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- Water flows through a hose of diameter 2.50 cm at a speed of 535 cm/s. Find the flow rate Q of the hose. Recall the area of a circle is A=¼ πd2, where d is the diameter of the circleA pipeline 0.3m in diameter, flowing full of water ,has a constriction of diameter 0.1m.lf the velocity in the 0.12m portion is 2m/s,find (a)The velocity in the constriction. (b)The discharge rate (Av=areaxvelocity) in cubic meters per second.A horizontal tube with an inside diameter of 1.5 mm and a length of 29 cm has water flowing through it at 0.25 mL/s. Find the pressure difference required to drive this flow if the viscosity of water is 1 mPa · s. Assume laminar flow. Answer in units of kPa.
- rn=0.17 cm (nozzle radius)rh=0.95 cm (garden hose radius)Q=0.65 L/s (flow rate through the hose) Calculate the maximum height (in centimeters) to which water could be squirted with the hose if it emerges with the nozzle removed, assuming the same flow rate.A pateint recovering from surgery is being given fluid intavenously. The fluid has a density of 1030 kg/m3, and 5.64 x 10-4 m3 of it flows into the patient every 8 hours. Find the mass flow rate in kg/sIf a kitchen sink has a volume of 20 L. Water flows in the sink with a mass flow rate of 0.5 kg/s. If the drain is closed, how long, in seconds, does it take for the sink to fill up? Density of water = 1000 kg/m3