Canal effect . Figure 14-45 shows an anchored barge that extends across a canal by distance d = 30 m and into the water by distance b = 12 m. The canal has a width D = 55 m, a water depth H = 14 m, and a uniform water-flow speed v i = 1.5 m/s. Assume that the flow around the barge is uniform. As the water passes the bow, the water level undergoes a dramatic dip known as the canal effect. If the dip has depth h = 0.80 m, what is the water speed alongside the boat through the vertical cross sections at (a) point a and (b) point b ? The erosion due to the speed increase is a common concern to hydraulic engineers. Figure 14-45 Problem 49.
Canal effect . Figure 14-45 shows an anchored barge that extends across a canal by distance d = 30 m and into the water by distance b = 12 m. The canal has a width D = 55 m, a water depth H = 14 m, and a uniform water-flow speed v i = 1.5 m/s. Assume that the flow around the barge is uniform. As the water passes the bow, the water level undergoes a dramatic dip known as the canal effect. If the dip has depth h = 0.80 m, what is the water speed alongside the boat through the vertical cross sections at (a) point a and (b) point b ? The erosion due to the speed increase is a common concern to hydraulic engineers. Figure 14-45 Problem 49.
Canal effect. Figure 14-45 shows an anchored barge that extends across a canal by distance d = 30 m and into the water by distance b = 12 m. The canal has a width D = 55 m, a water depth H = 14 m, and a uniform water-flow speed vi = 1.5 m/s. Assume that the flow around the barge is uniform. As the water passes the bow, the water level undergoes a dramatic dip known as the canal effect. If the dip has depth h = 0.80 m, what is the water speed alongside the boat through the vertical cross sections at (a) point a and (b) point b? The erosion due to the speed increase is a common concern to hydraulic engineers.
A piece of metal is placed on top of a 2.0 - kg wooden block (mass density = 562 kg/m³) piece. UseArchimedes' principle to calculate the mass (in kg) of copper if the top of the wood surface is exactly at thewater's surface?
A filmmaker wants to achieve an interesting visual effect by filming a scene through a converging lens with a
focal length of 50.0 m. The lens is placed betwen the camera and a horse, which canters toward the camera
at a constant speed of 7.9 m/s. The camera starts rolling when the horse is 36.0 m from the lens. Find the
average speed of the image of the horse (a) during the first 2.0 s after the camera starts rolling and (b)
during the following 2.0 s.
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