Pictures
Image index
Every figure from the original books, where it sits in the PDF, and how the explained chapter handles it. Precise diagrams are redrawn as clean graphics. Places that would benefit from a real picture have an image slot.
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 1.1 | Sketch of Reiaan’s room | p. 3 | Redrawn |
| Fig. 1.2 | Structure of the coordinate plane | p. 4 | Redrawn |
| Fig. 1.3 | No text caption | p. 4 | Redrawn |
| Fig. 1.4 | No text caption | p. 6 | Redrawn |
| Fig. 1.5 | No text caption | p. 7 | Redrawn |
| Fig. 1.6 | No text caption | p. 9 | Redrawn |
| Fig. 1.7 | No text caption | p. 9 | Redrawn |
| Fig. 1.8 | No text caption | p. 10 | Redrawn |
| Fig. 1.9 | No text caption | p. 11 | Redrawn |
Image slots on our page
| Save as | What it shows, and a prompt |
|---|---|
img/scene-tactile-map.png | Shalini's touch map: pins mark the corners, and wool threads trace the walls and furniture. Prompt: Warm, friendly flat illustration for a school textbook: an older Indian teenage girl sits at a table beside her younger brother, who is visually impaired and wears dark glasses. He is smiling and tracing thick coloured wool threads stretched between pins on a square grid board, which forms a simple floor plan of a bedroom. Soft daylight, clean shapes, no text or letters anywhere in the image. |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 2.1 | No text caption | p. 1 | Needs a picture |
| Fig. 2.2 | No text caption | p. 2 | Redrawn |
| Fig. 2.3 | A linear expression as an input-output process | p. 5 | Redrawn |
| Fig. 2.4 | A growing pattern of square tiles | p. 6 | Redrawn |
| Fig. 2.5 | The straight line y = 2x + 1 | p. 13 | Redrawn |
| Fig. 2.6 | No text caption | p. 14 | Redrawn |
| Fig. 2.7 | No text caption | p. 14 | Redrawn |
| Fig. 2.8 | No text caption | p. 15 | Redrawn |
| Fig. 2.9 | No text caption | p. 16 | Redrawn |
| Fig. 2.10 | No text caption | p. 17 | Redrawn |
| Fig. 2.11 | No text caption | p. 18 | Redrawn |
| Fig. 2.12 | A | p. 18 | Redrawn |
| Fig. 2.13 | No text caption | p. 19 | Redrawn |
| Fig. 2.14 | No text caption | p. 20 | Redrawn |
Image slots on our page
| Save as | What it shows, and a prompt |
|---|---|
img/fig-2-1.png | Book Fig. 2.1: the red boxes (4 pens each) and blue boxes (5 pencils each) in the shop. |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 3.1 | Representation of the prime number tally | p. 2 | Chapter not written yet |
| Fig. 3.2 | No text caption | p. 5 | Chapter not written yet |
| Fig. 3.3 | No text caption | p. 10 | Chapter not written yet |
| Fig. 3.4 | No text caption | p. 10 | Chapter not written yet |
| Fig. 3.5 | No text caption | p. 11 | Chapter not written yet |
| Fig. 3.6 | No text caption | p. 11 | Chapter not written yet |
| Fig. 3.7 | Some integers and rational numbers on a number line | p. 11 | Chapter not written yet |
| Fig. 3.8 | No text caption | p. 12 | Chapter not written yet |
| Fig. 3.9 | No text caption | p. 12 | Chapter not written yet |
| Fig. 3.11 | Constructing irrational lengths and | p. 16 | Chapter not written yet |
| Fig. 3.12 | No text caption | p. 17 | Chapter not written yet |
| Fig. 3.13 | No text caption | p. 23 | Chapter not written yet |
| Fig. 3.14 | which is referred to as the square root spiral. | p. 26 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 4.1 | No text caption | p. 2 | Chapter not written yet |
| Fig. 4.2 | Square of side (a + b) units | p. 2 | Chapter not written yet |
| Fig. 4.3 | A square of side a units | p. 7 | Chapter not written yet |
| Fig. 4.4 | A geometrical model representing the | p. 8 | Chapter not written yet |
| Fig. 4.5 | No text caption | p. 10 | Chapter not written yet |
| Fig. 4.6 | No text caption | p. 11 | Chapter not written yet |
| Fig. 4.7 | helps us to visualise two algebraic identities: | p. 12 | Chapter not written yet |
| Fig. 4.8 | Using algebra tiles to represent (2x + 3) × (3x + 1) | p. 13 | Chapter not written yet |
| Fig. 4.9 | A cube of edge a + b | p. 15 | Chapter not written yet |
| Fig. 4.10 | Representation of the identity | p. 16 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 5.1 | No text caption | p. 1 | Chapter not written yet |
| Fig. 5.2 | No text caption | p. 1 | Chapter not written yet |
| Fig. 5.3 | Circle, Centre A, Chord BC | p. 2 | Chapter not written yet |
| Fig. 5.4 | Circles through two points | p. 4 | Chapter not written yet |
| Fig. 5.5 | The circumcircle of triangle ABC | p. 5 | Chapter not written yet |
| Fig. 5.6 | Obtuse-angled triangle: Circumcentre O is outside the triangle | p. 6 | Chapter not written yet |
| Fig. 5.7 | Right-angled triangle: Circumcentre O is at the | p. 6 | Chapter not written yet |
| Fig. 5.8 | Chords and radii | p. 7 | Chapter not written yet |
| Fig. 5.9 | No text caption | p. 8 | Chapter not written yet |
| Fig. 5.10 | left arm meets point E. | p. 8 | Chapter not written yet |
| Fig. 5.11 | No text caption | p. 9 | Chapter not written yet |
| Fig. 5.12 | a line). | p. 10 | Chapter not written yet |
| Fig. 5.13 | A | p. 11 | Chapter not written yet |
| Fig. 5.14 | No text caption | p. 12 | Chapter not written yet |
| Fig. 5.16 | the midpoints of AB and DE). | p. 14 | Chapter not written yet |
| Fig. 5.17 | Major arc AYB and minor | p. 15 | Chapter not written yet |
| Fig. 5.19 | No text caption | p. 16 | Chapter not written yet |
| Fig. 5.21 | Angle subtended | p. 17 | Chapter not written yet |
| Fig. 5.22 | Angle subtended | p. 18 | Chapter not written yet |
| Fig. 5.23 | Angles subtended | p. 18 | Chapter not written yet |
| Fig. 5.24 | No text caption | p. 19 | Chapter not written yet |
| Fig. 5.25 | Points and the chord | p. 19 | Chapter not written yet |
| Fig. 5.26 | No text caption | p. 20 | Chapter not written yet |
| Fig. 5.27 | A. If D is inside the circle, extend AD to meet the circle at E; | p. 20 | Chapter not written yet |
| Fig. 5.28 | No text caption | p. 21 | Chapter not written yet |
| Fig. 5.29 | No text caption | p. 22 | Chapter not written yet |
| Fig. 5.30 | No text caption | p. 25 | Chapter not written yet |
| Fig. 5.31 | No text caption | p. 25 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 6.1 | Athletes at the start of 4 × 100 m relay race | p. 1 | Chapter not written yet |
| Fig. 6.2 | A | p. 2 | Chapter not written yet |
| Fig. 6.3 | No text caption | p. 2 | Chapter not written yet |
| Fig. 6.4 | Ratio of perimeter to side is 4:1 | p. 2 | Chapter not written yet |
| Fig. 6.5 | No text caption | p. 3 | Chapter not written yet |
| Fig. 6.6 | The Mesopotamian Hexagon-to-Circle comparison. | p. 4 | Chapter not written yet |
| Fig. 6.7 | Archimedes’ method utilising inscribed and circumscribed | p. 4 | Chapter not written yet |
| Fig. 6.8 | Two semicircles making | p. 8 | Chapter not written yet |
| Fig. 6.9 | Four quarter circles | p. 8 | Chapter not written yet |
| Fig. 6.10 | Length of an arc | p. 9 | Chapter not written yet |
| Fig. 6.11 | depicts a 400 m athletics track. You can see two straight | p. 9 | Chapter not written yet |
| Fig. 6.12 | equilateral, hence ∠CAB = 60° = | p. 11 | Chapter not written yet |
| Fig. 6.13 | length. (Try to answer this before | p. 11 | Chapter not written yet |
| Fig. 6.14 | No text caption | p. 12 | Chapter not written yet |
| Fig. 6.16 | Area of square and rectangle | p. 13 | Chapter not written yet |
| Fig. 6.17 | Area of a parallelogram. Here, A'B'C'D' is a copy of ABCD. | p. 14 | Chapter not written yet |
| Fig. 6.18 | No text caption | p. 14 | Chapter not written yet |
| Fig. 6.19 | The thin parallelogram | p. 14 | Chapter not written yet |
| Fig. 6.22 | 2 | p. 16 | Chapter not written yet |
| Fig. 6.23 | No text caption | p. 18 | Chapter not written yet |
| Fig. 6.24 | sq. units, the same as earlier. | p. 18 | Chapter not written yet |
| Fig. 6.25 | No text caption | p. 19 | Chapter not written yet |
| Fig. 6.26 | 2 | p. 19 | Chapter not written yet |
| Fig. 6.27 | The area of a 4-gon cannot be found only | p. 20 | Chapter not written yet |
| Fig. 6.28 | A cyclic 4-gon | p. 21 | Chapter not written yet |
| Fig. 6.29 | Isosceles trapezium | p. 21 | Chapter not written yet |
| Fig. 6.30 | Rectangle ABCD with | p. 24 | Chapter not written yet |
| Fig. 6.31 | No text caption | p. 25 | Chapter not written yet |
| Fig. 6.32 | Fig. 6.33 | p. 26 | Chapter not written yet |
| Fig. 6.34 | No text caption | p. 26 | Chapter not written yet |
| Fig. 6.36 | Area of a regular polygon = | p. 28 | Chapter not written yet |
| Fig. 6.37 | The slices can be rearranged to form a | p. 29 | Chapter not written yet |
| Fig. 6.38 | Sector of a circle | p. 29 | Chapter not written yet |
| Fig. 6.39 | Area of a | p. 30 | Chapter not written yet |
| Fig. 6.40 | Area of a quarter | p. 29 | Chapter not written yet |
| Fig. 6.41 | Area model of | p. 32 | Chapter not written yet |
| Fig. 6.42 | Trapezium: sides a and b, height h | p. 33 | Chapter not written yet |
| Fig. 6.43 | What fraction of the | p. 34 | Chapter not written yet |
| Fig. 6.45 | What fraction of | p. 34 | Chapter not written yet |
| Fig. 6.47 | Nine identical rectangles | p. 34 | Chapter not written yet |
| Fig. 6.48 | Lines from a vertex to | p. 35 | Chapter not written yet |
| Fig. 6.49 | A quarter circle and two | p. 35 | Chapter not written yet |
| Fig. 6.50 | the area of this flower. | p. 35 | Chapter not written yet |
| Fig. 6.51 | 4 | p. 35 | Chapter not written yet |
| Fig. 6.52 | Fig. 6.53: Two congruent circles, | p. 36 | Chapter not written yet |
| Fig. 6.55 | No text caption | p. 36 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 7.1 | Probabilities of picking a purple card | p. 4 | Chapter not written yet |
| Fig. 7.2 | Heads and tails of a coin | p. 6 | Chapter not written yet |
| Fig. 7.4 | A Jain Jñān-Chaupad̤ game | p. 7 | Chapter not written yet |
| Fig. 7.5 | Paper cup landing positions | p. 11 | Chapter not written yet |
| Fig. 7.7 | No text caption | p. 17 | Chapter not written yet |
| Fig. 7.8 | No text caption | p. 19 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 8.1 | The first five triangular numbers | p. 2 | Chapter not written yet |
| Fig. 8.2 | Can you explain the relationship? | p. 2 | Chapter not written yet |
| Fig. 8.3 | Growing pattern of squares | p. 7 | Chapter not written yet |
| Fig. 8.4 | Growing pattern of squares represented by a linear pattern | p. 9 | Chapter not written yet |
| Fig. 8.5 | No text caption | p. 11 | Chapter not written yet |
| Fig. 8.6 | A growing pattern of squares | p. 13 | Chapter not written yet |
| Fig. 8.7 | No text caption | p. 15 | Chapter not written yet |
| Fig. 8.9 | Points emerging from a GP do not lie on a straight line | p. 18 | Chapter not written yet |
| Fig. 8.10 | Points emerging from a GP arising out of the | p. 19 | Chapter not written yet |
| Fig. 8.11 | No text caption | p. 20 | Chapter not written yet |
| Fig. 8.12 | Stages 0, 1, 2 and 3 of the Sierpiński square carpet | p. 21 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 1.1 | A vegetable seller using a pan balance | p. 3 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 2.2 | Structure of a light microscope | p. 3 | Chapter not written yet |
| Fig. 2.3 | An electron microscope | p. 3 | Chapter not written yet |
| Fig. 2.4 | Electron micrograph of lower | p. 4 | Chapter not written yet |
| Fig. 2.6 | Effect of solutions of different concentrations on a cell | p. 5 | Chapter not written yet |
| Fig. 2.7 | Structure of a cell membrane | p. 5 | Chapter not written yet |
| Fig. 2.10 | (a) A typical bacterial cell, (b) a typical plant cell, and (c) a typical animal cell | p. 7 | Chapter not written yet |
| Fig. 2.11 | Structure of a nucleus | p. 9 | Chapter not written yet |
| Fig. 2.12 | From cell | p. 9 | Chapter not written yet |
| Fig. 2.14 | Structure of a mitochondrion | p. 11 | Chapter not written yet |
| Fig. 2.15 | Structure of a chloroplast | p. 11 | Chapter not written yet |
| Fig. 2.16 | Growing | p. 13 | Chapter not written yet |
| Fig. 2.17 | Different stages of cell division in onion root tip cells | p. 14 | Chapter not written yet |
| Fig. 2.18 | Mitosis is the process | p. 14 | Chapter not written yet |
| Fig. 2.19 | Meiosis is a two-step process | p. 15 | Chapter not written yet |
| Fig. 2.21 | Experimental | p. 19 | Chapter not written yet |
| Fig. 2.22 | Experimental 11. Identify the pair that incorrectly matches the cell organelle with | p. 19 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 3.2 | Growth of onion roots | p. 3 | Chapter not written yet |
| Fig. 3.3 | Location of | p. 3 | Chapter not written yet |
| Fig. 3.7 | Internal structure of a sunflower stem | p. 5 | Chapter not written yet |
| Fig. 3.8 | Various types of | p. 5 | Chapter not written yet |
| Fig. 3.10 | Tissue systems in plants | p. 6 | Chapter not written yet |
| Fig. 3.11 | Types of epithelial tissues in | p. 8 | Chapter not written yet |
| Fig. 3.12 | Types of connective tissues | p. 9 | Chapter not written yet |
| Fig. 3.13 | Different types of muscles | p. 11 | Chapter not written yet |
| Fig. 3.14 | Structure of a neuron | p. 11 | Chapter not written yet |
| Fig. 3.15 | Musculoskeletal | p. 11 | Chapter not written yet |
| Fig. 3.16 | Types of joints | p. 13 | Chapter not written yet |
| Fig. 3.17 | Poses of classical and folk dances of India | p. 13 | Chapter not written yet |
| Fig. 3.18 | Poses of Surya Namaskar | p. 14 | Chapter not written yet |
| Fig. 3.21 | jumps? | p. 17 | Chapter not written yet |
| Fig. 3.24 | No text caption | p. 20 | Chapter not written yet |
| Fig. 3.25 | No text caption | p. 20 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 4.1 | Objects in a straight line motion | p. 2 | Chapter not written yet |
| Fig. 4.2 | An athlete running on a straight track | p. 3 | Chapter not written yet |
| Fig. 4.3 | Reference point and positions of the athlete at different instants | p. 3 | Chapter not written yet |
| Fig. 4.5 | A ball | p. 4 | Chapter not written yet |
| Fig. 4.6 | A ball rolling down an inclined track | p. 4 | Chapter not written yet |
| Fig. 4.8 | Direction of average acceleration when magnitude of velocity is | p. 7 | Chapter not written yet |
| Fig. 4.9 | A bus moving on a long straight highway | p. 8 | Chapter not written yet |
| Fig. 4.10 | An object | p. 9 | Chapter not written yet |
| Fig. 4.11 | Making a graph | p. 11 | Chapter not written yet |
| Fig. 4.12 | Position-time graph | p. 11 | Chapter not written yet |
| Fig. 4.13 | Position-time graph of a moving object | p. 12 | Chapter not written yet |
| Fig. 4.15 | Position-time | p. 13 | Chapter not written yet |
| Fig. 4.16 | Position-time graph of | p. 13 | Chapter not written yet |
| Fig. 4.17 | Calculating acceleration is decreasing). | p. 14 | Chapter not written yet |
| Fig. 4.18 | Velocity-time graph | p. 16 | Chapter not written yet |
| Fig. 4.19 | Velocity-time graph | p. 16 | Chapter not written yet |
| Fig. 4.20 | Safe distance between two moving vehicles | p. 18 | Chapter not written yet |
| Fig. 4.21 | Motion in a plane | p. 19 | Chapter not written yet |
| Fig. 4.22 | Top view (going round the circle once)? It is equal to the circumference of the circle. | p. 19 | Chapter not written yet |
| Fig. 4.23 | An athlete running along (a) a rectangular track, (b) a hexagonal | p. 19 | Chapter not written yet |
| Fig. 4.26 | A mountain road | p. 20 | Chapter not written yet |
| Fig. 4.27 | Fig. 4.28 | p. 22 | Chapter not written yet |
| Fig. 4.29 | No text caption | p. 22 | Chapter not written yet |
| Fig. 4.30 | Fig. 4.31 | p. 23 | Chapter not written yet |
| Fig. 4.32 | No text caption | p. 23 | Chapter not written yet |
| Fig. 4.33 | No text caption | p. 24 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 5.4 | Composition | p. 4 | Chapter not written yet |
| Fig. 5.5 | Saline | p. 5 | Chapter not written yet |
| Fig. 5.6 | Solubility curves of compounds ‘A’ and ‘B’ in water | p. 6 | Chapter not written yet |
| Fig. 5.7 | Crystals of | p. 7 | Chapter not written yet |
| Fig. 5.8 | Steps involved in the process of crystallization | p. 7 | Chapter not written yet |
| Fig. 5.9 | Steps followed in the salt manufacturing process | p. 8 | Chapter not written yet |
| Fig. 5.10 | Naturally occurring crystals (a) in caves and (b) quartz | p. 8 | Chapter not written yet |
| Fig. 5.11 | Distillation process | p. 9 | Chapter not written yet |
| Fig. 5.12 | Distillation set-up | p. 9 | Chapter not written yet |
| Fig. 5.13 | Deg-Bhapka method | p. 10 | Chapter not written yet |
| Fig. 5.14 | (a) Petroleum refinery, and (b) products of fractional distillation of crude petroleum | p. 10 | Chapter not written yet |
| Fig. 5.15 | Paper chromatography | p. 11 | Chapter not written yet |
| Fig. 5.17 | Sublimation of camphor | p. 13 | Chapter not written yet |
| Fig. 5.18 | A spinning game | p. 14 | Chapter not written yet |
| Fig. 5.19 | Centrifugation machine (a) outer view and (b) inner view | p. 14 | Chapter not written yet |
| Fig. 5.21 | Process of coagulation | p. 15 | Chapter not written yet |
| Fig. 5.24 | Demonstration of Tyndall effect in phase and the component in which the dispersed phase is | p. 17 | Chapter not written yet |
| Fig. 5.25 | (a) | p. 21 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 6.1 | Applying force on different objects | p. 1 | Chapter not written yet |
| Fig. 6.2 | Measuring the | p. 2 | Chapter not written yet |
| Fig. 6.4 | Two forces applied in opposite direction of (a) equal | p. 3 | Chapter not written yet |
| Fig. 6.5 | Two forces applied in the same direction forces. | p. 3 | Chapter not written yet |
| Fig. 6.6 | Two forces acting on a block in three different manner | p. 3 | Chapter not written yet |
| Fig. 6.12 | (a) Rubber band slightly stretched between your forefinger and thumb, (b) marks A, B, C | p. 5 | Chapter not written yet |
| Fig. 6.14 | A block being pulled by a spring balance | p. 6 | Chapter not written yet |
| Fig. 6.15 | When the object is at rest, its | p. 8 | Chapter not written yet |
| Fig. 6.17 | (a) A cart, (b) a cart and | p. 9 | Chapter not written yet |
| Fig. 6.18 | Catching a | p. 11 | Chapter not written yet |
| Fig. 6.20 | Cracking a | p. 12 | Chapter not written yet |
| Fig. 6.21 | Calculate the force acting on the | p. 13 | Chapter not written yet |
| Fig. 6.22 | Kicking a ball | p. 14 | Chapter not written yet |
| Fig. 6.24 | Pushing the ground | p. 14 | Chapter not written yet |
| Fig. 6.25 | Walking | p. 14 | Chapter not written yet |
| Fig. 6.26 | Two spring balances connected together are pulled in opposite directions | p. 15 | Chapter not written yet |
| Fig. 6.27 | A person climbing a | p. 15 | Chapter not written yet |
| Fig. 6.28 | Rowing a canoe | p. 15 | Chapter not written yet |
| Fig. 6.29 | Air rushing out of the balloon | p. 16 | Chapter not written yet |
| Fig. 6.31 | Two bar magnets applying equal and | p. 17 | Chapter not written yet |
| Fig. 6.33 | The Earth and the | p. 17 | Chapter not written yet |
| Fig. 6.34 | A system of two boxes attached together by a string | p. 18 | Chapter not written yet |
| Fig. 6.35 | External forces on a system of two | p. 18 | Chapter not written yet |
| Fig. 6.36 | No text caption | p. 19 | Chapter not written yet |
| Fig. 6.37 | No text caption | p. 20 | Chapter not written yet |
| Fig. 6.38 | A sailor jumping forward | p. 20 | Chapter not written yet |
| Fig. 6.40 | Fig. 6.41 | p. 21 | Chapter not written yet |
| Fig. 6.42 | A bar magnet | p. 21 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 7.3 | Work done by a force while displacing | p. 2 | Chapter not written yet |
| Fig. 7.5 | Pushing | p. 3 | Chapter not written yet |
| Fig. 7.6 | Carrying a box | p. 3 | Chapter not written yet |
| Fig. 7.7 | Examples of (a) positive, and (b) negative work done on object | p. 4 | Chapter not written yet |
| Fig. 7.8 | (a) Throwing | p. 5 | Chapter not written yet |
| Fig. 7.11 | Calculating change in kinetic energy using the work-energy theorem | p. 6 | Chapter not written yet |
| Fig. 7.14 | Spring (a) in | p. 9 | Chapter not written yet |
| Fig. 7.15 | A system of two (a) magnets, and (b) electric charges | p. 9 | Chapter not written yet |
| Fig. 7.16 | Earth ball | p. 9 | Chapter not written yet |
| Fig. 7.17 | Depressions created by a ball | p. 10 | Chapter not written yet |
| Fig. 7.19 | An object | p. 11 | Chapter not written yet |
| Fig. 7.21 | Escape ramp | p. 13 | Chapter not written yet |
| Fig. 7.22 | No text caption | p. 14 | Chapter not written yet |
| Fig. 7.23 | Pulley | p. 15 | Chapter not written yet |
| Fig. 7.24 | Pulling up a load (a) directly, and | p. 15 | Chapter not written yet |
| Fig. 7.26 | A box being (a) lifted vertically up, and (b) pushed up the ramp | p. 16 | Chapter not written yet |
| Fig. 7.28 | A load being lifted up (a) vertically, (b) along an inclined plane, and | p. 17 | Chapter not written yet |
| Fig. 7.29 | L | p. 17 | Chapter not written yet |
| Fig. 7.30 | No text caption | p. 17 | Chapter not written yet |
| Fig. 7.32 | A lever used to lift a | p. 18 | Chapter not written yet |
| Fig. 7.34 | A seesaw | p. 19 | Chapter not written yet |
| Fig. 7.35 | Opening the | p. 20 | Chapter not written yet |
| Fig. 7.37 | 1 | p. 23 | Chapter not written yet |
| Fig. 7.38 | (ii) Calculate the kinetic energy of the car at A. | p. 23 | Chapter not written yet |
| Fig. 7.39 | No text caption | p. 23 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 8.2 | Thomson’s model of | p. 3 | Chapter not written yet |
| Fig. 8.4 | Schematic view of the gold foil experiment | p. 4 | Chapter not written yet |
| Fig. 8.5 | Planetary model | p. 5 | Chapter not written yet |
| Fig. 8.6 | Spiral path followed by a know about another subatomic particle, the | p. 6 | Chapter not written yet |
| Fig. 8.7 | Energy levels in an | p. 7 | Chapter not written yet |
| Fig. 8.8 | Bhabha Atomic Research Centre | p. 9 | Chapter not written yet |
| Fig. 8.9 | Symbols of some elements given by Dalton | p. 9 | Chapter not written yet |
| Fig. 8.10 | Neutrons and protons | p. 11 | Chapter not written yet |
| Fig. 8.11 | Schematic atomic structure of the first eighteen elements showing how the electrons | p. 12 | Chapter not written yet |
| Fig. 8.12 | Schematic representation of isotopes of hydrogen | p. 15 | Chapter not written yet |
| Fig. 8.13 | Schematic representation of isotopes of carbon | p. 15 | Chapter not written yet |
| Fig. 8.14 | A nuclear power plant | p. 16 | Chapter not written yet |
| Fig. 8.15 | STM image showing | p. 17 | Chapter not written yet |
| Fig. 8.16 | Journey of the development of atomic models | p. 18 | Chapter not written yet |
| Fig. 8.17 | No text caption | p. 20 | Chapter not written yet |
Open the chapter · Open the original PDF
| Book figure | Caption in the book | PDF page | On our page |
|---|---|---|---|
| Fig. 9.1 | (a) Weight of water and | p. 2 | Chapter not written yet |
| Fig. 9.3 | (b) Pouring baking soda into | p. 3 | Chapter not written yet |
| Fig. 9.6 | Formation of a hydrogen molecule | p. 8 | Chapter not written yet |
| Fig. 9.7 | Formation of a chlorine molecule | p. 9 | Chapter not written yet |
| Fig. 9.8 | Formation of an oxygen molecule | p. 9 | Chapter not written yet |
| Fig. 9.9 | Formation of a hydrogen chloride molecule | p. 10 | Chapter not written yet |
| Fig. 9.10 | Formation of a water molecule | p. 10 | Chapter not written yet |
| Fig. 9.11 | Formation of a sodium cation | p. 11 | Chapter not written yet |
| Fig. 9.12 | Formation of a chloride anion | p. 12 | Chapter not written yet |
| Fig. 9.13 | Formation of sodium chloride by transfer of electron | p. 12 | Chapter not written yet |
| Fig. 9.14 | Sodium chloride: (a) crystals, (b) crystal structure, and (c) crystal lattice | p. 12 | Chapter not written yet |
| Fig. 9.15 | Experimental set-up for electrical | p. 17 | Chapter not written yet |
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| Fig. 9.18 | No text caption | p. 21 | Chapter not written yet |
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| Fig. 6.2 | Various types of vascular bundles : | p. 3 | Chapter not written yet |
| Fig. 6.3 | T.S. : (a) Dicot root (Primary) | p. 4 | Chapter not written yet |
| Fig. 6.4 | T.S. of stem : (a) Dicot (b) Monocot | p. 5 | Chapter not written yet |
| Fig. 6.5 | T.S. of leaf : (a) Dicot (b) Monocot | p. 6 | Chapter not written yet |
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| Fig. 8.3 | Diagram showing : (a) Plant cell (b) Animal cell | p. 8 | Chapter not written yet |
| Fig. 8.4 | Fluid mosaic model of plasma membrane | p. 9 | Chapter not written yet |
| Fig. 8.7 | Structure of mitochondrion (Longitudinal section) | p. 13 | Chapter not written yet |
| Fig. 8.8 | Sectional view of chloroplast | p. 14 | Chapter not written yet |
| Fig. 8.9 | Ribosome | p. 14 | Chapter not written yet |
| Fig. 8.10 | Section of cilia/flagella showing different parts : (a) Electron micrograph | p. 15 | Chapter not written yet |
| Fig. 8.11 | Structure of nucleus | p. 16 | Chapter not written yet |
| Fig. 8.13 | Types of chromosomes based on the position of centromere | p. 17 | Chapter not written yet |
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| Fig. 9.2 | Diagrammatic representation of a portion of glycogen | p. 7 | Chapter not written yet |
| Fig. 9.3 | Various levels of Protein Structure | p. 6 | Chapter not written yet |
| Fig. 9.5 | Effect of change in : (a) pH (b) Temperature and (c) Concentration of | p. 13 | Chapter not written yet |
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| Fig. 11.4 | The light harvesting complex | p. 8 | Chapter not written yet |
| Fig. 11.6 | Cyclic photophosphorylation | p. 10 | Chapter not written yet |
| Fig. 11.7 | ATP synthesis through chemiosmosis | p. 11 | Chapter not written yet |
| Fig. 11.8 | The Calvin cycle proceeds in three stages : (1) carboxylation, during which | p. 14 | Chapter not written yet |
| Fig. 11.9 | Diagrammatic representation of the Hatch and Slack Pathway | p. 16 | Chapter not written yet |
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| Fig. 12.2 | Major pathways of anaerobic | p. 5 | Chapter not written yet |
| Fig. 12.4 | Electron Transport System (ETS) | p. 8 | Chapter not written yet |
| Fig. 12.6 | Interrelationship among metabolic pathways showing respiration | p. 11 | Chapter not written yet |
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| Fig. 13.2 | Diagrammatic representation of | p. 3 | Chapter not written yet |
| Fig. 13.3 | Detection of zones of elongation by | p. 3 | Chapter not written yet |
| Fig. 13.4 | Diagrammatic representation of : (a) Arithmetic (b) Geometric growth and | p. 4 | Chapter not written yet |
| Fig. 13.5 | Constant linear growth, a plot | p. 5 | Chapter not written yet |
| Fig. 13.6 | An idealised sigmoid growth | p. 5 | Chapter not written yet |
| Fig. 13.7 | Diagrammatic comparison of absolute and relative growth rates. Both | p. 6 | Chapter not written yet |
| Fig. 13.8 | Sequence of the developmental process in a plant cell | p. 8 | Chapter not written yet |
| Fig. 13.9 | Heterophylly in (a) larkspur and (b) buttercup | p. 8 | Chapter not written yet |
| Fig. 13.10 | Experiment used to demonstrate | p. 9 | Chapter not written yet |
| Fig. 13.11 | Apical dominance in plants : | p. 11 | Chapter not written yet |
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| Fig. 14.2 | Mechanism of breathing showing : | p. 6 | Chapter not written yet |
| Fig. 14.3 | Diagrammatic representation of exchange of gases at the alveolus and | p. 7 | Chapter not written yet |
| Fig. 14.4 | A Diagram of a section of an | p. 8 | Chapter not written yet |
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| Fig. 16.3 | A diagrammatic representation of a nephron showing blood vessels, | p. 3 | Chapter not written yet |
| Fig. 16.4 | Malpighian body (renal corpuscle) the medulla. Such nephrons are called | p. 4 | Chapter not written yet |
| Fig. 16.5 | Reabsorption and secretion of major substances at different parts of | p. 6 | Chapter not written yet |
| Fig. 16.6 | Diagrammatic representation of a nephron and vasa recta showing | p. 7 | Chapter not written yet |
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| Fig. 17.2 | Diagrammatic representation of (a) anatomy of a muscle fibre showing | p. 4 | Chapter not written yet |
| Fig. 17.3 | An actin (thin) filament (b) Myosin monomer (Meromyosin) | p. 5 | Chapter not written yet |
| Fig. 17.4 | Stages in cross bridge formation, rotation of head and breaking of | p. 6 | Chapter not written yet |
| Fig. 17.5 | Sliding-filament theory of muscle contraction (movement of the thin | p. 7 | Chapter not written yet |
| Fig. 17.6 | Diagrammatic view of human skull | p. 8 | Chapter not written yet |
| Fig. 17.9 | Right pectoral girdle and upper | p. 10 | Chapter not written yet |
| Fig. 17.10 | Right pelvic girdle and lower limb | p. 10 | Chapter not written yet |
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| Fig. 18.2 | Diagrammatic representation of impulse conduction through an axon | p. 4 | Chapter not written yet |
| Fig. 18.3 | Diagram showing axon terminal and synapse | p. 5 | Chapter not written yet |
| Fig. 18.4 | Diagram showing sagital section of the human brain | p. 6 | Chapter not written yet |
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| Fig. 19.3 | Diagrammatic view of the | p. 4 | Chapter not written yet |
| Fig. 19.4 | Diagrammatic representation of : (a) Adrenal gland above kidney (b) Section | p. 6 | Chapter not written yet |
| Fig. 19.5 | Diagramatic representation of the mechanism of hormone action : | p. 11 | Chapter not written yet |
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| Fig. 1.3 | A representation of atoms and molecules | p. 6 | Chapter not written yet |
| Fig. 1.6 | helps to visualise these relations. | p. 9 | Chapter not written yet |
| Fig. 1.7 | Some volume measuring devices | p. 10 | Chapter not written yet |
| Fig. 1.9 | Two volumes of hydrogen react with one volume of oxygen to give two volumes of water vapour | p. 16 | Chapter not written yet |
| Fig. 1.10 | Packing of Na+ and Cl– ions | p. 17 | Chapter not written yet |
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| Fig. 2.1 | A cathode ray discharge tube with | p. 2 | Chapter not written yet |
| Fig. 2.2 | The apparatus to determine the charge to the mass ratio of electron | p. 3 | Chapter not written yet |
| Fig. 2.3 | The Millikan oil drop apparatus for | p. 4 | Chapter not written yet |
| Fig. 2.4 | Thomson model of atom | p. 5 | Chapter not written yet |
| Fig. 2.5 | Schematic view of Rutherford’s | p. 6 | Chapter not written yet |
| Fig. 2.6 | The electric and magnetic field | p. 9 | Chapter not written yet |
| Fig. 2.7 | The spectrum of electromagnetic radiation. (b) Visible spectrum. The visible region is only | p. 10 | Chapter not written yet |
| Fig. 2.9 | Equipment for studying the photoelectric | p. 13 | Chapter not written yet |
| Fig. 2.10 | Atomic emission. The light emitted by a sample of excited hydrogen atoms (or any other | p. 17 | Chapter not written yet |
| Fig. 2.11 | Transitions of the electron in the | p. 18 | Chapter not written yet |
| Fig. 2.13 | One may ask a question : Why | p. 30 | Chapter not written yet |
| Fig. 2.15 | Boundary surface diagrams of the five | p. 31 | Chapter not written yet |
| Fig. 2.16 | depicts the energy levels of multi- | p. 32 | Chapter not written yet |
| Fig. 2.17 | Order of filling of orbitals | p. 34 | Chapter not written yet |
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| Fig. 3.2 | Long form of the Periodic Table of the Elements with their atomic numbers and ground state outer electronic | p. 6 | Chapter not written yet |
| Fig. 3.3 | The types of elements in the Periodic Table based on the orbitals that | p. 10 | Chapter not written yet |
| Fig. 3.4 | Variation of atomic radius with atomic | p. 14 | Chapter not written yet |
| Fig. 3.6 | F i r s t i o n i z a t i o n e n t h a l p i e s ( ∆ i H ) o f e l e m e n t s o f t h e s e c o n d p e r i o d a s a | p. 15 | Chapter not written yet |
| Fig. 3.7 | The periodic trends of elements in the periodic table | p. 18 | Chapter not written yet |
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| Fig. 4.2 | Covalent and van der Waals radii in | p. 8 | Chapter not written yet |
| Fig. 4.4 | Resonance in CO32–, I, II and III | p. 11 | Chapter not written yet |
| Fig. 4.7 | Forces of attraction and repulsion | p. 19 | Chapter not written yet |
| Fig. 4.8 | The potential energy curve for the | p. 19 | Chapter not written yet |
| Fig. 4.10 | Formation of sp hybrids from s and | p. 22 | Chapter not written yet |
| Fig. 4.12 | Formation of sp 3 hybrids by the | p. 23 | Chapter not written yet |
| Fig. 4.13 | Formation of NH3 molecule | p. 23 | Chapter not written yet |
| Fig. 4.15 | Formation of sigma and pi bonds in ethene | p. 24 | Chapter not written yet |
| Fig. 4.16 | Formation of sigma and pi bonds in | p. 25 | Chapter not written yet |
| Fig. 4.17 | Trigonal bipyramidal geometry of PCl5 | p. 26 | Chapter not written yet |
| Fig. 4.18 | Octahedral geometry of SF6 molecule | p. 26 | Chapter not written yet |
| Fig. 4.20 | Contours and energies of bonding and antibonding molecular orbitals formed through | p. 29 | Chapter not written yet |
| Fig. 4.21 | MO occupancy and molecular properties for B2 through Ne2. | p. 32 | Chapter not written yet |
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| Fig. 5.4 | A system which allows heat transfer | p. 4 | Chapter not written yet |
| Fig. 5.5 | pV-plot when pressure is not constant | p. 6 | Chapter not written yet |
| Fig. 5.8 | Calorimeter for measuring heat changes | p. 11 | Chapter not written yet |
| Fig. 5.9 | Enthalpy diagram for lattice enthalpy of | p. 20 | Chapter not written yet |
| Fig. 5.10 | Enthalpy diagram for endothermic | p. 23 | Chapter not written yet |
| Fig. 5.11 | Diffusion of two gases | p. 23 | Chapter not written yet |
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| Fig. 6.3 | Demonstrating dynamic nature of equilibrium. (a) initial stage (b) final stage after the | p. 6 | Chapter not written yet |
| Fig. 6.4 | Depiction of equilibrium for the reaction | p. 7 | Chapter not written yet |
| Fig. 6.5 | Chemical equilibrium in the reaction H2(g) | p. 7 | Chapter not written yet |
| Fig. 6.6 | I2(g) will react to form more HI(g) and their | p. 15 | Chapter not written yet |
| Fig. 6.10 | Dissolution of sodium chloride in water. | p. 22 | Chapter not written yet |
| Fig. 6.11 | pH-paper with four strips that may have | p. 27 | Chapter not written yet |
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| Fig. 7.1 | Redox reaction between zinc and aqueous solution of copper nitrate occurring in a beaker. | p. 4 | Chapter not written yet |
| Fig. 7.2 | Redox reaction between copper and aqueous solution of silver nitrate occurring in a beaker. | p. 5 | Chapter not written yet |
| Fig. 7.3 | The set-up for Daniell cell. Electrons | p. 16 | Chapter not written yet |
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| Fig. 8.2 | No text caption | p. 5 | Chapter not written yet |
| Fig. 8.3 | p | p. 17 | Chapter not written yet |
| Fig. 8.4 | s | p. 22 | Chapter not written yet |
| Fig. 8.5 | p | p. 24 | Chapter not written yet |
| Fig. 8.6 | s | p. 25 | Chapter not written yet |
| Fig. 8.7 | p s | p. 25 | Chapter not written yet |
| Fig. 8.8 | s | p. 26 | Chapter not written yet |
| Fig. 8.9 | s | p. 27 | Chapter not written yet |
| Fig. 8.11 | p | p. 28 | Chapter not written yet |
| Fig. 8.12 | p | p. 28 | Chapter not written yet |
| Fig. 8.13 | p | p. 29 | Chapter not written yet |
| Fig. 8.14 | s | p. 31 | Chapter not written yet |
| Fig. 8.15 | s | p. 32 | Chapter not written yet |
| Fig. 8.16 | p | p. 33 | Chapter not written yet |
| Fig. 8.17 | s | p. 34 | Chapter not written yet |
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| Fig. 9.4 | Orbital picture of ethene depicting | p. 12 | Chapter not written yet |
| Fig. 9.5 | Orbital picture of ethene showing formation of (a) π-bond, (b) π-cloud and (c) bond angles and | p. 13 | Chapter not written yet |
| Fig. 9.6 | or (b). The delocalised π electron cloud | p. 21 | Chapter not written yet |
| Fig. 9.7 | Fig. 9.7 (d) | p. 27 | Chapter not written yet |
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| Fig. 2.6 | said to be in free fall. If the height through | p. 7 | Chapter not written yet |
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| Fig. 3.5 | Two vectors A and B, – B is also shown. (b) Subtracting vector B from vector A – the result is R2. For | p. 4 | Chapter not written yet |
| Fig. 3.6 | Two vectors A and B with their tails brought to a common origin. (b) The sum A + B obtained using | p. 5 | Chapter not written yet |
| Fig. 3.7 | OQ = l a, and QP = µ b | p. 5 | Chapter not written yet |
| Fig. 3.9 | Unit vectors ɵi , ɵj and kɵ lie along the x-, y-, and z-axes. (b) A vector A is resolved into its | p. 6 | Chapter not written yet |
| Fig. 3.10 | the water current are shown in Fig. 3.11 in | p. 8 | Chapter not written yet |
| Fig. 3.11 | No text caption | p. 8 | Chapter not written yet |
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| Fig. 3.13 | As the time interval ∆t approaches zero, the average velocity approaches the velocity v. The direction | p. 9 | Chapter not written yet |
| Fig. 3.15 | The average acceleration for three time intervals (a) ∆t1, (b) ∆t2, and (c) ∆t3, (∆t1> ∆t2> ∆t3). (d) In the | p. 11 | Chapter not written yet |
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| Fig. 3.18 | Velocity and acceleration of an object in uniform circular motion. The time interval ∆t decreases from | p. 15 | Chapter not written yet |
| Fig. 3.20 | No text caption | p. 21 | Chapter not written yet |
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| Fig. 4.5 | Acceleration at an instant is determined by | p. 7 | Chapter not written yet |
| Fig. 4.6 | imparted to the balls in (a) and (b) is | p. 9 | Chapter not written yet |
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| Fig. 4.13 | Some ways of reducing friction. (a) Ball bearings placed between moving parts of a machine. | p. 14 | Chapter not written yet |
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| Fig. 5.3 | The shaded rectangle represents the | p. 6 | Chapter not written yet |
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| Fig. 5.6 | 2 | p. 9 | Chapter not written yet |
| Fig. 5.7 | If the extension is xm, the work done by | p. 10 | Chapter not written yet |
| Fig. 5.9 | the path this assumes the form | p. 12 | Chapter not written yet |
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| Fig. 6.19 | i =1 | p. 18 | Chapter not written yet |
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| Fig. 6.21 | The Earth’s magnetic field exerts equal | p. 20 | Chapter not written yet |
| Fig. 6.22 | about the fulcrum. | p. 20 | Chapter not written yet |
| Fig. 6.24 | Balancing a cardboard on the tip of a | p. 21 | Chapter not written yet |
| Fig. 6.25 | Determining the centre of gravity of a body | p. 21 | Chapter not written yet |
| Fig. 6.26 | No text caption | p. 22 | Chapter not written yet |
| Fig. 6.28 | A light rod of length l with a pair of | p. 24 | Chapter not written yet |
| Fig. 6.29 | also shows θ 0 , the angular | p. 26 | Chapter not written yet |
| Fig. 6.30 | No text caption | p. 28 | Chapter not written yet |
| Fig. 6.31 | The flywheel is mounted on a | p. 29 | Chapter not written yet |
| Fig. 6.32 | A demonstration of conservation of | p. 31 | Chapter not written yet |
| Fig. 6.33 | No text caption | p. 34 | Chapter not written yet |
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| Fig. 7.2 | The planet P moves around the sun in an | p. 2 | Chapter not written yet |
| Fig. 7.5 | Three equal masses are placed at the three | p. 5 | Chapter not written yet |
| Fig. 7.8 | g at a height h above the surface of the | p. 7 | Chapter not written yet |
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| Fig. 8.1 | A cylindrical body under tensile stress elongates by ∆L (b) Shearing stress on a cylinder deforming it by | p. 2 | Chapter not written yet |
| Fig. 8.3 | Stress-strain curve for the elastic tissue of | p. 4 | Chapter not written yet |
| Fig. 8.5 | No text caption | p. 6 | Chapter not written yet |
| Fig. 8.6 | A bar of length l, breadth b, and depth | p. 9 | Chapter not written yet |
| Fig. 8.8 | Pillars or columns: (a) a pillar with rounded | p. 10 | Chapter not written yet |
| Fig. 8.9 | No text caption | p. 11 | Chapter not written yet |
| Fig. 8.10 | No text caption | p. 12 | Chapter not written yet |
| Fig. 8.11 | No text caption | p. 12 | Chapter not written yet |
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| Fig. 9.1 | The force exerted by the liquid in the | p. 2 | Chapter not written yet |
| Fig. 9.2 | Proof of Pascal’s law. ABC-DEF is an | p. 3 | Chapter not written yet |
| Fig. 9.3 | Fluid under gravity. The effect of gravity is | p. 4 | Chapter not written yet |
| Fig. 9.4 | Illustration of hydrostatic paradox. The | p. 4 | Chapter not written yet |
| Fig. 9.5 | The mercury barometer. | p. 5 | Chapter not written yet |
| Fig. 9.6 | Schematic diagram illustrating the principle | p. 6 | Chapter not written yet |
| Fig. 9.8 | displays streamlines for some | p. 8 | Chapter not written yet |
| Fig. 9.9 | The flow of an ideal fluid in a pipe of varying | p. 9 | Chapter not written yet |
| Fig. 9.10 | Torricelli’s law. The speed of efflux, v1, | p. 10 | Chapter not written yet |
| Fig. 9.11 | Fluid streaming past a static sphere. (b) Streamlines for a fluid around a sphere spinning clockwise. | p. 11 | Chapter not written yet |
| Fig. 9.12 | The velocity on a cylindrical surface | p. 12 | Chapter not written yet |
| Fig. 9.13 | Measurement of the coefficient of viscosity | p. 12 | Chapter not written yet |
| Fig. 9.14 | Schematic picture of molecules in a liquid, at the surface and balance of forces. (a) Molecule inside | p. 14 | Chapter not written yet |
| Fig. 9.15 | Stretching a film. (a) A film in equilibrium; | p. 15 | Chapter not written yet |
| Fig. 9.16 | Measuring Surface Tension. | p. 16 | Chapter not written yet |
| Fig. 9.17 | Different shapes of water drops with | p. 16 | Chapter not written yet |
| Fig. 9.20 | No text caption | p. 22 | Chapter not written yet |
| Fig. 9.21 | No text caption | p. 22 | Chapter not written yet |
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| Fig. 10.1 | A plot of Fahrenheit temperature (tF) versus | p. 2 | Chapter not written yet |
| Fig. 10.2 | Pressure versus temperature of a low | p. 3 | Chapter not written yet |
| Fig. 10.3 | A plot of pressure versus temperature and | p. 3 | Chapter not written yet |
| Fig. 10.5 | Thermal Expansion. | p. 4 | Chapter not written yet |
| Fig. 10.6 | Coefficient of volume expansion of copper | p. 4 | Chapter not written yet |
| Fig. 10.7 | Thermal expansion of water. | p. 5 | Chapter not written yet |
| Fig. 10.8 | No text caption | p. 6 | Chapter not written yet |
| Fig. 10.9 | A plot of temperature versus time showing | p. 9 | Chapter not written yet |
| Fig. 10.10 | its boiling point. Let us do the following activity | p. 10 | Chapter not written yet |
| Fig. 10.11 | Boiling process. | p. 11 | Chapter not written yet |
| Fig. 10.12 | Temperature versus heat for water at | p. 12 | Chapter not written yet |
| Fig. 10.14 | Steady state heat flow by conduction in | p. 14 | Chapter not written yet |
| Fig. 10.15 | No text caption | p. 15 | Chapter not written yet |
| Fig. 10.16 | = 91.6 W m–1 K–1 | p. 15 | Chapter not written yet |
| Fig. 10.17 | Convection cycles. | p. 16 | Chapter not written yet |
| Fig. 10.19 | Curve showing cooling of hot water | p. 19 | Chapter not written yet |
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| Fig. 11.2 | Systems A and B are separated by an | p. 3 | Chapter not written yet |
| Fig. 11.5 | Variation of specific heat capacity of | p. 7 | Chapter not written yet |
| Fig. 11.6 | The partition in the box is suddenly | p. 8 | Chapter not written yet |
| Fig. 11.7 | No text caption | p. 9 | Chapter not written yet |
| Fig. 11.8 | P-V curves for isothermal and adiabatic | p. 10 | Chapter not written yet |
| Fig. 11.9 | No text caption | p. 13 | Chapter not written yet |
| Fig. 11.10 | An irreversible engine (I) coupled to a | p. 14 | Chapter not written yet |
| Fig. 11.11 | No text caption | p. 18 | Chapter not written yet |
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| Fig. 12.1 | No text caption | p. 4 | Chapter not written yet |
| Fig. 12.2 | Experimental P-V curves (solid lines) for | p. 4 | Chapter not written yet |
| Fig. 12.3 | Experimental T-V curves (solid lines) for CO2 | p. 4 | Chapter not written yet |
| Fig. 12.4 | Elastic collision of a gas molecule with the | p. 6 | Chapter not written yet |
| Fig. 12.7 | The volume swept by a molecule in time ∆t | p. 12 | Chapter not written yet |
| Fig. 12.8 | No text caption | p. 14 | Chapter not written yet |
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| Fig. 13.1 | Examples of periodic motion. The period T | p. 2 | Chapter not written yet |
| Fig. 13.2 | A block attached to a spring, the other | p. 3 | Chapter not written yet |
| Fig. 13.4 | The location of the particle in SHM at the | p. 4 | Chapter not written yet |
| Fig. 13.5 | Displacement as a continuous function of | p. 5 | Chapter not written yet |
| Fig. 13.6 | The meaning of standard symbols | p. 5 | Chapter not written yet |
| Fig. 13.7 | A plot of displacement as a function of | p. 5 | Chapter not written yet |
| Fig. 13.8 | Plots of Eq. (13.4) for φ = 0 for two different | p. 6 | Chapter not written yet |
| Fig. 13.9 | Circular motion of a ball in a plane viewed | p. 6 | Chapter not written yet |
| Fig. 13.10 | describes the same situation | p. 6 | Chapter not written yet |
| Fig. 13.11 | The velocity, v (t), of the particle P′ is | p. 8 | Chapter not written yet |
| Fig. 13.13 | Displacement, velocity and acceleration of | p. 9 | Chapter not written yet |
| Fig. 13.14 | function of time. It is zero at the extreme positions | p. 10 | Chapter not written yet |
| Fig. 13.15 | position. Note, since the sign of v is immaterial | p. 10 | Chapter not written yet |
| Fig. 13.16 | Kinetic energy, potential energy and total | p. 11 | Chapter not written yet |
| Fig. 13.19 | No text caption | p. 17 | Chapter not written yet |
| Fig. 13.20 | No text caption | p. 18 | Chapter not written yet |
| Fig. 13.21 | No text caption | p. 18 | Chapter not written yet |
| Fig. 18.18 | No text caption | p. 16 | Chapter not written yet |
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| Fig. 14.2 | When a pulse travels along the length of a | p. 3 | Chapter not written yet |
| Fig. 14.4 | Longitudinal waves (sound) generated in a | p. 3 | Chapter not written yet |
| Fig. 14.5 | The meaning of standard symbols in | p. 5 | Chapter not written yet |
| Fig. 14.6 | No text caption | p. 5 | Chapter not written yet |
| Fig. 14.7 | An element of a string at a fixed location | p. 6 | Chapter not written yet |
| Fig. 14.9 | Two pulses having equal and opposite | p. 10 | Chapter not written yet |
| Fig. 14.11 | Reflection of a pulse meeting a rigid | p. 12 | Chapter not written yet |
| Fig. 14.12 | Stationary waves arising from superposition of two harmonic waves travelling in opposite directions. | p. 13 | Chapter not written yet |
| Fig. 14.13 | The first six harmonics of vibrations of a stretched | p. 14 | Chapter not written yet |
| Fig. 14.14 | Normal modes of an air column open at | p. 15 | Chapter not written yet |
| Fig. 14.15 | Standing waves in an open pipe, first four | p. 15 | Chapter not written yet |
| Fig. 14.16 | No text caption | p. 17 | Chapter not written yet |
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| Fig. 1.1 | A diagrammatic representation of L.S. of a flower | p. 4 | Chapter not written yet |
| Fig. 1.3 | Transverse section of a young anther; (b) Enlarged view of one microsporangium | p. 6 | Chapter not written yet |
| Fig. 1.4 | Scanning electron micrographs of a few pollen grains | p. 7 | Chapter not written yet |
| Fig. 1.6 | Pollen products | p. 8 | Chapter not written yet |
| Fig. 1.7 | A dissected flower of Hibiscus showing pistil (other floral parts have been removed); | p. 9 | Chapter not written yet |
| Fig. 1.8 | Parts of the ovule showing a large megaspore mother cell, a dyad and a tetrad of | p. 10 | Chapter not written yet |
| Fig. 1.9 | Self-pollinated flowers; | p. 12 | Chapter not written yet |
| Fig. 1.11 | Pollination by water in Vallisneria ; | p. 14 | Chapter not written yet |
| Fig. 1.12 | Pollen grains germinating on the stigma; (b) Pollen tubes growing through the | p. 16 | Chapter not written yet |
| Fig. 1.13 | Fertilised embryo sac showing zygote and Primary Endosperm Nucleus (PEN); | p. 18 | Chapter not written yet |
| Fig. 1.15 | Structure of some seeds. (b) False fruits of apple and strawberry | p. 21 | Chapter not written yet |
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| Fig. 2.2 | Diagrammatic sectional view of seminiferous tubule | p. 3 | Chapter not written yet |
| Fig. 2.3 | Diagrammatic sectional view of the female reproductive system | p. 4 | Chapter not written yet |
| Fig. 2.4 | A diagrammatic sectional view of Mammary gland | p. 5 | Chapter not written yet |
| Fig. 2.6 | Structure of a sperm | p. 7 | Chapter not written yet |
| Fig. 2.8 | Schematic representation of (a) Spermatogenesis; (b) Oogenesis | p. 8 | Chapter not written yet |
| Fig. 2.9 | Diagrammatic presentation of various events during a menstrual cycle | p. 9 | Chapter not written yet |
| Fig. 2.10 | Ovum surrounded by few sperms | p. 10 | Chapter not written yet |
| Fig. 2.11 | Transport of ovum, fertilisation and passage of growing embryo through fallopian tube | p. 11 | Chapter not written yet |
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| Fig. 4.1 | Seven pairs of contrasting traits in | p. 4 | Chapter not written yet |
| Fig. 4.3 | Diagrammatic representation | p. 6 | Chapter not written yet |
| Fig. 4.5 | Diagrammatic representation of a test cross | p. 9 | Chapter not written yet |
| Fig. 4.6 | Results of monohybrid cross in | p. 10 | Chapter not written yet |
| Fig. 4.7 | Results of a dihybrid cross where the two parents differed in two pairs | p. 13 | Chapter not written yet |
| Fig. 4.8 | Meiosis and germ cell formation in a cell with four chromosomes. | p. 15 | Chapter not written yet |
| Fig. 4.9 | Independent assortment of chromosomes | p. 16 | Chapter not written yet |
| Fig. 4.11 | Linkage: Results of two dihybrid crosses conducted by Morgan. Cross A shows | p. 18 | Chapter not written yet |
| Fig. 4.12 | Determination of sex by chromosomal | p. 20 | Chapter not written yet |
| Fig. 4.13 | Symbols used in the human | p. 22 | Chapter not written yet |
| Fig. 4.14 | Representative pedigree analysis of (a) Autosomal dominant trait (for example: | p. 23 | Chapter not written yet |
| Fig. 4.15 | Micrograph of the red blood cells and the amino acid composition of the relevant | p. 24 | Chapter not written yet |
| Fig. 4.16 | A representative figure showing an individual inflicted with Down’s | p. 26 | Chapter not written yet |
| Fig. 4.17 | Diagrammatic represe- | p. 26 | Chapter not written yet |
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| Fig. 5.1 | A Polynucleotide chain | p. 2 | Chapter not written yet |
| Fig. 5.2 | Double stranded polynucleotide chain | p. 4 | Chapter not written yet |
| Fig. 5.3 | DNA double helix | p. 4 | Chapter not written yet |
| Fig. 5.5 | The Hershey-Chase experiment | p. 8 | Chapter not written yet |
| Fig. 5.6 | Watson-Crick model for complementary strands. After the completion of | p. 10 | Chapter not written yet |
| Fig. 5.7 | Meselson and Stahl’s Experiment | p. 11 | Chapter not written yet |
| Fig. 5.8 | Replicating Fork | p. 13 | Chapter not written yet |
| Fig. 5.9 | Schematic structure of a transcription unit | p. 14 | Chapter not written yet |
| Fig. 5.10 | Process of Transcription in Bacteria | p. 15 | Chapter not written yet |
| Fig. 5.11 | Process of Transcription in Eukaryotes | p. 16 | Chapter not written yet |
| Fig. 5.12 | tRNA - the adapter molecule | p. 20 | Chapter not written yet |
| Fig. 5.14 | The lac Operon | p. 23 | Chapter not written yet |
| Fig. 5.16 | Schematic representation of DNA fingerprinting : Few representative chromosomes | p. 29 | Chapter not written yet |
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| Fig. 6.1 | Diagrammatic representation of Miller’s | p. 3 | Chapter not written yet |
| Fig. 6.2 | A family tree of dinosaurs and their living modern day counterpart organisms like | p. 5 | Chapter not written yet |
| Fig. 6.4 | Figure showing white - winged moth and dark - winged moth (melanised) | p. 7 | Chapter not written yet |
| Fig. 6.5 | Variety of beaks of finches that Darwin found in Galapagos Island | p. 8 | Chapter not written yet |
| Fig. 6.6 | Adaptive radiation of marsupials of Australia | p. 8 | Chapter not written yet |
| Fig. 6.7 | Picture showing convergent evolution | p. 9 | Chapter not written yet |
| Fig. 6.8 | Diagrammatic representation of the operation of natural selection on different | p. 11 | Chapter not written yet |
| Fig. 6.9 | A sketch of the evolution of plant forms through geological periods | p. 13 | Chapter not written yet |
| Fig. 6.10 | Representative evolutionary history of vertebrates through geological periods | p. 14 | Chapter not written yet |
| Fig. 6.11 | A comparison of the skulls of adult modern human being, baby chimpanzee and | p. 16 | Chapter not written yet |
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| Fig. 8.1 | Bacteria: (a) Rod-shaped, | p. 2 | Chapter not written yet |
| Fig. 8.3 | Colonies of bacteria growing in a petri dish; | p. 2 | Chapter not written yet |
| Fig. 8.4 | Fermentors | p. 4 | Chapter not written yet |
| Fig. 8.5 | Fermentation Plant | p. 4 | Chapter not written yet |
| Fig. 8.6 | Secondary treatment | p. 6 | Chapter not written yet |
| Fig. 8.8 | A typical biogas plant | p. 8 | Chapter not written yet |
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| Fig. 9.1 | Steps in formation of recombinant DNA by action of restriction endonuclease | p. 6 | Chapter not written yet |
| Fig. 9.2 | Diagrammatic representation of recombinant DNA technology | p. 7 | Chapter not written yet |
| Fig. 9.3 | A typical agarose gel | p. 8 | Chapter not written yet |
| Fig. 9.4 | E. coli cloning vector pBR322 | p. 9 | Chapter not written yet |
| Fig. 9.6 | Polymerase chain reaction (PCR) : Each cycle has three steps: (i) Denaturation; | p. 12 | Chapter not written yet |
| Fig. 9.7 | Simple stirred-tank bioreactor; (b) Sparged stirred-tank bioreactor through which | p. 14 | Chapter not written yet |
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| Fig. 10.1 | Cotton boll: (a) destroyed by bollworms; (b) a fully mature | p. 4 | Chapter not written yet |
| Fig. 10.2 | Host plant-generated dsRNA triggers protection against nematode infestation: | p. 5 | Chapter not written yet |
| Fig. 10.3 | Maturation of | p. 6 | Chapter not written yet |
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| Fig. 11.1 | Representation of age pyramids for human population | p. 5 | Chapter not written yet |
| Fig. 11.2 | No text caption | p. 6 | Chapter not written yet |
| Fig. 11.3 | Population growth curve | p. 7 | Chapter not written yet |
| Fig. 11.4 | Mutual relationship between fig tree and wasp: (a) Fig flower is pollinated | p. 14 | Chapter not written yet |
| Fig. 11.5 | Showing bee-a pollinator | p. 15 | Chapter not written yet |
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| Fig. 12.1 | Diagrammatic representation of decomposition cycle in a terrestrial ecosystem | p. 4 | Chapter not written yet |
| Fig. 12.2 | Diagrammatic representation of trophic levels in an ecosystem | p. 6 | Chapter not written yet |
| Fig. 12.3 | Energy flow through different trophic levels | p. 7 | Chapter not written yet |
| Fig. 12.4 | Inverted pyramid of biomass-small standing crop of phytoplankton supports large | p. 8 | Chapter not written yet |
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| Fig. 1.1 | Effect of pressure on the solubility of a gas. The concluded independently that the | p. 7 | Chapter not written yet |
| Fig. 1.2 | Experimental results for | p. 7 | Chapter not written yet |
| Fig. 1.3 | The plot of vapour pressure and mole | p. 10 | Chapter not written yet |
| Fig. 1.4 | Decrease in the vapour pressure of the the solution, the surface has both solute and | p. 12 | Chapter not written yet |
| Fig. 1.5 | No text caption | p. 13 | Chapter not written yet |
| Fig. 1.6 | No text caption | p. 14 | Chapter not written yet |
| Fig. 1.7 | The vapour pressure curve for | p. 17 | Chapter not written yet |
| Fig. 1.8 | Diagram showing DTf, depression | p. 18 | Chapter not written yet |
| Fig. 1.9 | No text caption | p. 20 | Chapter not written yet |
| Fig. 1.10 | The excess pressure equal to the | p. 21 | Chapter not written yet |
| Fig. 1.11 | Reverse osmosis occurs when a | p. 23 | Chapter not written yet |
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| Fig. 2.1 | Daniell cell having electrodes of zinc and | p. 2 | Chapter not written yet |
| Fig. 2.2 | (ii) Zinc is deposited | p. 2 | Chapter not written yet |
| Fig. 2.3 | Standard Hydrogen Electrode (SHE). | p. 4 | Chapter not written yet |
| Fig. 2.4 | electrodes | p. 13 | Chapter not written yet |
| Fig. 2.5 | Arrangement for measurement of | p. 14 | Chapter not written yet |
| Fig. 2.6 | Molar conductivity versus c½ for acetic | p. 17 | Chapter not written yet |
| Fig. 2.7 | Variation of Lm against c½. | p. 18 | Chapter not written yet |
| Fig. 2.8 | A commercial dry cell | p. 24 | Chapter not written yet |
| Fig. 2.9 | life as the overall reaction does not | p. 25 | Chapter not written yet |
| Fig. 2.10 | The Lead storage battery. | p. 25 | Chapter not written yet |
| Fig. 2.11 | more expensive to manufacture. | p. 26 | Chapter not written yet |
| Fig. 2.12 | Fuel cell using H2 and O2 produces electricity. | p. 26 | Chapter not written yet |
| Fig. 2.13 | Corrosion of iron in atmosphere | p. 27 | Chapter not written yet |
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| Fig. 3.1 | Instantaneous and average rate of a reaction | p. 3 | Chapter not written yet |
| Fig. 3.2 | No text caption | p. 4 | Chapter not written yet |
| Fig. 3.3 | Variation in the concentration | p. 12 | Chapter not written yet |
| Fig. 3.4 | A plot between ln[R] and t | p. 14 | Chapter not written yet |
| Fig. 3.7 | No text caption | p. 19 | Chapter not written yet |
| Fig. 3.8 | Distribution curve showing energies | p. 19 | Chapter not written yet |
| Fig. 3.9 | Distribution curve showing temperature | p. 20 | Chapter not written yet |
| Fig. 3.10 | A plot between ln k and 1/T | p. 20 | Chapter not written yet |
| Fig. 3.11 | Effect of catalyst on activation | p. 22 | Chapter not written yet |
| Fig. 3.12 | The proper orientation of | p. 23 | Chapter not written yet |
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| Fig. 4.1 | Trends in melting points of | p. 4 | Chapter not written yet |
| Fig. 4.2 | No text caption | p. 5 | Chapter not written yet |
| Fig. 4.3 | Trends in atomic radii of | p. 6 | Chapter not written yet |
| Fig. 4.4 | Observed and calculated values for the standard | p. 10 | Chapter not written yet |
| Fig. 4.6 | Trends in ionic radii of lanthanoids | p. 21 | Chapter not written yet |
| Fig. 4.7 | Chemical reactions of the lanthanoids. | p. 23 | Chapter not written yet |
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| Fig. 5.1 | Shapes of different coordination polyhedra. M | p. 5 | Chapter not written yet |
| Fig. 5.2 | Geometrical isomers (cis and trans) | p. 8 | Chapter not written yet |
| Fig. 5.3 | Geometrical isomers (cis and trans) | p. 8 | Chapter not written yet |
| Fig. 5.4 | Geometrical isomers (cis and trans) | p. 9 | Chapter not written yet |
| Fig. 5.5 | face, we have the facial (fac) | p. 9 | Chapter not written yet |
| Fig. 5.6 | Optical isomers (d and l) of [Co(en)3 ] 3+ | p. 9 | Chapter not written yet |
| Fig. 5.7 | No text caption | p. 9 | Chapter not written yet |
| Fig. 5.8 | d orbital splitting in an octahedral crystal field | p. 15 | Chapter not written yet |
| Fig. 5.9 | d orbital splitting in a tetrahedral | p. 16 | Chapter not written yet |
| Fig. 5.10 | Transition of an electron in | p. 17 | Chapter not written yet |
| Fig. 5.11 | No text caption | p. 17 | Chapter not written yet |
| Fig. 5.13 | Cr | p. 19 | Chapter not written yet |
| Fig. 5.14 | Example of synergic bonding | p. 19 | Chapter not written yet |
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| Fig. 6.1 | Comparison of boiling points of some alkyl halides | p. 10 | Chapter not written yet |
| Fig. 6.2 | Red ball represents the incoming hydroxide ion and green ball represents | p. 13 | Chapter not written yet |
| Fig. 6.3 | Steric effects in SN2 reaction. The relative rate of SN2 reaction is given in parenthesis | p. 15 | Chapter not written yet |
| Fig. 6.4 | Some common examples of chiral and chiral molecules. One such aid is the presence of | p. 18 | Chapter not written yet |
| Fig. 6.5 | B is mirror image of A; B is rotated by 180o and C is | p. 18 | Chapter not written yet |
| Fig. 6.6 | E is mirror image of D; E is rotated by 180o to get F and F is | p. 19 | Chapter not written yet |
| Fig. 6.7 | A chiral molecule | p. 19 | Chapter not written yet |
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| Fig. 7.1 | Structures of methanol, phenol and methoxymethane | p. 6 | Chapter not written yet |
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| Fig. 10.1 | a-Helix | p. 13 | Chapter not written yet |
| Fig. 10.2 | b-Pleated sheet structure of (iv) Quaternary structure of proteins: Some of the | p. 13 | Chapter not written yet |
| Fig. 10.3 | Diagrammatic representation of protein structure (two sub-units | p. 14 | Chapter not written yet |
| Fig. 10.4 | Primary, | p. 14 | Chapter not written yet |
| Fig. 10.5 | Structure of (a) a nucleoside and (b) a nucleotide | p. 18 | Chapter not written yet |
| Fig. 10.6 | Formation of a dinucleotide | p. 19 | Chapter not written yet |
| Fig. 10.7 | Double strand helix structure for DNA | p. 19 | Chapter not written yet |
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| Fig. 2.2 | Fig 2.2 (ii) | p. 4 | Chapter not written yet |
| Fig. 2.3 | Fig 2.3 (ii) | p. 5 | Chapter not written yet |
| Fig. 2.4 | Fig 2.4 (ii) | p. 6 | Chapter not written yet |
| Fig. 2.5 | Fig 2.5 (ii) | p. 7 | Chapter not written yet |
| Fig. 2.6 | Fig 2.6 (ii) | p. 8 | Chapter not written yet |
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| Fig. 6.2 | No text caption | p. 7 | Chapter not written yet |
| Fig. 6.3 | No text caption | p. 9 | Chapter not written yet |
| Fig. 6.5 | No text caption | p. 10 | Chapter not written yet |
| Fig. 6.6 | No text caption | p. 11 | Chapter not written yet |
| Fig. 6.7 | No text caption | p. 15 | Chapter not written yet |
| Fig. 6.8 | No text caption | p. 15 | Chapter not written yet |
| Fig. 6.11 | No text caption | p. 17 | Chapter not written yet |
| Fig. 6.12 | No text caption | p. 17 | Chapter not written yet |
| Fig. 6.14 | No text caption | p. 19 | Chapter not written yet |
| Fig. 6.17 | No text caption | p. 23 | Chapter not written yet |
| Fig. 6.19 | No text caption | p. 26 | Chapter not written yet |
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| Fig. 10.6 | No text caption | p. 5 | Chapter not written yet |
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| Fig. 10.23 | No text caption | p. 26 | Chapter not written yet |
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| Fig. 1.1 | Rods: like charges repel and unlike charges attract each other. | p. 2 | Chapter not written yet |
| Fig. 1.2 | Electroscopes: (a) | p. 4 | Chapter not written yet |
| Fig. 1.3 | Geometry and | p. 8 | Chapter not written yet |
| Fig. 1.5 | A system of | p. 11 | Chapter not written yet |
| Fig. 1.6 | No text caption | p. 12 | Chapter not written yet |
| Fig. 1.7 | No text caption | p. 13 | Chapter not written yet |
| Fig. 1.8 | Electric | p. 14 | Chapter not written yet |
| Fig. 1.9 | Electric field at a point | p. 16 | Chapter not written yet |
| Fig. 1.10 | No text caption | p. 17 | Chapter not written yet |
| Fig. 1.11 | The resultant of these two vectors is | p. 18 | Chapter not written yet |
| Fig. 1.13 | Dependence of | p. 20 | Chapter not written yet |
| Fig. 1.14 | No text caption | p. 21 | Chapter not written yet |
| Fig. 1.15 | Dependence of flux on the | p. 22 | Chapter not written yet |
| Fig. 1.16 | E and the outward normal to the area element. Notice we could look at | p. 22 | Chapter not written yet |
| Fig. 1.17 | Electric field of a dipole and are equal. | p. 24 | Chapter not written yet |
| Fig. 1.18 | EXAMPLE 1.9 | p. 25 | Chapter not written yet |
| Fig. 1.20 | No text caption | p. 27 | Chapter not written yet |
| Fig. 1.21 | Similar considerations apply for a line charge distribution and a volume | p. 28 | Chapter not written yet |
| Fig. 1.22 | No text caption | p. 29 | Chapter not written yet |
| Fig. 1.23 | Calculation of the | p. 30 | Chapter not written yet |
| Fig. 1.24 | No text caption | p. 31 | Chapter not written yet |
| Fig. 1.25 | No text caption | p. 32 | Chapter not written yet |
| Fig. 1.26 | Electric field due to an | p. 33 | Chapter not written yet |
| Fig. 1.27 | Gaussian surface for a | p. 34 | Chapter not written yet |
| Fig. 1.29 | No text caption | p. 36 | Chapter not written yet |
| Fig. 1.30 | No text caption | p. 43 | Chapter not written yet |
| Fig. 1.31 | No text caption | p. 43 | Chapter not written yet |
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| Fig. 2.1 | A test charge q (> 0) is | p. 2 | Chapter not written yet |
| Fig. 2.2 | Work done on a test charge q | p. 4 | Chapter not written yet |
| Fig. 2.3 | Work done in bringing a unit | p. 4 | Chapter not written yet |
| Fig. 2.5 | Quantities involved in the calculation | p. 6 | Chapter not written yet |
| Fig. 2.7 | No text caption | p. 8 | Chapter not written yet |
| Fig. 2.8 | No text caption | p. 9 | Chapter not written yet |
| Fig. 2.9 | No text caption | p. 10 | Chapter not written yet |
| Fig. 2.10 | Equipotential surfaces for a uniform electric field. | p. 10 | Chapter not written yet |
| Fig. 2.11 | Some equipotential surfaces for (a) a dipole, | p. 10 | Chapter not written yet |
| Fig. 2.13 | Potential energy of a | p. 12 | Chapter not written yet |
| Fig. 2.14 | Potential energy of a | p. 12 | Chapter not written yet |
| Fig. 2.15 | No text caption | p. 13 | Chapter not written yet |
| Fig. 2.16 | Potential energy of a | p. 16 | Chapter not written yet |
| Fig. 2.18 | The electric field inside a | p. 20 | Chapter not written yet |
| Fig. 2.19 | Some important electrostatic properties of a conductor. | p. 20 | Chapter not written yet |
| Fig. 2.21 | Some examples of polar | p. 21 | Chapter not written yet |
| Fig. 2.22 | A dielectric develops a net dipole | p. 22 | Chapter not written yet |
| Fig. 2.25 | The parallel plate capacitor. | p. 24 | Chapter not written yet |
| Fig. 2.26 | No text caption | p. 27 | Chapter not written yet |
| Fig. 2.28 | Parallel combination of | p. 28 | Chapter not written yet |
| Fig. 2.29 | No text caption | p. 29 | Chapter not written yet |
| Fig. 2.30 | Work done in a small | p. 30 | Chapter not written yet |
| Fig. 2.31 | No text caption | p. 31 | Chapter not written yet |
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| Fig. 3.5 | The dashed line | p. 9 | Chapter not written yet |
| Fig. 3.6 | Characteristic curve | p. 9 | Chapter not written yet |
| Fig. 3.8 | FIGURE 3.9 Resistivity | p. 10 | Chapter not written yet |
| Fig. 3.12 | Sketch of from C to D. As explained before, a steady current is maintained | p. 14 | Chapter not written yet |
| Fig. 3.13 | Then V (A) – V (B) is the potential difference between the positive | p. 15 | Chapter not written yet |
| Fig. 3.14 | Two cells in | p. 16 | Chapter not written yet |
| Fig. 3.15 | At junction a the current | p. 18 | Chapter not written yet |
| Fig. 3.16 | No text caption | p. 19 | Chapter not written yet |
| Fig. 3.17 | No text caption | p. 19 | Chapter not written yet |
| Fig. 3.19 | 101 | p. 21 | Chapter not written yet |
| Fig. 3.20 | No text caption | p. 26 | Chapter not written yet |
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| Fig. 4.1 | The magnetic field due to a straight long current-carrying | p. 2 | Chapter not written yet |
| Fig. 4.2 | The direction of the magnetic | p. 4 | Chapter not written yet |
| Fig. 4.3 | No text caption | p. 5 | Chapter not written yet |
| Fig. 4.4 | No text caption | p. 5 | Chapter not written yet |
| Fig. 4.5 | Circular motion | p. 6 | Chapter not written yet |
| Fig. 4.6 | Helical motion | p. 6 | Chapter not written yet |
| Fig. 4.7 | No text caption | p. 7 | Chapter not written yet |
| Fig. 4.9 | Thus, only the x-component survives. The net contribution along | p. 9 | Chapter not written yet |
| Fig. 4.10 | The magnetic field lines for a current loop. The direction of | p. 10 | Chapter not written yet |
| Fig. 4.11 | No text caption | p. 11 | Chapter not written yet |
| Fig. 4.13 | No text caption | p. 13 | Chapter not written yet |
| Fig. 4.14 | No text caption | p. 14 | Chapter not written yet |
| Fig. 4.15 | The magnetic field due to a section of the solenoid which has been | p. 15 | Chapter not written yet |
| Fig. 4.16 | The magnetic field of a very long solenoid. We consider a | p. 15 | Chapter not written yet |
| Fig. 4.17 | Two long straight | p. 16 | Chapter not written yet |
| Fig. 4.18 | No text caption | p. 19 | Chapter not written yet |
| Fig. 4.19 | The area vector of the loop | p. 20 | Chapter not written yet |
| Fig. 4.20 | exhibits a very useful instrument for this purpose: the moving | p. 23 | Chapter not written yet |
| Fig. 4.21 | The scale of this ammeter is calibrated and then graduated to read off | p. 24 | Chapter not written yet |
| Fig. 4.22 | No text caption | p. 25 | Chapter not written yet |
| Fig. 4.23 | 131 | p. 25 | Chapter not written yet |
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| Fig. 5.1 | The arrangement | p. 2 | Chapter not written yet |
| Fig. 5.2 | The field lines of (a) a bar magnet, (b) a current-carrying finite solenoid and | p. 3 | Chapter not written yet |
| Fig. 5.3 | Calculation of (a) The axial field of a | p. 3 | Chapter not written yet |
| Fig. 5.4 | No text caption | p. 6 | Chapter not written yet |
| Fig. 5.5 | The magnetic flux through ÄS is defined as ∆φB = B.∆S, where B | p. 7 | Chapter not written yet |
| Fig. 5.6 | No text caption | p. 8 | Chapter not written yet |
| Fig. 5.7 | No text caption | p. 12 | Chapter not written yet |
| Fig. 5.8 | No text caption | p. 14 | Chapter not written yet |
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| Fig. 6.1 | When the bar magnet is | p. 2 | Chapter not written yet |
| Fig. 6.2 | Current is | p. 3 | Chapter not written yet |
| Fig. 6.3 | Experimental set-up for Experiment 6.3. | p. 3 | Chapter not written yet |
| Fig. 6.4 | A plane of | p. 4 | Chapter not written yet |
| Fig. 6.6 | Now consider the correct case shown in Fig. 6.6(a). In this situation, | p. 7 | Chapter not written yet |
| Fig. 6.7 | No text caption | p. 8 | Chapter not written yet |
| Fig. 6.8 | No text caption | p. 9 | Chapter not written yet |
| Fig. 6.9 | No text caption | p. 9 | Chapter not written yet |
| Fig. 6.10 | The arm PQ is moved to the left | p. 9 | Chapter not written yet |
| Fig. 6.11 | No text caption | p. 11 | Chapter not written yet |
| Fig. 6.12 | Two long co-axial | p. 13 | Chapter not written yet |
| Fig. 6.13 | AC Generator | p. 17 | Chapter not written yet |
| Fig. 6.14 | An alternating emf is generated by a loop of wire rotating in a magnetic field. | p. 19 | Chapter not written yet |
| Fig. 6.15 | No text caption | p. 22 | Chapter not written yet |
| Fig. 6.16 | No text caption | p. 23 | Chapter not written yet |
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| Fig. 7.2 | No text caption | p. 2 | Chapter not written yet |
| Fig. 7.3 | The rms current I is related to the | p. 3 | Chapter not written yet |
| Fig. 7.5 | No text caption | p. 5 | Chapter not written yet |
| Fig. 7.6 | A Phasor diagram for the circuit in Fig. 7.5. | p. 7 | Chapter not written yet |
| Fig. 7.7 | An ac source | p. 8 | Chapter not written yet |
| Fig. 7.8 | No text caption | p. 9 | Chapter not written yet |
| Fig. 7.9 | No text caption | p. 10 | Chapter not written yet |
| Fig. 7.10 | A series LCR circuit | p. 10 | Chapter not written yet |
| Fig. 7.12 | Impedance | p. 12 | Chapter not written yet |
| Fig. 7.13 | Phasor diagram of V and I. | p. 12 | Chapter not written yet |
| Fig. 7.15 | No text caption | p. 16 | Chapter not written yet |
| Fig. 7.16 | Two arrangements for winding of primary and secondary coil in a transformer: | p. 13 | Chapter not written yet |
| Fig. 7.17 | No text caption | p. 24 | Chapter not written yet |
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| Fig. 8.2 | The | p. 4 | Chapter not written yet |
| Fig. 8.3 | A linearly polarised electromagnetic wave, | p. 6 | Chapter not written yet |
| Fig. 8.4 | The electromagnetic spectrum, with common names for various | p. 9 | Chapter not written yet |
| Fig. 8.5 | No text caption | p. 13 | Chapter not written yet |
| Fig. 8.6 | No text caption | p. 14 | Chapter not written yet |
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| Fig. 9.2 | The Cartesian Sign Convention. | p. 2 | Chapter not written yet |
| Fig. 9.3 | Focus of a concave and convex mirror. | p. 3 | Chapter not written yet |
| Fig. 9.4 | Geometry of | p. 4 | Chapter not written yet |
| Fig. 9.5 | Ray diagram for image | p. 4 | Chapter not written yet |
| Fig. 9.6 | Image formation by (a) a concave mirror with object between | p. 6 | Chapter not written yet |
| Fig. 9.8 | Refraction and reflection of light. first medium. Equation (9.10) is the well-known | p. 8 | Chapter not written yet |
| Fig. 9.11 | Refraction and internal reflection | p. 10 | Chapter not written yet |
| Fig. 9.14 | Light undergoes successive total | p. 12 | Chapter not written yet |
| Fig. 9.15 | No text caption | p. 12 | Chapter not written yet |
| Fig. 9.16 | The position of object, and the | p. 14 | Chapter not written yet |
| Fig. 9.18 | Power of a lens. | p. 16 | Chapter not written yet |
| Fig. 9.19 | Image formation by a | p. 17 | Chapter not written yet |
| Fig. 9.20 | No text caption | p. 18 | Chapter not written yet |
| Fig. 9.21 | No text caption | p. 19 | Chapter not written yet |
| Fig. 9.22 | You can see that, in general, any given value of d, except for | p. 19 | Chapter not written yet |
| Fig. 9.23 | A simple microscope; (a) the magnifying lens is located | p. 21 | Chapter not written yet |
| Fig. 9.24 | Ray diagram for the formation of image by a | p. 23 | Chapter not written yet |
| Fig. 9.25 | A refracting telescope. | p. 25 | Chapter not written yet |
| Fig. 9.26 | Schematic diagram of a reflecting telescope (Cassegrain). | p. 26 | Chapter not written yet |
| Fig. 9.27 | No text caption | p. 29 | Chapter not written yet |
| Fig. 9.28 | No text caption | p. 30 | Chapter not written yet |
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| Fig. 9.30 | No text caption | p. 33 | Chapter not written yet |
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| Fig. 10.3 | (Fig. 10.3). | p. 4 | Chapter not written yet |
| Fig. 10.4 | A plane wave AB is incident at an angle i on the surface | p. 4 | Chapter not written yet |
| Fig. 10.5 | Refraction of a plane wave incident on a | p. 6 | Chapter not written yet |
| Fig. 10.6 | Reflection of a plane wave AB by the reflecting surface MN. | p. 7 | Chapter not written yet |
| Fig. 10.7 | Refraction of a plane wave by (a) a thin prism, (b) a convex lens. | p. 7 | Chapter not written yet |
| Fig. 10.8 | Two needles oscillating in | p. 8 | Chapter not written yet |
| Fig. 10.9 | No text caption | p. 9 | Chapter not written yet |
| Fig. 10.10 | Locus | p. 9 | Chapter not written yet |
| Fig. 10.12 | Young’s arrangement to produce interference pattern. | p. 11 | Chapter not written yet |
| Fig. 10.13 | Computer generated fringe pattern produced by two point | p. 12 | Chapter not written yet |
| Fig. 10.16 | No text caption | p. 14 | Chapter not written yet |
| Fig. 10.17 | The curves represent the displacement of a string at | p. 15 | Chapter not written yet |
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| Fig. 12.4 | Trajectory of a-particles in the | p. 5 | Chapter not written yet |
| Fig. 12.5 | Study of emission | p. 8 | Chapter not written yet |
| Fig. 12.6 | An accelerated atomic electron must spiral into the | p. 9 | Chapter not written yet |
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| Fig. 14.4 | Schematic two-dimensional | p. 6 | Chapter not written yet |
| Fig. 14.5 | Schematic model of generation of hole at site 1 and conduction electron | p. 6 | Chapter not written yet |
| Fig. 14.7 | Pentavalent donor atom (As, Sb, bonding are seen as part of the effective core | p. 8 | Chapter not written yet |
| Fig. 14.9 | Energy bands of (a) n-type semiconductor at T > 0K, (b) p-type | p. 10 | Chapter not written yet |
| Fig. 14.11 | Diode under | p. 12 | Chapter not written yet |
| Fig. 14.12 | Semiconductor diode, situation of p-n junction diode under equilibrium | p. 12 | Chapter not written yet |
| Fig. 14.15 | Diode | p. 14 | Chapter not written yet |
| Fig. 14.16 | Experimental circuit arrangement for studying V-I characteristics of | p. 14 | Chapter not written yet |
| Fig. 14.17 | No text caption | p. 15 | Chapter not written yet |
| Fig. 14.18 | Half-wave rectifier | p. 16 | Chapter not written yet |
| Fig. 14.19 | No text caption | p. 17 | Chapter not written yet |
| Fig. 14.20 | A full-wave rectifier with capacitor filter, (b) Input and output | p. 18 | Chapter not written yet |
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.
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No numbered figures were found in this chapter's text.