consider the following scenario: a stage technician is working with different colored lights during a…

consider the following scenario: a stage technician is working with different colored lights during a concert. they notice that the red lights seem much brighter to the audience than the blue lights, even though both lights are set to the same brightness level. what best explains the difference in how bright the lights appear? select the best answer. answer 2 points o blue light scatters more in the environment, causing it to lose brightness more quickly than red light. o blue light is absorbed more by the air, making it seem dimmer to the audience. o red light has a longer wavelength, which makes it appear brighter than blue light. o red light waves have a naturally higher frequency, which makes them easier for the human eye to see.

consider the following scenario: a stage technician is working with different colored lights during a concert. they notice that the red lights seem much brighter to the audience than the blue lights, even though both lights are set to the same brightness level. what best explains the difference in how bright the lights appear? select the best answer. answer 2 points o blue light scatters more in the environment, causing it to lose brightness more quickly than red light. o blue light is absorbed more by the air, making it seem dimmer to the audience. o red light has a longer wavelength, which makes it appear brighter than blue light. o red light waves have a naturally higher frequency, which makes them easier for the human eye to see.

Answer

Brief Explanations:

Blue light has a shorter wavelength and scatters more in the environment (such as in air - similar to why the sky is blue). This scattering causes it to lose brightness more quickly than red light which has a longer wavelength and scatters less. Red light is less affected by scattering in the air, so it appears brighter to the audience even when both lights are set to the same brightness level.

Answer:

Blue light scatters more in the environment, causing it to lose brightness more quickly than red light.