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Important Questions for Practice - Biomechanics and Sports | Physical Education Class 12(XII) - Notes & Model Test Papers - Humanities/Arts PDF Download

Short Answer Type Questions 
Q.1. What is the angular movement?
Q.2. What is power?
Q.3. What is a projectile?
Q.4. What is the linear movement?
Q.5. What is projectile motion?
Q.6. What is friction?
Q.7. What is work?
Q.8. What is sliding friction?
Q.9. How angular movement takes place between bones?
Q.10. Write the characteristics of projectile's trajectory?
Q.11. What are the types of angular movement?
Q.12. What is work? What are its units?
Q.13. What is extension?
Q.14. What is kinetic energy?
Q.15. What is potential energy?

Long Answer Type Questions 
Q.1. What are the advantages and disadvantages of friction?
Q.2. Write down the work, power, and energy.
Q.3. What are angular and linear movements?
Q.4. Write down the mechanical analysis of walking and running.
Q.5. What is friction? Write its types.

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FAQs on Important Questions for Practice - Biomechanics and Sports - Physical Education Class 12(XII) - Notes & Model Test Papers - Humanities/Arts

1. How does biomechanics contribute to improving sports performance?
Biomechanics helps athletes and sports professionals understand the mechanics of human movement, allowing them to optimize performance and prevent injuries. By analyzing factors such as body positioning, force application, and joint movements, biomechanics can provide insights into technique refinement, training modifications, and equipment design.
2. What are the key principles of biomechanics in sports?
The key principles of biomechanics in sports include the analysis of forces, motion, and the interaction between the athlete and the environment. It involves studying factors such as velocity, acceleration, momentum, and the application of external forces to understand and enhance athletic performance.
3. How can biomechanics help in injury prevention in sports?
Biomechanics plays a crucial role in injury prevention by identifying potential risk factors and designing strategies to mitigate them. By analyzing an athlete's movement patterns, joint loading, and muscle imbalances, biomechanics experts can suggest corrective exercises, modify technique, or recommend equipment adjustments to reduce the risk of injury.
4. What role does biomechanics play in sports equipment design?
Biomechanics provides valuable insights into the design and optimization of sports equipment. By analyzing the interaction between the athlete and the equipment, biomechanics experts can identify areas for improvement, such as enhancing energy transfer, reducing drag, or improving stability. This information is used to develop equipment that can enhance performance and provide a competitive edge.
5. Can biomechanics be used in sports rehabilitation?
Yes, biomechanics is widely used in sports rehabilitation to guide the recovery process and prevent future injuries. By analyzing an athlete's movement patterns, joint range of motion, and muscle imbalances, biomechanics experts can develop tailored rehabilitation programs that address specific deficiencies and promote optimal movement patterns. This can help athletes regain their pre-injury performance level and reduce the risk of re-injury.
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