In the following figure, the cylindrical body floats in the position shown. What is its weight in N? cylindrical body
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- A structural member with a rectangular cross section as shown in the accompanying figure is used to support a load of 2500 N. What type of material do you recommend be used to carry the load safely? Base your calculations on the yield strength and a factor of safety of 2.0.The figure represents three-quarters of a disk rotating around an axis that passes perpendicular to its diameter. The part has mass M, radius R, and surface density that varies with radius σ= 2Mx-2. Find the moment of inertia of the part.A particle travels in a straight line with constant acceleration. When s = 4 , v=5 ft/s andwhen s=8, v=7 ft/s. Determine the acceleration ft/s^2.
- If the density of the solid shown is 5 slug/ft3, determine the mass moment of inertia about the y axis.Two smooth spheres (each having weight W= 10 kN and radius r= 0.6 meters) rest in a thin‐walled circular cylinder (weight Q, radius R = 4r/3) as shown in Figure. Find the magnitude ofQ required to prevent the cylinder from falling over.Determine the acceleration at the instant shown. The particle has a constant speed of 2 m/s.
- A spherical tank of radius 0.25 m is filled with water with density of 62.4 lbm/ft^3. Calculate the mass of the water in the tank in lbm and in kg. (V=3.14D^3/6) where D is the diameter.a container, in the form of hemisphere, is 800 mm across the top. It contains oil (s=0.82) at a depth of 300 mm. Determine the mass and weight of oil in the container.Determine the force required to move a thin plate of 30 x 60 cm2 size through a liquid of viscosity ? = 0.05 kg/ms at a velocity of 0.40 m/sec. The liquid is filled between two long parallel plates as shown in the Figure.
- The pulley assembly shown in the figure weighs 150 kg and has a centroidal radius of gyration of 200 cm. The blocks are attached to the assembly by cords wrapped around the pulleys. Set up the equations of motion that is required to solve the problem. Determine the acceleration of each body.DYNAMICS OF RIGID BODIES PROBLEM: In a amusement park ride, gondola cars of weight W are attached by rods 24ft long to a bull wheel 20ft in diameter. The bull wheel rotates in a horizontal plane about a vertical axis at its center. At how many rpm is it rotating when the supporting rods of the gondolas are inclined at 30° with the vertical? Consider each gondola to be a particle concentrated at the end of each 24ft rod.Kim Jisoo discovered an element (1.43 kN/m3) that flows through a 100 mm (diameter) pipe at a mean velocity of 3 m/s. Find the weight flow rate in N/s. Round off to two decimal places.