Question 1: a)An simple harmonic oscillating system has a displacement equation x(t) = (7.4 m) cos (8.6t). Find the period of oscillation in seconds to 2 sf. Assume all values are in Sl units )An oscillating system doing SHM has a displacement equation x(t) = (1.4 m) Cos (38.5t). All units are SI. What is the Frequency of the oscillation in Hertz (Hz)? Give your answer to 3 sf. )An oscillator has an equation x(t) = (0.45 m) cos ( 357 t). Assuming ? is in Sl units, calculate the frequency in Hz to 2 sf.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter16: Oscillations
Section: Chapter Questions
Problem 68PQ: Consider the system shown in Figure P16.68 as viewed from above. A block of mass m rests on a...
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Question 1:
a)An simple harmonic oscillating
system has a displacement equation
x(t) = (7.4 m) cos (8.6t). Find the period
of oscillation in seconds to 2 sf.
Assume all values are in Sl units
b)An oscillating system doing SHM has
a displacement equation x(t) = (1.4 m)
cos (38.5t). All units are SI. What is the
frequency of the oscillation in Hertz
(Hz)? Give your answer to 3 sf.
c)An oscillator has an equation x(t) =
(0.45 m) cos ( 357 t). Assuming ? is in Sl
units, calculate the frequency in Hz to
2 sf.
Transcribed Image Text:Question 1: a)An simple harmonic oscillating system has a displacement equation x(t) = (7.4 m) cos (8.6t). Find the period of oscillation in seconds to 2 sf. Assume all values are in Sl units b)An oscillating system doing SHM has a displacement equation x(t) = (1.4 m) cos (38.5t). All units are SI. What is the frequency of the oscillation in Hertz (Hz)? Give your answer to 3 sf. c)An oscillator has an equation x(t) = (0.45 m) cos ( 357 t). Assuming ? is in Sl units, calculate the frequency in Hz to 2 sf.
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