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A bin holds a cylinder as shown in figure. Each cylinder weighs “W” and has a diameter of 600 mm. The width of thebin is 0.9m. Neglect friction. With complete fbd. I will downvote if no fbd. Dont use angles
If the wall reaction at E is 2 kN, determine the weight, W, of the cylinder in kN.
Answer: A. 1.73


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- Please help ASAP!! Will upvote immeadiately, answer both part a and b please :)))Figure 28-33 R-12 A-2.7k -30011 Replace Q, with Q, and repeat the measurements listed. V VaQuestion 9 What is the location of FR, i.e., the distance d? A MB 3 m 3 m & Moving to another question will save this response. R B
- O Aa dement is suhjet the e b in Figr * Cakulae de cente and rads of te M's s cinde and skench de cincle * Caloulae the valun of principal strones and sho them on the cinde Durmine the dwtion of the larger principal ses lative e the 75 Ni. 15 Ni 75 Ni 30 N Figure17.8 The uniform 4-kg cylinder A with a radius of r = 150 mm has an angular velocity of wo = 50 rad/s when it is brought into contact with an identical cylinder B that is at rest. The coefficient of kinetic friction at the contact point D is μk. After a period of slipping, the cylinders attain constant angular velocities of equal magnitude and opposite direction at the same time. Knowing that cylinder A executes three revolutions before it attains a constant angular velocity and that cylinder B executes one revolution before it attains a constant angu- lar velocity, determine (a) the final angular velocity of each cylinder, (b) the coefficient of kinetic friction μk.Wind flows over a flat plate of length L = 25 mm and width W = 8 mm. The plate is maintained at a constant temperature of 32 °C on both sides using an electric heater generating heat at a rate of Q = 0.5 W which is dissipated to air from both sides of the plate. Consider the temperature of the wind/air as 20 °C and assume that the wind speed does not exceed 100 m/s. The properties of air at this temperature are given as; specific heat capacity Cp = 1.005 kJ/kg-K, thermal conductivity k = 0.0253 W/m-K, Density p = 1.19 kg/m³, and kinematic viscosity v = 1.522 x 10 5 m²/s.

