A pulse with a speed of 1.0 m/s is approaching the fixed end of a spring. The shape of the spring at t = 0.0 s is shown on the diagram at right. a. Consider the time interval during which the pulse reflects from the fixed end. W anges to hos bo Predict whether theow. maximum magnitude of the transverses displacement of the spring will exceed that of the incident pulse (20 cm). Explain. 5538 b. Determine the shape of the spring at t = 0.3 s, 0.6 s, and 0.9 s.

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4a-4b please!
1= 0.0 s
A pulse with a speed of
1.0 m/s is approaching the
fixed end of a spring. The
shape of the spring at t = 0.0 s
is shown on the diagram at
right.
Fixed
end
a. Consider the time interval
during which the pulse
reflects from the fixed
end.
|(1 square = 10 cm)
t= 0.3 s
Predict whether the
maximum magnitude of
the transverse goaqS
displacement of the
spring will exceed that of
the incident pulse
(20 cm). Explain.
t= 0.6 s
bos
t= 0.9 s
b. Determine the shape of
the spring at t= 0.3 s,
0.6 s, and 0.9 s.
Tutorials in Introductory Physics
McDermott, Shaffer, & P.E.G., U. Wash.
©Pearson Custom Publish
Updated Preliminary Second Edition, 2-
Transcribed Image Text:1= 0.0 s A pulse with a speed of 1.0 m/s is approaching the fixed end of a spring. The shape of the spring at t = 0.0 s is shown on the diagram at right. Fixed end a. Consider the time interval during which the pulse reflects from the fixed end. |(1 square = 10 cm) t= 0.3 s Predict whether the maximum magnitude of the transverse goaqS displacement of the spring will exceed that of the incident pulse (20 cm). Explain. t= 0.6 s bos t= 0.9 s b. Determine the shape of the spring at t= 0.3 s, 0.6 s, and 0.9 s. Tutorials in Introductory Physics McDermott, Shaffer, & P.E.G., U. Wash. ©Pearson Custom Publish Updated Preliminary Second Edition, 2-
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