Wave Properties Define all the terms. Label the starred terms on the picture. Measure or calculate the terms that have a © next to them. You can show your works for these at the bottom. You will need a ruler to help with this. Assume that the all the waves shown occur in one second. *Crest *OAmplitude *Trough OPeriod *Rest line OFrequency *OWavelength OWave speed
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- Using the diagram, a. Compare (and contrast) how line A and line B are formed. b. On the diagram, draw in all the lines of constructive and destructive interference, and label all of the lines with their path length difference (ΔL) in terms of the wavelength (λ).I need help with #9. Please show all work.For the E&M wave components Ex and By shown below, determine the direction that the E&M wave will travel. Clearly label on the diagram the direction that the wave will travel. Show all work.
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- please check this answersObservational experiment: Interactions of wave pulses Here, we'll explore what happens when two waves encounter each other in the same medium. 1. Observe and describe what happens when two pulses (coming from opposite directions) meet. Make sure your description is as detailed as possible, including: What happens to the wavelength of the wave that results when two waves of equal wavelength overlap? And, what happens to the amplitude of the resulting wave when two waves overlap? Support your answer with specific evidence. в I U 8 D fx Qave Superposition 1 240 frames per second 8x slow motion Direct Measurement Video © 2015 Peter Bohacek ISD197 TRIAL Change trial 1Each of the diagrams below represents a snapshot of two springs at an instant after a pulse has reached the boundary between them. The linear mass density, µ, is greater for the tightly coiled spring than for the other spring. Each diagram may contain flaws that would not be observed with real springs. For each diagram: a. Determine whether there is a flaw. If there is a flaw, describe it (a single flaw is sufficient) and continue to the next diagram. If there are no flaws, answer parts b and c. b. Make a sketch that shows the shape, width, and direction of motion of the incident pulse. c. Determine which pulse is the reflected pulse and which is the transmitted pulse. Slinky Tightly coiled spring ii. Tightly coiled spring Slinky
- 1. A spring has a spring constant of k = 7.50 N/m. If the spring is displaced 0.550 m from its equilibrium position, what is the force that the spring exerts? Gravity is g = 9.80 m/s². Show your work.To describe the different types of mechanical waves. Write down the relationship between wave speed, wave length, frequency, period, angular frequency, wave number. Draw on the picture below to point out the directions of velocities and accelerations about the particles a,b,c,d,e we choose.Please show all work and try to explain in as much detail as possible