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  1. 3 dni temu · The concept of measuring flight time dates back to the early days of aviation. As helicopters became a vital part of transportation, search and rescue, and military operations, accurately calculating flight duration has become essential for operational success and safety. ... Calculation Formula. The formula to calculate the flight duration of ...

  2. 4 dni temu · Note:Remember the formulas for range and time period for a particle in projectile motion. Also, we used some trigonometric identities in this problem, remember those identities too. Also, we used some trigonometric identities in this problem, remember those identities too.

  3. 4 dni temu · If we see the above figure we can clearly see that the height of the projectile is twice the range of the projectile. Let us say the time taken by the projectile to reach its maximum height is T. Therefore the total time of flight is 2T.

  4. 3 dni temu · Hint: Time of flight is the time taken by body to reach the projection. The vertical displacement during time of ascent is the maximum height. The energy stored as a result of deforming an elastic body is termed as Elastic potential. Use the above statement to find the relation between the time of flight and the maximum height obtained.

  5. 3 dni temu · Ask your instructor for an explanation. If you calculate the range for a projectile launched at 30 o, you will find it's the same as a projectile launched at 60 o. The same goes for 40 o and 50 o. The graph of range vs angle is symmetrical around the 45 o maximum. The equations used to find out various parameters are shown below; Time of flight,

  6. 5 dni temu · Hint: We need to use the formulas for the range of a body in projectile motion and the time of flight of a body in projectile motion.Then we need to find the values of the time of flights and then find the product as well as the division result. Formula Used: The formulae used in the solution are given here. The range of a projectile is given by,

  7. 5 dni temu · Therefore the time of flight is calculated as, \[T=2.86s\] (c) Range of the projectile is required to be calculate here, The range of a projectile is given by the formula, \[R=u\times \cos \theta \times T\] Where \[T\] the time of flight of the projectile is. Substituting the values in it will give,

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