For Exercises 53-54, use the model d = a e − c t cos ω t or d = a b k t cos w t to represent damped harmonic motion. A pendulum is pulled π 18 radians to one side and then released. The angular displacement θ follows a pattern of damped harmonic motion with each cycle lasting 2 sec . If the maximum displacement for each cycle decreases by 20 % , find a function that models the angular displacement t sec after being released.
For Exercises 53-54, use the model d = a e − c t cos ω t or d = a b k t cos w t to represent damped harmonic motion. A pendulum is pulled π 18 radians to one side and then released. The angular displacement θ follows a pattern of damped harmonic motion with each cycle lasting 2 sec . If the maximum displacement for each cycle decreases by 20 % , find a function that models the angular displacement t sec after being released.
Solution Summary: The author explains the function that models the angular displacement of the pendulum after time, t, following a pattern of damped harmonic motion.
For Exercises 53-54, use the model
d
=
a
e
−
c
t
cos
ω
t
or
d
=
a
b
k
t
cos
w
t
to represent damped harmonic motion.
A pendulum is pulled
π
18
radians to one side and then released. The angular displacement
θ
follows a pattern of damped harmonic motion with each cycle lasting
2
sec
. If the maximum displacement for each cycle decreases by
20
%
, find a function that models the angular displacement
t
sec
after being released.
University Calculus: Early Transcendentals (3rd Edition)
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