QuestionJuly 31, 2025

Question 6(Multiple Choice Worth 2 points) (03.03 MC) Aschool cafeteria has thick padding installed along the walls and portions of the ceiling to reduce echoes. Which statement best explains the wave property this padding is taking advantage of? Refraction, because refracted waves have a lower intensity Reticetion, because reflected waves have a higher intensity Absorption, because absorbed waves go into the media Transmission, because transmitted workes move through media

Question 6(Multiple Choice Worth 2 points) (03.03 MC) Aschool cafeteria has thick padding installed along the walls and portions of the ceiling to reduce echoes. Which statement best explains the wave property this padding is taking advantage of? Refraction, because refracted waves have a lower intensity Reticetion, because reflected waves have a higher intensity Absorption, because absorbed waves go into the media Transmission, because transmitted workes move through media
Question 6(Multiple Choice Worth 2 points)
(03.03 MC)
Aschool cafeteria has thick padding installed along the walls and portions of the ceiling to reduce echoes. Which statement best explains the wave property this padding is taking advantage of?
Refraction, because refracted waves have a lower intensity
Reticetion, because reflected waves have a higher intensity
Absorption, because absorbed waves go into the media
Transmission, because transmitted workes move through media

Solution
4.7(199 votes)

Answer

Absorption, because absorbed waves go into the media Explanation 1. Identify the wave property The padding is used to reduce echoes, which are caused by sound waves reflecting off surfaces. 2. Determine the correct statement Absorption is the process where waves are taken into a material, reducing their intensity and preventing reflection.

Explanation

1. Identify the wave property<br /> The padding is used to reduce echoes, which are caused by sound waves reflecting off surfaces.<br /><br />2. Determine the correct statement<br /> Absorption is the process where waves are taken into a material, reducing their intensity and preventing reflection.
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