Visible light falls into wavelength ranges of 400-700 nm, for which 1 m =1 × 10º nm. The energy and wavelength of light are related by the equation E he where E is energy in Joules, h is Planck's constant (6.626 × 10 34 J-s), c is the speed of light ( 2.998 x 10° m/s), and is the wavelength in m. If a visible light photon has a wavelength of 477.8 nm, what is the energy of the photon (in J)? Type answer:
Visible light falls into wavelength ranges of 400-700 nm, for which 1 m =1 × 10º nm. The energy and wavelength of light are related by the equation E he where E is energy in Joules, h is Planck's constant (6.626 × 10 34 J-s), c is the speed of light ( 2.998 x 10° m/s), and is the wavelength in m. If a visible light photon has a wavelength of 477.8 nm, what is the energy of the photon (in J)? Type answer:
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Visible light falls into wavelength ranges of 400-700 nm, for which 1 m =1 × 10° nm -
The energy and wavelength of light are related by the equation
E = hc
where E is energy in Joules, h is Planck's constant ( 6.626 × 10¬34 J-s ), c is the speed of light (
2.998 x 10° m/s), and is the wavelength in m.
If a visible light photon has a wavelength of 477.8 nm, what is the energy of the photon (in J)?
Type answer:
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Visible light falls into wavelength ranges of 400-700 nm, for which 1 m =1 × 10° nm -
The energy and wavelength of light are related by the equation
E = hc
where E is energy in Joules, h is Planck's constant ( 6.626 × 10¬34 J-s ), c is the speed of light (
2.998 x 10° m/s), and is the wavelength in m.
If a visible light photon has a wavelength of 477.8 nm, what is the energy of the photon (in J)?
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