The following figure is a snapshot graph of a wave at t = 0 s. Draw the history graph = 6 m, for t 0s to 6 s. for this wave at x = = y (cm) 1 -1 1 m/s 1234567 -x (m)
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- Question 3 - (a) The plot below represents a snapshot of a wave in space taken a time t = 0s. Draw the history graph for this wave at x = 6m for t = 0s to t = 6s. y (cm) 1 -1 -1 1 m/s T 1 2 3 4 5 6 x (m) (b) The plot below represents the history graph of a wave at x = 0m. If the wave was moving with a speed of 1 m/s to the right. Draw a snapshot graph of this wave a t = 1s. y (cm) -1 2 В 4 5 6 t(s) -1-Refer to the snapshot graph at time t = 0.0 s. One wave, with peak value of 2, is moving to the right with velocity 1.0 m/s. A second wave, with peak value of -2, is moving to the left with velocity -2.0 m/s. At a later time t = 7.0 s, what is the displacement y of the combined wave at x = 5.0 m? -5 У LO 5 4 3 2 -1 -2 -3 -4 -5 v = +1 m/s LO 5 Snapshot graph 10 x (m) 15 v=-2 m/s 20use the wave shown above to answer the question. The wave is travelling to the right with a speed of 1.5m/s. this history graph was taken at x = 2.0m. A) what is the frequency of this wave? B) what is the wave number of this wave? C) what is the phase constant of this wave?
- In a student laboratory exercise, the wavelength of a 30,300 Hz ultrasound wave is measured to be 1.143 cm. Find the air temperature (in K). KWhat mathematical relationship exists between the wave speed and and the tension of the medium according to the POWER trendline equation from the graph? Be specific with the answer (i.e., describe the full mathematica proportionality between the two variables) Feel free to use the graph. Table: Frequency (Hz) Density (kg/m) Tension (N) Speed (cm/s) Wavelength (cm) 0.75 1.0 2.0 141.4 188.53 0.75 1.0 2.5 158.1 210.8 0.75 1.0 3.0 173.2 230.93 0.75 1.0 3.5 187.1 249.47 0.75 1.0 4.0 200 266.67