What would be the velocity of liquid (m/s) at radius of 8 cm? The rotation occurs around axis A-A, during rotation, the liquid in the left leg (with a diameter of d) decreases a distance h131.0 m?
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- Water flows through a cylindrical pipe of varying cross section. The velocity is 3 m/s at a point where the pipe diameter is 2 cm. At a point where the speed is 12 m/s, the pipe diameter is: Select one: О а.3 ст O b. 1 cm О с. 0.5 ст O d. 4.5 cm О е. 2.5 стThe terminal speed of a spherical partide falling in a liquid is given by where R is the radius of the sphere, e, is its density, p, is the density of the fluid, and n is the coefficient of viscosity. Using this equation, find the viscosity (in mPa · s) of motor oil in which a steel ball of radius 0.9 mm falls with a terminal speed of 4.83 cm/s. The densities of the ball and the oil are 7.86 and 0.88 g/mL, respectively. mPa - sBowling balls are roughly the same size but come in a variety of weights. Given that the official radius a bowling ball should have is roughly 0.110 m, calculate the weight of the heaviest bowling ball that will float in a fluid of density 1.000 x 10° kg/m³. weight: N
- Water initially moving through a small horizontal cylindrical pipe enters a new section of pipe with twice the radius of the initial pipe. What is the ratio of the speed of the water in the new section of pipe to the initial speed of the water? A fluid flows through a pipe of radius at a speed for a time . What is the volume of fluid that flows past a point in the pipe during this time?The average speed of blood in the aorta is 0.330 m/s, and the radius of the aorta is 1.00 cm. There are about 2.00 × 109 capillaries with an average radius of 6.19 μm. What is the approximate average speed of the blood flow in the capillaries? ?mm/sA truncated cone of length ? cm traveling through a fluid at a speed of 8.38 m/s is shown. The narrow end of the cylinder has a diameter of 2.32cm, whereas the wider end has a diameter of 3.53 cm. The drag force acting on the cylinder is 24.6 newtons. The drag force ?? acting on an object passing through a fluid is given by ?d=12??Γ?2 where ? is the effective cross‑sectional area of the object, Γ (the Greek letter gamma) is the drag coefficient, ? is the density of the fluid, and ? is the speed of the object. Calculate the drag coefficient Γ of the object if the fluid is water of density 1000.00 kg/m3.
- A round pipe of varying diameter carries petroleum from a wellhead to a refinery. At the wellhead the pipe\'s diameter is 58.5 cm and the flow speed of the petroleum is 13.9 m/s. At the refinery the petroleum flows at 6.53 m/s. What is the volume flow (m^3/s) rate of the petroleum along the pipe and what is the pipe\'s diameter (cm) at the refinery?What is the velocity of flow of a liquid with a volume flow rate of 1.4 L/s travelling through a pipe of radius 9.5 cm?A garden hose of inner radius 1.00 cm carries water at 1.41 m/s. The nozzle at the end has inner radius 0.200 cm. How fast does the water move through the nozzle?
- A liquid of density Ꝭ = 850 kg/m3 moves from a horizontal tube of radius r1 into a second horizontal tube of radius r2 (you can consider both tubes to be at the same height). The radius of the second tube is half of the radius of the first tube. The difference in pressure between the two tubes (P1 – P2) is equal to 6.00 x 103 N/m2. Find the speed of the liquid (v1) in the first tube?A huge plastic ball floats in oil. The weight of the ball is 45 N, and its volume is 10.0 m³. Poil = 850 kg/m³ and g = 10.0 m/s2. What is the volume of ball displaced by the oil, in m³? Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. (No unit is needed in your answer, it is already given in the question statement.) ↳ A Moving to another question will save this response. do f5 -- 5 T G B f6 6 Y H f7 & 7 N ly U f8 * J 1 4+ 8 M fg IAA 9 K >> f10 O O L f11 V f12During a heavy storm, a steady stream of water flows down from a 4.5-cm-diameter hole in a gutter. The downward speed of the water exiting the hole is 0.5 m/s. What is the speed of the flow just before it hits the ground, 4.0 m below the hole? What is the diameter of the flow there?