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The eyebolt in figure is subjected to three (3) forces, F1, F2, and F3.
a. How much is the angle, theta (degrees), if the resultant of the three forces is 650 N and acts along the negative y axis? Given: F2 = 500 N; F3 = 450 N; Angle phi = 30°. Answer: C. 20.56
b. Determine the magnitude of the resultant force (N) acting on the eyebolt. Given: F1 = 600 N; F2 = 500 N; F3 = 450 N; Angle phi = 30°; Theta = 60°. Answer: B. 701.9


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- Q2: The engine of car has six cylinders of 82.55mm bore and 769.5mm stroke. The compression ratio is 7.8. Determine the cubic capacity of the engine and the clearance volume of each cylinderplease show all work, and draw FBDfor the power wouldn't it be desnity x Q x hp / 0.75 ? or did my professor make a mistake
- (2) lubäi The difference between shear strain and linear strain Linear Strain is change in length/original length while shear strain is the angle of deformation linear strain and shear strain are the same and equal to the change in length / original O length None O linear strain and shear strain are the same and equal to the change in angle under shear force (2) ibäi A concentrated load is one which acts at a point on a beam O varies uniformly over the whole length of a beamB 0.5 m WAB AB A 1 m ӨвWind 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.

