(b) Calculate the temperature and pressure rises on a short-pulse laser excitation of soft tissue at body temperature with a fluence of 10mJ/cm [Take Optical -1 Absorption Coefficient, µa = 0.1 cm.] Account for your answer %3D
(b) Calculate the temperature and pressure rises on a short-pulse laser excitation of soft tissue at body temperature with a fluence of 10mJ/cm [Take Optical -1 Absorption Coefficient, µa = 0.1 cm.] Account for your answer %3D
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![(b) Calculate the temperature and pressure rises on a short-pulse laser excitation of
soft tissue at body temperature with a fluence of 10mJ/cm [Take Optical
-1
Absorption Coefficient, µa = 0.1 cm.] Account for your answer
2.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa057d048-28b3-4797-ad70-f7c2c9e8784d%2Ffd85e47b-0745-460b-9622-d09f6518cd78%2Fhl2ruil_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(b) Calculate the temperature and pressure rises on a short-pulse laser excitation of
soft tissue at body temperature with a fluence of 10mJ/cm [Take Optical
-1
Absorption Coefficient, µa = 0.1 cm.] Account for your answer
2.
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