A 36 kg child stands on a roof, 29 m above a trampoline held by firemen. The trampoline has a stiffness of 809 N/m. To save himself from the flames, the child musters the courage to jump, and lands on the trampoline. Calculate the maximum compression of the trampoline, in m. (Please answer to the fourth decimal place - i.e 14.3225)
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A 36 kg child stands on a roof, 29 m above a trampoline held by firemen. The trampoline has a stiffness of 809 N/m. To save himself from the flames, the child musters the courage to jump, and lands on the trampoline. Calculate the maximum compression of the trampoline, in m.
(Please answer to the fourth decimal place - i.e 14.3225)
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- I am requesting help on the very last portion of this problem at the bottom as I have completed all other portions correct. I have previously answered 15.4J and 0J, which were both incorrect. Thank you.I was given this problem, and I don't really know what to do about the fact that the normal force doesn't equal the weight for this problem. How am I supposed to find the kinetic friction coefficient now? A box of mass 2,463g is on level ground being pulled by a force of 6.41N at angle 47.2 above horizontal. If the block is moving with a constant velocity, what is the kinetic friction coefficient? (Hint: the normal force does not always equal the weight; it does not in this case.)Calculate the resultant ground reaction force during the inital contact phase (to the nearest whole number) given the following data vertical force Z =995 N and horizontal force X = -261 N Answer e to search E D Check C R F V Bi T G St 6 B H N J 8 M L O P₂ P ? ctri greeus / 3 pause 5°C Mostly cloudy # lock 7 home 4 Next page 1 12:15 30/11/2023 8
- A 61.9-kg circus performer is fired from a cannon that is elevated at an angle of 57.3 ° above the horizontal. The cannon uses strong elastic bands to propel the performer, much in the same way that a slingshot fires a stone. Setting up for this stunt involves stretching the bands by 2.35 m from their unstrained length. At the point where the performer flies free of the bands, his height above the floor is the same as that of the net into which he is shot. He takes 3.02 s to travel the horizontal distance of 28.7 m between this point and the net. Ignore friction and air resistance and determine the effective spring constant of the firing mechanism. Number i UnitsA 68.3-kg circus performer is fired from a cannon that is elevated at an angle of 52.6° above the horizontal. The cannon uses strong elastic bands to propel the performer, much in the same way that a slingshot fires a stone. Setting up for this stunt involves stretching the bands by 2.00 m from their unstrained length. At the point where the performer flies free of the bands, his height above the floor is the same as that of the net into which he is shot. He takes 2.38 s to travel the horizontal distance of 21.3 m between this point and the net. Ignore friction and air resistance and determine the effective spring constant of the firing mechanism. Number i Unitsplease answer only using algebra, no calculus