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Rework given Problem, changing the joint efficiency to 80%
Problem A 5-ft-diameter steel pipe is made of 3 8 -in. plate with groove-welded longitudinal joints. Assuming an allowable tensile strength of 13,000 psi and a joint efficiency of 100%, compute the safe head of water on the pipe.
prepare a spreadsheet to calculate terminal velocity for objects of various sizes and materials falling through different fluids. The purpose is to help a high school science teacher explain the concept of terminal velocity to a class of 11th gra..
What voltage must be applied between the filament and target so that electrons interacting with molecules at the point marked SS (sample source) will have 70 e V of kinetic energy?
Determine the rate of heat loss from the molten salt per meter length of the pipe.
a solid circular shaft and a tubular shaft both with the same outer radius of cc0 0.600 are being considered for a
two channels are welded to a rolled w section as shown. determine the moments of inertia and the radii of the gyration
specifications for steel plate to be used in the construction of a certain bridge call for the minimum yield to be
a rectangular solar thermal collector sits on the roof of a house only one side is exposed to air and solar radiation
a rigid tank contains 20 lbm of air at 20 psia and 70degf. more air is added to thenbsptank until the pressure and
the carnot cycle is defined as having a certain specific first step the isothermal expansion of a gas. can a carnot
a 2 m long concrete traffic barrier is used to provide safety during highway construction. if h45 cm determine the
The main elevator A of the CN Tower in Toronto rises about 349 m and for most of its run has a constant speed of 22 km/h. Assume that both the acceleration and deceleration have a constant magnitude of g/3 and determine the time duration t of the ..
Air at 4.5 bar, 550 K enters an insulated turbine operating at steady state and exits at 1.5 bar, 426 K. Kinetic and potential energy effects are negligible. Determine the work developed, in kJ per kg of air flowing.
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