A patient is receiving medication through an intravenous infusion, as the figure shows. The medication has a viscosity of 2.2 × 10-³ N-s/m² and a density of 1050 kg/m³. The needle being used has a length of 0.035 m, an inner radius of 5.0 × 10-4 m, and has been inserted into a vein, which has a gauge pressure of 2.0 × 10³ Pa. The IV bag hangs 0.45 m above the location of the needle. What volume of medication enters the vein in 10.0 minutes? Give your answer in cm³. Assume the height of the column of medication in the IV bag and connecting tube remains constant during the 10.0 minutes. Number i Atmospheric pressure Units ↑ 0.45 m ()

Physics for Scientists and Engineers: Foundations and Connections
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Chapter15: Fluids
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A patient is receiving medication through an intravenous infusion, as the figure shows. The medication has a
viscosity of 2.2 × 10-³ N-s/m² and a density of 1050 kg/m³. The needle being used has a length of 0.035 m, an
inner radius of 5.0 × 10-4 m, and has been inserted into a vein, which has a gauge pressure of 2.0 × 10³ Pa. The
IV bag hangs 0.45 m above the location of the needle. What volume of medication enters the vein in 10.0
minutes? Give your answer in cm³. Assume the height of the column of medication in the IV bag and
connecting tube remains constant during the 10.0 minutes.
Number
IN
Atmospheric
pressure
Units
0.45 m
Yenny
<>
Transcribed Image Text:A patient is receiving medication through an intravenous infusion, as the figure shows. The medication has a viscosity of 2.2 × 10-³ N-s/m² and a density of 1050 kg/m³. The needle being used has a length of 0.035 m, an inner radius of 5.0 × 10-4 m, and has been inserted into a vein, which has a gauge pressure of 2.0 × 10³ Pa. The IV bag hangs 0.45 m above the location of the needle. What volume of medication enters the vein in 10.0 minutes? Give your answer in cm³. Assume the height of the column of medication in the IV bag and connecting tube remains constant during the 10.0 minutes. Number IN Atmospheric pressure Units 0.45 m Yenny <>
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