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Estimate the specific heat transfer from the area in a T-s diagram and compare it to the correct value for the states and process in
Problem 6.51.
Problem 6.51
Water at 1000 kPa, 250?C is brought to saturated vapor in a rigid container, shown in Fig. P6.51. Find the final T and the specific heat transfer in this isometric process.
Thirty six year old Johnson was in his last semester of his graduate program in Civil engineering. Father of two small children, he was anxious to get his degree so that he could spend more time with his family.
An aluminum alloy tube of length 600mm and circular cross section with an inner diameter of 32mm and an external diameter of 36mm is subjected to an axial tensile force of 25kN. Find the change in length of the tube.
The elastic ball bounces down a flight of rigid stairs. Determine the height h of the steps if all the trajectories between successive steps are identical. Use e = 0.85 and the initial velocity 6 m/s.neglect friction. (Theta=70 degrees)
Ignoring both axial and shear deformations and using the unit force method, calculate the vertical displacement of joint B.
I require Relevance, Applicability and Critical Evaluation.? How is the work relevant to the field of cost engineering? Can the results be applied? Give example of the paper's potential usefulness and identify what would make it more useful
If for parathion, the activation energy is 15.4 kcal/mole and A = 8.1 x 109 at a pH = 7.8, how many days will the fish hatchery have to contain the river water if T = 15 oC (winter time)
Determine the energy loss due to the gradual enlargement from a 25 mm pipe to a 75 mm pipe when the velocity of flow is 3 m/s in the smaller pipe and the cone angle of enlargement is 20°C.
The EDM instrument is then set up at B, where distance BC is recorded as 289.595 m. Determine the prism constant.
The two I-beams are welded together and are initially supported by the three cables of equal length hanging vertically from supports directly above A, B, and C. When applied with the appropriate offset
The transition at the cross sections of the step in ductile shaft has a radius of 3 mm. Yield strength is 80 MPa, ultimate strength is 150 MPa. Determine maximum in plane shear stress in the shaft.
A soil section, as shown in Figure P7.18, has a perched groundwater level. Plot the vertical total and effective stresses and pore-water pressures with depth along sections A-A and B-B. Neglect pore air pressure.
given f(x) = -2x^6 - 1.5x^4 + 10x +2. use a root location technique to determine the maximum of this function. perform iterations until the approximate relative error falls below 5%.
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