1 % Define variable(s) here. 2 k=0.24 3 m=b5 4 g=9.81 5 t=8 7 v=(sqrt((m*g)/k) )*tanh(sqrt((k*g*t/m))) 8. 9 d=(m/k)*Log [cosh(sqrt((k*g*t)/m)]
1 % Define variable(s) here. 2 k=0.24 3 m=b5 4 g=9.81 5 t=8 7 v=(sqrt((m*g)/k) )*tanh(sqrt((k*g*t/m))) 8. 9 d=(m/k)*Log [cosh(sqrt((k*g*t)/m)]
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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My v and d are incorrect, please write them correctly
![The velocity v and the falling distance d as a function of time of a skydiver that experience the air resistance can be approximated by:
v(1) =
mg tanh
and d(t) = m In cosh
kg ,
where k = 0.24 Kg is a constant, m is the skydiver mass, g = 9.81 " is the acceleration due to gravity, and i is the time in seconds since the skydiver starts falling. Write
m
MATLAB code to determine the velocity v and the falling distance d at i = 8s for a 95kg skydiver.
Script e
C Reset
I MATLAB Docur
1 % Define variable(s) here.
2 k=0.24
m=p5
4 g=9.81
t=8
6
7 v=(sqrt((m*g)/k))*tanh(sqrt((k*g*t/m)))
8
9 d=(m/k)*log [cosh(sqrt((k*g*t)/m)]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd53b5d21-36fa-4ee2-932f-fd40dc0982c5%2F2cc17e88-62e4-4dec-acaa-5cf1415805df%2Fd20mna6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The velocity v and the falling distance d as a function of time of a skydiver that experience the air resistance can be approximated by:
v(1) =
mg tanh
and d(t) = m In cosh
kg ,
where k = 0.24 Kg is a constant, m is the skydiver mass, g = 9.81 " is the acceleration due to gravity, and i is the time in seconds since the skydiver starts falling. Write
m
MATLAB code to determine the velocity v and the falling distance d at i = 8s for a 95kg skydiver.
Script e
C Reset
I MATLAB Docur
1 % Define variable(s) here.
2 k=0.24
m=p5
4 g=9.81
t=8
6
7 v=(sqrt((m*g)/k))*tanh(sqrt((k*g*t/m)))
8
9 d=(m/k)*log [cosh(sqrt((k*g*t)/m)]
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