The heat transfer behavior of a sample of opaque fluid is being investigated. A series of ultrasound transducers send sound waves through various portions of the sample, and the time it takes for the sound wave to travel through the sample is measured at each location. From this information, researchers are able to reconstruct a rough temperature field of the sample. The false-color image of the sample is divided into three regions based on the measured sound wave transmission times. Region A has a sound wave transmission time of 35.4 ms, region B has a sound wave transmission time of 33.2 ms, and region C has a sound wave transmission time of 33.5 ms. Assuming a uniform sample thickness, rank regions A, B, and C based on their temperatures, from highest to lowest.

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Highest temperature
Region C
Region B
Region A
Lowest temperature
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Transcribed Image Text:Highest temperature Region C Region B Region A Lowest temperature Answer Bank A about us privacy policy terms of use contact us help careers
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The heat transfer behavior of a sample of opaque fluid is being investigated. A series of ultrasound transducers send sound
waves through various portions of the sample, and the time it takes for the sound wave to travel through the sample is
measured at each location. From this information, researchers are able to reconstruct a rough temperature field of
the sample.
The false-color image of the sample is divided into three regions based on the measured sound wave transmission times.
Region A has a sound wave transmission time of 35.4 ms, region B has a sound wave transmission time of 33.2 ms, and
region C has a sound wave transmission time of 33.5 ms. Assuming a uniform sample thickness, rank regions A, B, and C
based on their temperatures, from highest to lowest.
Highest temperature
Region C
Region B
about us
privacy policy
terms of use
contact us
help
careers
Transcribed Image Text:V Hint The heat transfer behavior of a sample of opaque fluid is being investigated. A series of ultrasound transducers send sound waves through various portions of the sample, and the time it takes for the sound wave to travel through the sample is measured at each location. From this information, researchers are able to reconstruct a rough temperature field of the sample. The false-color image of the sample is divided into three regions based on the measured sound wave transmission times. Region A has a sound wave transmission time of 35.4 ms, region B has a sound wave transmission time of 33.2 ms, and region C has a sound wave transmission time of 33.5 ms. Assuming a uniform sample thickness, rank regions A, B, and C based on their temperatures, from highest to lowest. Highest temperature Region C Region B about us privacy policy terms of use contact us help careers
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