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A thin elastic wire is placed between rigid supports. A fluid flows past the wire, and it is desired to study the static deflection, δ, at the center of the wire due to the fluid drag. Assume that
where l is the wire length, d the wire diameter, ρ the fluid density, μ the fluid viscosity, V the fluid velocity, and E the modulus of elasticity of the wire material. Develop a suitable set of pi terms for this problem.
Modify Assignment 3 to require input of data for fluid properties, volume flow rate, pipe wall roughness, and size of the pipe. Then, compute the average velocity, Reynolds number, relative roughness, friction factor, and points on the velocity pr..
a wind tunnel is 6m long and has a cross section of 1m2. air flows through at 70ms at standard sea-level conditions
a well known architect designed a 1600 m tall building. in the building steam for the heating system enters at ground
Define the flexibility and stiffness influence coefficients. What is the relation between them?
What is the characteristic size of this shredded material? (You may wish to use the Rosin-Rammler paper.)
Assume the rectifier is connected to a 120 VAC, 60 Hz line by a transformer. Find the turns ratio of the transformer and the capacitance if the ripple voltage is not to exceed 1% of the DC voltage.
Write an Matlab m-file to solve this problem with Runge-Kutta method. Solve the concentration of T1 and T2 (or salt content) as function of time (up to 100 minutes). Both T1 and T2 are mixing tanks (assume immediate mixing).
Consider the system shown in the figure where a geothermal supply of hot water flowing through twoflash evaporators is used to operate a steam turbine.
Find the stress in both members shown below and what steel specifications (types of steel) are suitable for structural applications?
The inner surface of a plane brick wall is at 40°C and the outer surface is at 20°C. Calculate the rate of heat transfer per m 2 of surface area of the wall, which is 250 mm thick. The thermal conductivity of the brick is 0.52 W/mK.
49325 CAMD: Computer-Aided Mechanical Design Project. You may apply Finite Element Method and Optimization techniques to any structural mechanical components as a numerical problem or as a practice-based design problem of your own choice
a car is traveling at sea level at 88 mihr on a 4 upgrade before the driver sees a fallen tree in the roadway 150 ft
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