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The disk rotates about the shaft S, while the shaft is turning about the z axis at a rate of vz = 4 rad>s, which is increasing at 2 rad>s2. Determine the velocity and acceleration of point A on the disk at the instant shown. No slipping occurs.
superheated steam at 500 celsius and 3 mpa enters a steady state turbine with a mass flow rate of 500 kgs. the steam
an unguided weapon is launched off a fighter aircraft flying at 500kts 844 fts straight and level at an altitude of
Write an essay on polymeric materials that are used in the packaging of food products and drinks. Include a list of the general requisite characteristics of materials that are used for these applications. Now cite a specific material that is ut..
a particular manufacturer of charcoal briquettes is contracted to create a product that contains no more than 0.1 mass
consider a 300 mm x 300 mm window in an aircraft. for a temperature difference of 80oc from the inner to the outer
during an emergency launch operation to fill a missile with rp-4 a kerosene-based fuel the ullage volume of the fuel
You are a thermal design engineer and plan to design cooling solution for a computer chip. As a basic design, a chip (K_c=50W/m-K) is mounted in a dielectric substrate (K_s=5.0 W/m-k) and one surgace of the system is convectively cooled, while the re..
the jmh company manufactures resistors with an ideal resistance value of 400 ohms. a sample of 2000 resistors were
Consider a homogenous isotropic solid. Assume that all relevant properties do not depend on temperature and position within the solid. Derive the heat conduction (diffusion) equation in The rectangular coordinate system. Cylindrical coordinate system..
Please find the stoichiometric air/fuel ratio of benzene (C6H6) and the actual air fuel ratio when operated at equivalance ratio of 0.8.
a pistoncylinder contains water with quality 75 at 200 kpa. slow expansion is performed while there is heat transfer
Using the ideal gas model with specific heat ratio, k = 1.4, and ignoring potential energy effects, determine (a) the exit velocity, in m/s, and (b) the rate of heat transfer, in kJ per kg of gas flowing through the nozzle.
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