A mass of 400 g shown in given Figure is hooked up to a mild spring whose pressure regular is 5kN/m. it is free to oscillate on a horizontal frictionless track. If the mass is displaced 10cm from equilibrium and launched from relaxation, discover (a) duration of motion,( b) maximum speed of the mass, (c) maximum acceleration of the mass, and (d) equations for displacement, speed and acceleration as function of time..
A mass of 400 g shown in given Figure is hooked up to a mild spring whose pressure regular is 5kN/m. it is free to oscillate on a horizontal frictionless track. If the mass is displaced 10cm from equilibrium and launched from relaxation, discover (a) duration of motion,( b) maximum speed of the mass, (c) maximum acceleration of the mass, and (d) equations for displacement, speed and acceleration as function of time..
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A mass of 400 g shown in given Figure is hooked up to a mild spring whose pressure regular is 5kN/m. it is free to oscillate on a horizontal frictionless track. If the mass is displaced 10cm from equilibrium and launched from relaxation, discover
(a) duration of motion,(
b) maximum speed of the mass,
(c) maximum acceleration of the mass, and
(d) equations for displacement, speed and acceleration as function of time..
![had b
m
t = 0
A = Xo
Vo = 0
x= A cos @nt
777777](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc7186e49-61a2-4fbf-90c6-a13d7ef6dc08%2Ffe791285-f0c3-4a35-8ec1-e1c013f72f17%2Fzd2q8cn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:had b
m
t = 0
A = Xo
Vo = 0
x= A cos @nt
777777
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