You're using an ultrasonic sensor in the deep depths of the ocean to identify shipwrecks. However, you first need to calibrate your sensor for these conditions, as the speed of sound is unknown in the cold, high pressure conditions you are working in. You set up an experiment in a lab where you recreate the environmental conditions of the deep ocean and place an object 30 m from an ultrasonic sensor. The total travel time of the ultrasonic wave is 33 ms (milliseconds). What is the speed of sound in these conditions?

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You're using an ultrasonic sensor in the deep depths of the ocean to identify
shipwrecks. However, you first need to calibrate your sensor for these conditions, as the speed of
sound is unknown in the cold, high pressure conditions you are working in. You set up an
experiment in a lab where you recreate the environmental conditions of the deep ocean and
place an object 30 m from an ultrasonic sensor. The total travel time of the ultrasonic wave is 33
ms (milliseconds). What is the speed of sound in these conditions?
Transcribed Image Text:You're using an ultrasonic sensor in the deep depths of the ocean to identify shipwrecks. However, you first need to calibrate your sensor for these conditions, as the speed of sound is unknown in the cold, high pressure conditions you are working in. You set up an experiment in a lab where you recreate the environmental conditions of the deep ocean and place an object 30 m from an ultrasonic sensor. The total travel time of the ultrasonic wave is 33 ms (milliseconds). What is the speed of sound in these conditions?
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