Speed of Wave equation Amplitude Frequency No. S. Wavelength wave (rad/s) A (cm) (Hz) (m) (m/s) 1 0.25 1.00 TT2 x 1 = 12 3.6 х 102 3.6х 102 0.25 x10-2 sin (2nt) 0.50 1.50 2 X 1.50 = n3 2.4 x 10-2 2.4 x 10-2 0.50x10-2 sin (3nt) 1.00x10-2sin (4nt) 1.25×10-2sin(5rt) 3. 1.00 2.00 T2 X 2 = 14 1.8 x 10-2 1.8 x 10-2 4. 1.25 2.50 T2 X 2.50 = n5 1.4 x 10-2 1.4 x 10-2

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter16: Oscillatory Motion And Waves
Section: Chapter Questions
Problem 49PE: Wind gusts create ripples on the ocean that have a wavelength at 5.00 cm and propagate at 2.00m/s....
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3- Write about the wave speed and discuss how it is affected by the change of frequency and wavelength.
Angular Frequency
Speed of
Wave equation
S.
Amplitude Frequency
Wavelength
wave
(rad/s)
No.
A
(cm)
(Hz)
(m)
(m/s)
1
0.25
1.00
Tt2 x 1 = 2
3.6 x 10-2
3.6 x 10-2
0.25 x10-2 sin (2nt)
0.50
1.50
T2 X 1.50 = T3
2.4 x 102
2.4 x 10-2
0.50x10-2 sin (3nt)
1.00x10-sin (4nt)
1.25x10-2sin(5t)
1.00
2.00
IT2 X 2 = T4
1.8 x 10-2
1.8 x 10-2
4
1.25
2.50
T2 X 2.50 = n5
1.4 x 10-2
1.4 x 10-2
Transcribed Image Text:Angular Frequency Speed of Wave equation S. Amplitude Frequency Wavelength wave (rad/s) No. A (cm) (Hz) (m) (m/s) 1 0.25 1.00 Tt2 x 1 = 2 3.6 x 10-2 3.6 x 10-2 0.25 x10-2 sin (2nt) 0.50 1.50 T2 X 1.50 = T3 2.4 x 102 2.4 x 10-2 0.50x10-2 sin (3nt) 1.00x10-sin (4nt) 1.25x10-2sin(5t) 1.00 2.00 IT2 X 2 = T4 1.8 x 10-2 1.8 x 10-2 4 1.25 2.50 T2 X 2.50 = n5 1.4 x 10-2 1.4 x 10-2
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