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The 30 Mg aircraft is climbing at the angle (theta)=15 with a thrust T of 180 kN. At the instant shown, its speed is 300 km/h and is increasing at the rate of 1.96 m/s^2; theta is decreasing as the aircraft begins to level off. If the radius of curvature of the path at this instant is 20 km, compute the lift L and drag D experienced by the aircraft as well as the total normal force imposed on the 90-kg pilot by his seat. ( Lift and Drag are the aerodynamic forces normal to and opposite the ight direction, respectively. You may assume the seat pan is aligned with the aircraft's direction of travel and that the seat back is perpendicular to it.)
Find the safe applied torque that can be transmitted by the shaft ABCD, if the maximum shear stress in the hollow section is 47 MPa and G = 82.5 GPa.
In an ore minig operation, a bucket full of ore is suspended from a traveling crane which moves slowly along a stationary bridge. The bucket is to swing no more than 4m horizontally when the crane is brought to a sudden stop. Determine the maximum..
Design a control system for an annealing furnace - Please describe any auxiliary equipment that needs to be considered. MEE 30002 Control Engineering
air enters the compressor of an air-standard brayton cycle at 100kpa 300k with anbspvolumetric flow rate of 5m3s. the
A wooden board AB, which is used as a temporary prop to support a small roof, exerts at point A of the roof a 57-lb force directed along BA. Determine the moment about C of that force.
Determine the magnitude of the horizontal and vertical components of the force of the water on the gate.
the hawkins supply company is currently faced with an inventory rotation problem.this difficulty stems from the fact
determine the angle of twist of the end B of the solid section relative to end C. The tubes have an outer diameter of 30 mm and an inner diameter of 20 mm. The solid section has a diameter of 40 mm.
Whit is the critical crack length in iron according to the Griffith-Orowan equation if surface energy=10^3J/m^2?
question 1approximate the torque and power necessary to rotate the inner 20 cm diameter cylinder shown in figure 1. sae
consider an ideal fuel cell to be run on pure oxygen and hydrogen for a length of time. determine the ration of the
The motion of a particle in defined by the relation x = t3 - 15 t2 - 20, where ‘x' is expressed in metres and ‘t' in seconds. Determine the acceleration of the particle at t = 3 seconds.
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