e) Given the following data collected about the velocity of the red light (650 nm) and green light (510 nm) on air. Vred T-o'c) = VgreenT-o°c)= Vred(T=11'c)=Vgreenr=11°C)= VredT-45'C)= Vgreen (T=45°C) What are your conclusions comparing the effect of the temperature and frequency on sound and light velocities? Justify your answer based on the data presented and the physics of sound and light.

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e) Given the following data collected about the velocity of the
red light (650 nm) and green light (510 nm) on air.
VredT-o'c) = Vgreenr-o°c) = Vred(r-1'c)=Vgreenr=11°C)|
Vred-45°c) = Vgreen (-45'°C)
(T=0
(T=11°C)
What are your conclusions comparing the effect of the
temperature and frequency on sound and light velocities?
Justify your answer based on the data presented and the
physics of sound and light.
Transcribed Image Text:e) Given the following data collected about the velocity of the red light (650 nm) and green light (510 nm) on air. VredT-o'c) = Vgreenr-o°c) = Vred(r-1'c)=Vgreenr=11°C)| Vred-45°c) = Vgreen (-45'°C) (T=0 (T=11°C) What are your conclusions comparing the effect of the temperature and frequency on sound and light velocities? Justify your answer based on the data presented and the physics of sound and light.
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