3m 10 m 10 m You've made it to the top deck on the diving tower, 10 m above both the ground level deck and the water, and 3 m wide, as in the diagram above (not to scale). Your friend has dared you to run and jump horizontally, so as to go as far forwards as you can before hitting the water. But you see that the far side of the pool is only 10 m from the edge of your platform. a) Treating yourself as a projectile (something only recommended in theory) travelling horizontally as you leave the platform. How fast would you have to run in order to travel 10 metres horizontally before hitting the water? Give your answer to only one significant figure. Speed v = m.s Do not try to answer this question experimentally.

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You've made it to the top deck on the diving tower, 10 m above both the ground level deck and the water, and 3 m wide, as in the diagram above (not to scale). Your
friend has dared you to run and jump horizontally, so as to go as far forwards as you can before hitting the water. But you see that the far side of the pool is only 10 m
from the edge of your platform.
a) Treating yourself as a projectile (something only recommended in theory) travelling horizontally as you leave the platform. How fast would you have to run in order to
travel 10 metres horizontally before hitting the water? Give your answer to only one significant figure.
Speed v =,
m.s
Do not try to answer this question experimentally.
Transcribed Image Text:3m 10 m 10 m You've made it to the top deck on the diving tower, 10 m above both the ground level deck and the water, and 3 m wide, as in the diagram above (not to scale). Your friend has dared you to run and jump horizontally, so as to go as far forwards as you can before hitting the water. But you see that the far side of the pool is only 10 m from the edge of your platform. a) Treating yourself as a projectile (something only recommended in theory) travelling horizontally as you leave the platform. How fast would you have to run in order to travel 10 metres horizontally before hitting the water? Give your answer to only one significant figure. Speed v =, m.s Do not try to answer this question experimentally.
Using the information from question #363a above;
b) What horizontal acceleration do you need to achieve the speed calculated in (a)?
Acceleration a =
m.s-2.
c)
Can you accelerate this fast in this situation?
Transcribed Image Text:Using the information from question #363a above; b) What horizontal acceleration do you need to achieve the speed calculated in (a)? Acceleration a = m.s-2. c) Can you accelerate this fast in this situation?
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