In muscle capillaries, oxygen enters the capillaries at a partial pressure of 0.1 atm. When exercising...
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In muscle capillaries, oxygen enters the capillaries at a partial pressure of 0.1 atm. When exercising rigorously, the blood velocity in the capillaries is 0.25 cm/s. In this case, the reaction rate constant is 1.11 x 107 mol/(cm3*s), the average half distance between the center of two of the capillaries is 28.63 x 104 cm, the average capillary radius is 1.26 x 10 cm, and Henry's constant is 7.21 x 108 Pa*cm/mol. Calculate the capillary length at which the concentration at the outlet is zero. Assume no oxygen is replenished from hemoglobin dissociation. If the average capillary length is 0.115 cm, will you get a corner of death? 4 In muscle capillaries, oxygen enters the capillaries at a partial pressure of 0.1 atm. When exercising rigorously, the blood velocity in the capillaries is 0.25 cm/s. In this case, the reaction rate constant is 1.11 x 107 mol/(cm3*s), the average half distance between the center of two of the capillaries is 28.63 x 104 cm, the average capillary radius is 1.26 x 10 cm, and Henry's constant is 7.21 x 108 Pa*cm/mol. Calculate the capillary length at which the concentration at the outlet is zero. Assume no oxygen is replenished from hemoglobin dissociation. If the average capillary length is 0.115 cm, will you get a corner of death? 4
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