a) the color intensity of light waves\nb) number of waves passing a point per second\nc) total energy of a…

a) the color intensity of light waves\nb) number of waves passing a point per second\nc) total energy of a single wave\nd) distance between wave peaks\n38. why do dark - colored objects absorb radiant energy faster than light - colored objects?\na) dark colors have more molecular density\nb) dark surfaces have more heat - trapping molecules\nc) dark colors have different atomic structures\nd) dark surfaces have more energy - absorbing electrons

a) the color intensity of light waves\nb) number of waves passing a point per second\nc) total energy of a single wave\nd) distance between wave peaks\n38. why do dark - colored objects absorb radiant energy faster than light - colored objects?\na) dark colors have more molecular density\nb) dark surfaces have more heat - trapping molecules\nc) dark colors have different atomic structures\nd) dark surfaces have more energy - absorbing electrons

Answer

Brief Explanations:

For the first part, the number of waves passing a point per second is the definition of frequency. For the second part, dark - colored objects absorb radiant energy faster because they have more energy - absorbing electrons which can take in photons of light and convert them into other forms of energy like heat.

Answer:

  1. B. Number of waves passing a point per second
  2. D. Dark surfaces have more energy - absorbing electrons