Why are the Doppler effect and diffraction not as commonly experienced with light as they are with sound? (Select all that apply.) The speed of light is very high, leading to very small Doppler shifts in the light emitted by common sources in motion relative to us. The wavelengths of light are very short, causing diffraction effects to be visible only for very small objects and very narrow openings. The speed of light is very high, leading to very large Doppler shifts in the light emitted by common sources in motion relative to us. The wavelengths of light are very short, causing diffraction effects to be visible only for very large objects and very wide openings.
Why are the Doppler effect and diffraction not as commonly experienced with light as they are with sound? (Select all that apply.) The speed of light is very high, leading to very small Doppler shifts in the light emitted by common sources in motion relative to us. The wavelengths of light are very short, causing diffraction effects to be visible only for very small objects and very narrow openings. The speed of light is very high, leading to very large Doppler shifts in the light emitted by common sources in motion relative to us. The wavelengths of light are very short, causing diffraction effects to be visible only for very large objects and very wide openings.
Chapter9: Optics
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Why are the Doppler effect and diffraction not as commonly experienced with light as they are with sound? (Select all that apply.)
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