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GE 150 Survey of Science
LAB- Unit 3.2: Light and Wave Simulation rlg 1/16/14
A. Water Wave Simulation:
1. As the Frequency and Amplitude slider moves to the right of the bar the water droplets rate increases, which creates a wider wave spectrum-the waves appears to overlap each other as the frequency is increased. I also observed that the water waves became more narrower when I slid the frequency and amplitude slider to the extreme right.
2. The water level on the Graph was observed to be still (no wave action) when the slider of the frequency and amplitude is at the lower end of the scale, once the slider is moved towards the center, the waves began to produce a crest and trough. I observed that the crest and trough created by the waves length became shorter and narrower.
3. When the rotate view is manipulated, I observed the that the water drips to be more dense (heavier) but still creating wavelengths with crest and troughs.
4. Adding a second drip appears to increase the density of the water drips there by creating a stronger and larger (higher) wave crest and troughs, putting them closer together appears to diminish the depth of the trough and crest is not as high.
5.With the second drip turned off and a barrier added, the frequency of the drips increases( more constant drips). With the barrier position altered, the wave lengths are observed to be narrower with a lower crest and troughs.
B. Sound Wave Simulator:
1.The sound wave energy being sent out observed to be spread out in a wide sound wave manner.
2.The particles are adjacent but remaining in a cluster bouncing off of each other as the frequency and amplitude slider are manipulated.
3. With the manipulation of the frequency and amplitude slider on the show graph meter a change in the sound wave crest and trough is observed, the crest and trough is observed to be shallower and narrower.
4.The sound wave observed to be spreading out farther creating a shallow and smaller wave crest and trough.
GE 150 Survey of science
Rupert Griffith
Sound Wave
5.The sound wave dissipate , no wave crest or trough are observed.
6. With the speaker turned back on after all the particles being still and no sound wave to create any wave crest.
7. Turning the speakers back on, Sound wave energy is created once again-with the manipulation of the frequency and the amplitude slider the particles resumed their agitated movement bouncing off each other- a narrow wave crest and trough is observed when sliding the frequency/amplitude bar to the extreme right.
8.The barrier appears to have no effect on the particles-the sound wave is still able to penetrate through the barrier walls.
Light Wave Simulator:
1.The light and the electric field change also creating a frequency like crest and trough when set to zero the amplitude slider does not register any visible movement of light.
3.The wave length and frequency is observed to be changing in a uniform pattern as each color spectrum is tested, however, when the amplitude slider is increased the wave pattern seems to expand outwards creating a field of wave crest and troughs.
4.They appears to be no difference in color as it relates to the light wavelength, they all seems to be uniform at whatever setting the slider amplitude slider is register at.
5. Adding the slider as a barrier and manipulating it back and forth from the light color source seems to confine the color in one area-this is with the amplitude set at the midway point.
6. The detector gives a reading of very low E-field reading when the amplitude is placed directly behind the barrier, at the top or bottom-when it is placed in front of the barrier it produces a more uniform reading though it appears as a shallow wave crest. When moved closer to the source it produces the same effect.
7. The show screen and intensity graph chart displays the position and concentration of the light wave energy.

Dr. T. Campbell
GE150; Survey of Science
Rupert L. Griffith
Lab- Unit 3.2: Light and Wave Simulator
Conclusion: from my observation I found that wavelength and frequency does have an effect on light and sound. I also found that the sound will penetrate a wall barrier.

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