A ship 120 m long moves through freshwater at 15°C at 32 km / h. A 1:100 model of this ship is to be tested in a towing basin containing a liquid of specilic gravity 0.92. What viscosity must this liquid have for both Reynolds’ and Froude’s laws to be satisfied? At what velocity must the model be towed? What propulsive force on the ship corresponds to a towing force of 9 N in the model?
A ship 120 m long moves through freshwater at 15°C at 32 km / h. A 1:100 model of this ship is to be tested in a towing basin containing a liquid of specilic gravity 0.92. What viscosity must this liquid have for both Reynolds’ and Froude’s laws to be satisfied? At what velocity must the model be towed? What propulsive force on the ship corresponds to a towing force of 9 N in the model?
A ship 120 m long moves through freshwater at 15°C at 32 km/h. A 1:100 model of this ship is to be tested in a towing basin containing a liquid of specilic gravity 0.92. What viscosity must this liquid have for both Reynolds’ and Froude’s laws to be satisfied? At what velocity must the model be towed? What propulsive force on the ship corresponds to a towing force of 9 N in the model?
Three cables are pulling on a ring located at the origin, as shown in the diagram below. FA is 200 N in magnitude with a transverse angle of 30° and an azimuth angle of 140°. FB is 240 N in magnitude with coordinate direction angles α = 135° and β = 45°. Determine the magnitude and direction of FC so that the resultant of all 3 force vectors lies on the z-axis and has a magnitude of 300 N. Specify the direction of FC using its coordinate direction angles.
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Fox and McDonald's Introduction to Fluid Mechanics
INTERNATIONAL EDITION---Engineering Mechanics: Statics, 14th edition (SI unit)
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