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In an immersion measurement of a woman’s density, she is found to have a mass of 62.0 kg in air and an apparent mass of 0.0850 kg when completely submerged with lungs empty. (a) What mass of water does she displace? (b) What is her volume? (c) Calculate her density. (d) If her lung capacity is 1.75 L, is she able to float without treading water with her lungs filled with air?

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Some fish have a density slightly less than that of water and must exert a force (swim) to stay submerged. What force must an 85.0-kg grouper exert to stay submerged in salt water if its body density is 1015 kg/m 3 ?

8.21 N

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The human circulation system has approximately 1 × 10 9 capillary vessels. Each vessel has a diameter of about 8 μ m . Assuming cardiac output is 5 L/min, determine the average velocity of blood flow through each capillary vessel.

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The flow rate of blood through a 2.00 × 10 −6 m -radius capillary is 3.80 × 10 9 cm 3 /s . (a) What is the speed of the blood flow? (b) Assuming all the blood in the body passes through capillaries, how many of them must there be to carry a total flow of 90.0 cm 3 /s ?

a. 3.02 × 10 −2 cm/s . (This small speed allows time for diffusion of materials to and from the blood.) b. 2.37 × 10 10 capillaries. (This large number is an overestimate, but it is still reasonable.)

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The left ventricle of a resting adult’s heart pumps blood at a flow rate of 83.0 cm 3 /s , increasing its pressure by 110 mm Hg, its speed from zero to 30.0 cm/s, and its height by 5.00 cm. (All numbers are averaged over the entire heartbeat.) Calculate the total power output of the left ventricle. Note that most of the power is used to increase blood pressure.

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A sump pump (used to drain water from the basement of houses built below the water table) is draining a flooded basement at the rate of 0.750 L/s, with an output pressure of 3.00 × 10 5 N/m 2 . (a) The water enters a hose with a 3.00-cm inside diameter and rises 2.50 m above the pump. What is its pressure at this point? (b) The hose goes over the foundation wall, losing 0.500 m in height, and widens to 4.00 cm in diameter. What is the pressure now? You may neglect frictional losses in both parts of the problem.

a. 2.76 × 10 5 N/m 2 ; b. P 2 = 2.81 × 10 5 N/m 2

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A glucose solution being administered with an IV has a flow rate of 4.00 cm 3 /min . What will the new flow rate be if the glucose is replaced by whole blood having the same density but a viscosity 2.50 times that of the glucose? All other factors remain constant.

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A small artery has a length of 1.1 × 10 −3 m and a radius of 2.5 × 10 −5 m . If the pressure drop across the artery is 1.3 kPa, what is the flow rate through the artery? (Assume that the temperature is 37 °C .)

8.7 × 10 −2 mm 3 /s

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Angioplasty is a technique in which arteries partially blocked with plaque are dilated to increase blood flow. By what factor must the radius of an artery be increased in order to increase blood flow by a factor of 10?

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Suppose a blood vessel’s radius is decreased to 90.0% of its original value by plaque deposits and the body compensates by increasing the pressure difference along the vessel to keep the flow rate constant. By what factor must the pressure difference increase? (b) If turbulence is created by the obstruction, what additional effect would it have on the flow rate?

a. 1.52; b. Turbulence would decrease the flow rate of the blood, which would require an even larger increase in the pressure difference, leading to higher blood pressure.

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Practice Key Terms 4

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Source:  OpenStax, University physics volume 1. OpenStax CNX. Sep 19, 2016 Download for free at http://cnx.org/content/col12031/1.5
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