6) 2 sinusoidal waves are traveling in opposite direction and have the following wave functions: y1 = 0. 6 sin (+0,25t + 27x) y2 = 0.6 sin (-0,25t Determine the maximum amplitude of the point situated at x= 0.5m 2nx) due to the resultant wave A- Amplitude = 1.2 m B- Amplitude = 0.6 m C-Amplitude = 0.3 m D-Amplitude = 0. 1m E Amplitude = 0 m

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Chapter1: Units, Trigonometry. And Vectors
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6) 2 sinusoidal waves are traveling in opposite direction and have the
following wave functions:
y1 = 0. 6 sin (+0,25t + 27x)
y2 = 0. 6 sin (-0,25t + 27x)
Determine the maximum amplitude of the point situated at x= 0.5m
due to the resultant wave
A- Amplitude = 1. 2 m
B- Amplitude = 0.6 m
C-Amplitude = 0.3 m
D -Amplitude = 0.1m
E- Amplitude = 0 m
A
В
D
E
Transcribed Image Text:6) 2 sinusoidal waves are traveling in opposite direction and have the following wave functions: y1 = 0. 6 sin (+0,25t + 27x) y2 = 0. 6 sin (-0,25t + 27x) Determine the maximum amplitude of the point situated at x= 0.5m due to the resultant wave A- Amplitude = 1. 2 m B- Amplitude = 0.6 m C-Amplitude = 0.3 m D -Amplitude = 0.1m E- Amplitude = 0 m A В D E
Q5
5) A standing wave is formed in a chord of length 3 m . The observed
wave is formed from 5 loops using a vibrator frequency of 20 Hz and
a mass attached of 120g. Determine the speed of the waves forming
the resultant standing wave.
Vihrator
A V = 24m/sec
B- V = 18m/sec
C-V = 12m/sec
D- V= 6m/sec
E- V= 2m/sec
A
В
C
D
E
Transcribed Image Text:Q5 5) A standing wave is formed in a chord of length 3 m . The observed wave is formed from 5 loops using a vibrator frequency of 20 Hz and a mass attached of 120g. Determine the speed of the waves forming the resultant standing wave. Vihrator A V = 24m/sec B- V = 18m/sec C-V = 12m/sec D- V= 6m/sec E- V= 2m/sec A В C D E
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