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  1. 1. What are the 3 properties of a wave? 2. Determine the wavelength of a transverse wave and a longitudinal wave. 3. How do you determine frequency and provide an example? 4. How would you calculate speed? Provide an example. 5. Write the formula for wave speed. 6. Provide answers for the bubbles above page 148 and 149. 7.

  2. In the diagram below, identify the parts of a wave by using the provided definitions. #____ = crest The highest point of the wave above the line of origin. #____ = trough The lowest point of the wave below the line of origin.

  3. ncy of pulses is increased?9. A wave on a lake passes by t. oc. s that are 40.0 m apart. a. If there is a crest at each dock and another three crests between the two d. ck. , determine the wavelength.b. If 10 waves pass one dock every 16.0 s, determine the pe. io. and frequency of the wave.c. Wha.

  4. 1. Define a transverse and a longitudinal wave. 2. State two examples transverse waves and two examples of longitudinal waves. 3. Explain how a speaker cone moving backwards and forwards creates a sound wave. 11.2 Wave properties.

  5. Wavelength. The distance from one crest to the next is called the. Wavelength can also be measured from trough to trough or from any point on the wave to the next place where that point occurs. 1. 2) Longitudinal wave. Compression: where the particles are close together. Rarefaction: where the particles are spread apart.

  6. Wave Properties. 1. Which wave above is a transverse wave? A longitudinal wave? 2. On the transverse wave, label a crest and a trough.

  7. I can determine the frequency, period, wavelength, amplitude and wave speed for longitudinal and transverse waves. State what is meant by the frequency of a wave. State the link between period and frequency. If 20 crests pass a point in two seconds calculate the frequency of the wave.