Problem 3.76 21 of 23 Constants I Periodic Table An Olympic long jumper is capable of jumping 8.0 m. Assume that his horizontal speed is 9.0 m/s as he leaves the ground and that he lands standing upright-that is, the same way he left the ground. How long is the jumper in the air? Express your answer using two significant figures. Ηνα ΑΣφ t%3D Request Answer Submit Part B How high does the jumper go? Express your answer using two significant figures. nνα ΑΣφ Ymax = m Request Answer Submit

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter2: Newtonian Mechanics-single Particle
Section: Chapter Questions
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Please help me. Make sure to give clear answers for all the parts and this problem has 2 parts. 

Problem 3.76
21 of 23
Constants I Periodic Table
An Olympic long jumper is capable of jumping 8.0 m.
Assume that his horizontal speed is 9.0 m/s as he leaves
the ground and that he lands standing upright-that is, the
same way he left the ground.
How long is the jumper in the air?
Express your answer using two significant figures.
Ηνα ΑΣφ
t%3D
Request Answer
Submit
Part B
How high does the jumper go?
Express your answer using two significant figures.
nνα ΑΣφ
Ymax =
m
Request Answer
Submit
Transcribed Image Text:Problem 3.76 21 of 23 Constants I Periodic Table An Olympic long jumper is capable of jumping 8.0 m. Assume that his horizontal speed is 9.0 m/s as he leaves the ground and that he lands standing upright-that is, the same way he left the ground. How long is the jumper in the air? Express your answer using two significant figures. Ηνα ΑΣφ t%3D Request Answer Submit Part B How high does the jumper go? Express your answer using two significant figures. nνα ΑΣφ Ymax = m Request Answer Submit
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