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Physical Education · Class 12 Optional

Ch 8Biomechanics and Sports — Class 12 Physical Education, concept-first.

Every sprint start, every curving free kick and every lift in the gym is governed by the laws of physics acting on the human body. Biomechanics is the branch of sports science that studies exactly this — how forces, levers and motion combine to produce movement.

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Biomechanics Definition

You already understand biomechanics better than you think. Watch a cat land on its feet after a fall. Notice how a fast bowler's arm whips through the final delivery stride.

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Chapter contents

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Biomechanics & Sports

Every sprint start, every curving free kick and every lift in the gym is governed by the laws of physics acting on the human body.

Introduction

Biomechanics is the science of the movement of a living body — the way muscles, bones, tendons and ligaments work together to produce motion.

8.1

Newton's Laws of Motion and their Application in Sports

9 Q

Sir Isaac Newton (1642–1727) was one of the greatest scientists and mathematicians in history. He set out three general rules describing how objects move, known today as Newton's Three Laws of Motion.…

8.1.1

Newton's First Law of Motion (Law of Inertia)

Newton's First Law of Motion, also called the Law of Inertia, states that a body continues in its state of rest, or of uniform motion in a straight line, unless an external (resultant) force acts on i…

8.1.2

Newton's Second Law of Motion (Law of Momentum)

Newton's Second Law of Motion (the Law of Momentum) states that the rate of change of momentum of a body is proportional to the resultant force applied, and that this change takes place in the directi…

8.1.3

Newton's Third Law (Law of Reaction)

Newton's Third Law of Motion states that for every action there is an equal and opposite reaction: whenever one object (A) exerts a force on a second object (B), object B exerts a force of exactly the…

8.2

Levers

9 Q

A lever is a type of simple machine, and the human body uses levers as its mechanism for movement. Although levers belong to the skeletal system, it is the muscles that supply the force to work them:…

8.2.1

Types of Levers

There are three classes of lever, distinguished by which component — fulcrum, effort or load — lies in the middle.

8.2.3

Application in Sports

The human leverage system is built for speed and range of movement rather than for force. Most muscles attach very close to the joint, giving short force arms and long resistance arms — the biceps for…

8.3

Equilibrium (Stability / Balance)

9 Q

When we say that something is stable or balanced, we usually mean that it is not easily upset — it takes real effort to topple it. An unstable object, by contrast, is tipped over easily.

8.3.1

Types of Equilibrium

With respect to the state of a body, equilibrium is divided into two categories: static equilibrium and dynamic equilibrium.

8.3.2

Factors Increasing Equilibrium

Several factors decide how much equilibrium — how much stability — a body has. An athlete who understands them can set up a far more stable position.

8.3.3

Centre of Gravity

The centre of gravity (CG) is the point at which the whole weight — or mass — of a body may be taken to be concentrated.

8.4

Friction & Sports

11 Q

Friction is a force that opposes the motion between two surfaces that are in contact. It always acts in the direction opposite to the way an object is moving — or trying to move.

8.4.1

Types of Friction

Friction is grouped into two broad kinds — static friction and kinetic friction — and kinetic friction is itself of three types.

8.4.2

Methods of Reducing Friction

Although friction is essential in sport, there are many situations where it must be reduced to save energy, cut wear, or let equipment and the body move more efficiently.

8.4.3

Advantages and Disadvantages of Friction in the Field of Sports

Friction is a classic example of a "necessary evil": sport could not happen without it, yet too much of it causes real problems.

8.5

Projectile in Sports

14 Q

A projectile is an object that, once thrown or dropped, keeps moving by its own inertia and is acted upon by only one real force — the downward pull of gravity (with air resistance also at work in pra…

+8.5 — Extension Activity1 question
  1. Q1Identify Projectile in Sports: Make groups in your class and, during your physical education period, select 5 sports and try to apply the pr…Preview
+8.5 — Multiple Choice Questions3 questions
  1. Q1Factors that bring air resistance into play a. Larger the surface area b. Rough surface c. Smaller the mass d. All of the aboveFree
  2. Q2The motion of a projectile is due to two separates simultaneously occurring components of motion and they are a. One along the vertical b. O…Preview
  3. Q3According to Professor John Fontanella, the ideal angles from the free-throw line will vary from ____ to ___with shorter players. a. 48.7 de…Preview
+8.5 — Short Answer Questions2 questions
  1. Q1Define Projectile.Free
  2. Q2What is Air Resistance? list any four factors.Preview
+8.5 — Long Answer Questions3 questions
  1. Q1With suitable example explain different types of projectiles in sports.Free
  2. Q2Discuss various Factors affecting projectile motion.Preview
  3. Q3Is projectile advantageous in games and sports? Justify.Preview
+8.5 — Assertion Table1 question
  1. Q1IV. Read the given situations and write which of Newton's Laws of Motion applies to it. | S.no. | Sports situation | Law of motion | |---|--…Preview
+8.5 — Art Integration1 question
  1. Q1V. ART INTEGRATION – IDENTIFY, PERFORM AND MAKE CARDS: We do different types of activities in our daily life routine; in the same way, newto…Preview
+8.5 — Sports Integrated1 question
  1. Q1VI. SPORTS INTEGRATED: Sports science is a fascinating topic on its own, and most physical sports require having a basic understanding of sc…Preview
+8.5 — Case Study Questions2 questions
  1. Q1VII. Case Study 1: During her gymnastics practice, Zoya was finding it difficult to maintain her balance on the balancing beam. Her coach tr…Free
  2. Q2VII. Case Study 2: While explaining how to release a basketball at a correct angle to successfully score points, the basketball coach showed…Preview
8.5.1

Factors Affecting Projectile Trajectory / Flight Path

The path a projectile follows — its trajectory or flight path — depends on six main factors: (a) gravity, (b) air resistance, (c) speed of release, (d) angle of release, (e) height of release, and (f)…

8.5.2

Application of Projectile in Sports

Projectile motion turns up throughout daily life, technology and especially sport. Because most sports involve the flight of a projectile — usually a ball — physics can be used to work out the optimal…

Summary

- Biomechanics is the science of the movement of a living body — how muscles, bones, tendons and ligaments work together — and it is part of kinesiology.

More questions

50 Q
+Show 48 questions48 questions
  1. Q1What is biomechanics? Explain the importance of biomechanics in the field of sports.Free
  2. Q1Newton's First Law of Motion is also known as the law of: (a) acceleration (b) inertia (c) action and reaction (d) gravitationFree
  3. Q1Define biomechanics and state any one of its uses in sports.Free
  4. Q1A football of mass 0.45 kg is at rest on the ground. A player's boot applies a force of 90 N to it. (i) Using F = ma, calculate the accelera…Preview
  5. Q1Read the following passage and answer the questions that follow. Meera, a 60 kg sprinter, settles into the starting blocks wearing spiked sh…Preview
  6. Q1Explain the three classes of levers. For each class, give the order of the fulcrum, effort and load, one example from the human body, one sp…Preview
  7. Q2How does the knowledge of biomechanics help in improving technique and preventing injuries in sports?Preview
  8. Q2The equation F = ma is the mathematical statement of Newton's: (a) First Law (b) Second Law (c) Third Law (d) Law of Universal GravitationPreview
  9. Q2What is a lever? Name its three essential parts.Preview
  10. Q2In a biceps curl, the elbow joint is the fulcrum, the biceps inserts on the radius 5 cm from the elbow, and a dumbbell of weight 60 N is hel…Preview
  11. Q2Read the following passage and answer the questions that follow. At the school athletics meet, Karan competes in the shot put and Ravi in th…Preview
  12. Q2State Newton's three laws of motion and explain the application of each in sports with a suitable example. In your answer, explain (a) why a…Preview
  13. Q3State Newton's three laws of motion.Preview
  14. Q3A swimmer pushes backward against the wall of the pool and moves forward. The action and the reaction forces here are: (a) equal in magnitud…Preview
  15. Q3State Newton's Second Law of Motion and write its equation, defining each symbol with its SI unit.Preview
  16. Q3A javelin is released with a speed of 14 m/s. Taking g = 9.8 m/s² and using the level-ground range formula R = (v² sin 2θ)/g (air resistance…Preview
  17. Q3What is a projectile? Explain the five factors that affect the trajectory of a projectile in sports. Write the range formula for level groun…Preview
  18. Q4Explain Newton's three laws of motion with their application in sports, giving a suitable example for each.Preview
  19. Q4In which class of lever does the LOAD lie between the fulcrum and the effort? (a) First class (b) Second class (c) Third class (d) None of t…Preview
  20. Q4What is meant by the mechanical advantage of a lever? Write its formula and state what MA > 1 tells you about the lever.Preview
  21. Q4Explain the three types of friction — static, sliding (kinetic) and rolling — giving one sporting example of each and stating which of the t…Preview
  22. Q4What is friction? Explain its types, and describe the methods used to increase and to decrease friction in sports. Discuss any three advanta…Preview
  23. Q5What is a lever? Name and label its three parts — fulcrum, effort and load.Preview
  24. Q5Standing on tiptoes (plantar flexion), with the ball of the foot as the fulcrum, the body weight as the load and the calf muscles providing…Preview
  25. Q5Define centre of gravity and line of gravity.Preview
  26. Q5Explain any three factors that affect the stability of a sportsperson, giving a suitable example from a sport for each factor.Preview
  27. Q6Explain the three classes of levers with a suitable example of each and their application in sports.Preview
  28. Q6A third-class lever, such as the forearm during a biceps curl, always has a mechanical advantage that is: (a) greater than 1 (b) equal to 1…Preview
  29. Q6Differentiate between static friction and sliding (kinetic) friction, giving one sporting example of each.Preview
  30. Q6Explain Newton's Third Law of Motion with two applications from sport (one from swimming and one from sprinting). Also explain why the actio…Preview
  31. Q7What is equilibrium? Differentiate between static and dynamic equilibrium with examples from sports.Preview
  32. Q7In a lever, the effort arm is 4 cm and the load arm is 32 cm. Its mechanical advantage, MA = (effort arm)/(load arm), is: (a) 8 (b) 4 (c) 0.…Preview
  33. Q8What is centre of gravity? Explain the factors that affect stability and balance in sports.Preview
  34. Q8A cyclist riding in a straight line at a constant speed of 20 km/h on a level road is in: (a) static equilibrium (b) dynamic equilibrium (c)…Preview
  35. Q9What is friction? Explain its types with suitable examples.Preview
  36. Q9Which combination gives a wrestler the GREATEST stability? (a) Narrow base of support and a high centre of gravity (b) Wide base of support…Preview
  37. Q10Explain the advantages and disadvantages of friction in sports. How can friction be increased or decreased?Preview
  38. Q10In the anatomical standing position, the centre of gravity of an adult male lies approximately at the level of the: (a) sternum (b) second s…Preview
  39. Q11What is a projectile? Explain the factors that affect the trajectory of a projectile in sports.Preview
  40. Q11For the same pair of surfaces, the three types of friction arranged from LARGEST to SMALLEST are: (a) rolling > sliding > static (b) sliding…Preview
  41. Q12How does the angle of projection affect the distance covered by a projectile? Explain with reference to throwing events such as shot put or…Preview
  42. Q12The maximum static friction available to an athlete is given by fₛ^(max) = μₛ N. A sprinter wears spiked shoes mainly in order to: (a) reduc…Preview
  43. Q13Explain the application of the law of action and reaction in swimming and sprinting.Preview
  44. Q13Which of the following is a DISADVANTAGE of friction in sports? (a) It allows a sprinter to push off the blocks (b) It enables a fielder to…Preview
  45. Q14“A lower centre of gravity and a wider base of support increase stability.” Justify this statement with examples from sports.Preview
  46. Q14For a projectile launched and landing at the same height, with air resistance neglected, the angle of projection that gives the maximum hori…Preview
  47. Q15Using R = (v² sin 2θ)/g, if the speed of release of a projectile is doubled while the angle of projection is kept the same, the horizontal r…Preview
  48. Q16The optimum angle of release in the shot put is LESS than 45° mainly because: (a) the shot is very light and is affected strongly by air res…Preview
+Show 1 question1 question
  1. Q1Given below are two statements, one of which is labelled as Assertion (A) and the other is labelled as Reason (R). Read both the statements…Preview
+Show 1 question1 question
  1. Q1Given below are examples of friction shown in List-I with their respective types of friction in List-II. List-I (Example of friction): (a) P…Preview