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Determine the development length required in the column for the bars shown. If the available development length is not sufficient to develop the tensile strength of the steel (fy), design an anchorage using a 180° hook and check its adequacy. Use f′ c = 4000 psi. The clear space between the No. 10 bars is 3 in. with a side cover of 2½ in.
a robot is on the surface of mars. the angle of the depression from a camera in the robot to a rock on the surface of
A thermocouple is inserted into a hot air duct to measure the air temperature. The thermocouple (T1) is soldered to the tip of a steel thermocouple well of length L = 0.15 m and inner and outer diameters ofDi = 5 mm
r-134a enters a water-cooled compressor as saturated vapor at 1 bar with a mass flow rate of 0.9 kgmin. the inlet area
A piston cylinder assembly contains a two phase liquid vapor mixture of h2o at 200lbf/in^2 with a quality of 80%. The mixture is heated and expands at a constant pressure until the final temperature of 480 degrees F is reached. Determine the work for..
a sky diver weighing m kg jumps from a moving aircraft at x meters above the ground. heshe initially free-falls for a
a pipe tapers from a diameter of 0.5 m at the inlet to a diameter of 0.25 m at the outlet and turns by an angle of 45
a real object is located at the zero end of a meter stick. a large concave mirror at the 100 cm end of the meter stick
Assuming uniform shower flow, estimate the exit velocity from the showerhead jets. loss of the propellant, assuming that the exit gas has a molecular weight of 28.
Consider a system consisting of liquid water initially at T1 = 318 K, p1 = 3.5 bar undergoing a process to a final state at T2 = 353 K, p2 = 1.5 bar. Use appropriate equation with the data from the table to evaluate change in specific entropy.
Neglecting radiation heat loss, calculate the heat flux qe" that must be supplied by the electrical tape to ensure a uniform fluid temperature.
two oils are tested to establish their viscosity index. oil a and oil b have their viscosity measured at temperatures
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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