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The truck is to be towed using two ropes. If the resultant force is to be 950 , directed along the positive axis, determine the magnitudes of force Fa and Fb and acting on each rope and the angle of Theta of Fb so that the magnitude of Fb is a minimum. Fa acts at 20 degreees from the axis as shown.
the gate in the is hinged at H.the gate is 2 m wide and normal to the palne of the diagram.calculate the force required to hold the gate closed.
Name products that are manufactured using these processes and write two sentences on why you know it's made from this process.
the tank shown has a 180 mm inside diameter and a 12 mm wall thickness. knowing that the tank contains compressed air
Determine Fourier Number, Compare two identical steel spheres, except the first has a two inch diameter while the second sphere has a four inch diameter. The larger sphere will have a Fourier number approximately
Determine the natural frequencies of the system-For the baseline system and find a design that changes the ?rst two natural frequencies more than any of the previous slight modi?cations.
The angular acceleration of a shaft is defined by the relation a = -0.25w, where a is expressed in rad/s^2 and w in rad/s. Knowing that at t=0 th angular velocity of the shaft is 20 rad/s, determine the time required for the shaft to come to rest.
calculate the vapor pressure-temperature relationship of liquid iron.
the rigid gate oab of fig. p2.58 is hinged at o andnbsprests against a rigid support at b. what minimum
(a) Determine the blade angles at leading and trailing edges of both the rotor and stator at the mean radii, (b) Calculate the mass flow rate and the power required for each stage.
design of a vacuum distillation plant for purification of glycerin by-product from a biodiesel plant.
In a DC planar magnetron sputtering system at 1000 V, the cathodeanode spacing is 10 cm. What magnetic field should be applied to trap electrons within 0.5 cm of the target?
determine diameter of a circular rod of ductile material with a fatigue strength ,e=280 Mpa. Add a tensile yield strength of 350 Mpa. The member is subjected to a varying axial load from 700 kN to -300kN. Assume Kt=1.8 and factor of safety=2.
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