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Carbon dioxide at 20 degrees celsius and a pressure of 550 kpa flows through a pipe at 0.04 N/s, what would be the maximum diameter of the pipe for the flow to be turbulent?
(a) Find the speed of the bucket (b) How fast must the bucket move at the top of the circle so that the rope does not go slack?
What is the compressor's steady state response when a 30kg absorber with a stiffness of 1.3*10^5 N/m is added to the end of the beam? Please determine how to change the absorber to minimize the response of the beam.
What are effects of the annealing process on the density of these dislocations ? Can you give examples for materials?
Determine the analytical solution for the maximum stress of the beam shown; compare with stress results from SolidWorks.
Also determine the axial force and deformation of the diameter due to temperature rise. Let E = 120 GPa and Co-efficient of linear thermal expansion = 0.0000168 per °C.
two reversible refrigeration cycles operate in series. the first cycle receives energy by heat transfer from a cold
hot water flows through a pvc k.092 wmk pipe whose inner diameter is 2 cm and outer is 2.5 cm. the temperature of the
At a section in a passage, the pressure is 150 kPa (abs), the temperature is 10 deg C, and the speed is 120 m/s. For isentropic flow of air, determine the Mach number at the point where the pressure is 50 kPa (abs). Sketch the passage shape.
homebuilding has undergone significant advances in the last 20 years due largely to replacement of hand tools hammers
air enters a turbine operating at steady state at 500 kpa 860 k and exits at 100 kpa. a temperature is 460 k. stray
determine the density specific heat and thermal conductivity of a lightweight aggregate concrete mix that is composed
many bridge designs today contain simple geometrical components but are constructed into complex ways to ensure that
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