Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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Water (density 1000 kg/m3) is flowing past a long cylinder at 1 m/s. The cylinder has a diameter of 0,05 m and a length of 0,4 m. The axis of the cylinder is perpendicular to the distraction of flow. What is the force on the cylinder in N?
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- 5) Before transferring the rod into the graduated cylinder, the cylinder tipped and some of the water splashed from the cylinder. The student did not redo the volume. Will the student’s calculated density be higher, lower or the same as the actual density of the rod? Explain.arrow_forwardA water jet comes out of a nozzle with a diameter of 20 cm and strikes a vertical plate at the center. The plate is hinged at point A. what is the amount of "F" to keep the plate vertically in balance. (Density=1000 Kg/m³)arrow_forwardProblem 3: Water issues from a hole in a large tank, as shown in the attached figure.Assuming frictionless flow, find L.arrow_forward
- Help with this practice questionarrow_forwardQuestion 1: Water is expelled by a jet to the environment (i.e. the water flow is surrounded by atmospheric pressure). To change the direction of the water flow, this enters to a curved pipe as show in the figure (top view perspective). Calculate the forces exerted by the flow to the pipe in x and y direction (both horizontal). Use a water density of 1000 kg/m³, Q=1 m³/s, diameter d-0.3 m. Follow the 4 steps explained in the lectures and state your assumptions clearly. 30 Question 2: Repeat question 1 but change the curvature from 30 degrees to 90 degrees. How the forces change? 90arrow_forwardIn a container of diameter Φ (see image), a tube of diameter ε (much smaller than the diameter of the container) is connected at a height d. The water level in the container is h. Water flows at a constant speed in the tube. The density of the fluid is ρ. If the container is open to the air, calculate the pressure at the connection. Conceptual question: In the second figure of the image, three pressures are represented. Are these pressures constant along the height they describe?arrow_forward
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