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Explain the relationship between visible light spectra and energy.
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energy is proportional to frequency.
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Explain the relationship between visible light spectra and frequency.
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http://hubblesite.org/reference_desk/faq/answer.php.id=72&cat=light
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Explain the relationship between visible light spectra and wavelength.
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Since this is not my area of expertise, I searched Google under the key words "<I>visible light
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Visible light can be seen by the unaided human eye.
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We can reasonably model a 75 W incandescent light bulb as a sphere 6.0 cm in diameter. Typically, only about 5% of the energy
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UV has wavelengths slightly shorter than those of visible light. UV has
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UV has wavelengths slightly shorter than those of visible light.
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A 75 W light source consumes 75 W of electric power. Typically only about 5% of this energy is emitted as visible light of
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What is your question? I will be happy to critique your thinking or work, but not so happy to do it
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A 75 W light source consumes 75 W of electric power. Typically only about 5% of this energy is emitted as visible light of
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(a) frequency = c/(wavelength) (b) 75 W/(h*f) where f it the frequency and h is Plank's constant.
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White light strikes a grating with 1300 lines/cm at normal incidence. How many complete visible spectra will be formed on either
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To solve this problem, we can use the formula for the number of maxima produced by a diffraction
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Which is one difference between visible and non-visible light?(1 point)
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Only visible light is on the electromagnetic spectrum.
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What is the empirical distinction between emission and absorption spectra? In general terms, how did Niels Bohr explain each of
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The empirical distinction between emission and absorption spectra can be understood based on the
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