagonal close-packed structure. What is the total number of voids in 0.5 mol of it? How many of these are tetrahedral voi…Preview
  15. Q15A compound is formed by two elements M and N. The element N forms ccp and atoms of M occupy 1/3rd of tetrahedral voids. What is the formula…Preview
  16. Q16Which of the following lattices has the highest packing efficiency (i) simple cubic (ii) body-centred cubic and (iii) hexagonal close-packed…Preview
  17. Q17An element with molar mass $2.7\times10^{-2}$ kg mol$^{-1}$ forms a cubic unit cell with edge length 405 pm. If its density is $2.7\times10^…Preview
  18. Q18What type of defect can arise when a solid is heated? Which physical property is affected by it and in what way?Preview
  19. Q19What type of stoichiometric defect is shown by: (i) ZnS (ii) AgBrPreview
  20. Q20Explain how vacancies are introduced in an ionic solid when a cation of higher valence is added as an impurity in it.Preview
  21. Q21Ionic solids, which have anionic vacancies due to metal excess defect, develop colour. Explain with the help of a suitable example.Preview
  22. Q22A group 14 element is to be converted into n-type semiconductor by doping it with a suitable impurity. To which group should this impurity b…Preview
  23. Q23What type of substances would make better permanent magnets, ferromagnetic or ferrimagnetic. Justify your answer.Preview