Engineering, 25.10.2019 03:43 thestarlexyp32wpj
The pressure drop latex: \bigtriangleup p△ p, along a straight pipe of diameter d has been experimentally studied, and it is observed that for laminar flow for a given fluid and pipe, the pressure drop varies directly with the distance, l, between taps. assume that latex: \bigtriangleup p△ p is a function of d and l, the velocity, v, and the fluid viscosity. use dimensional analysis to deduce how the pressure drop varies with the pipe diameter. (must be solved using full method of repeating variables)
Answers: 1
Engineering, 04.07.2019 18:20
Find the minimum film thickness for a journal bearing with the data below. shaft diameter, d-50 mm, clearance ratio, cdratio? 0.001, shaft speed, n 2000 rpm; bearing length. i 200 mm; eccentricity ration, ? -0.55. ( note, cdratio-ca/d) the minimum film thickness is um
Answers: 2
Engineering, 04.07.2019 19:10
10 kg of co2 is initially contained at 400 kpa and 300 k. the gas constant for carbon dioxide is 189 j/lkg k) and has a specific heat ratio, k, of 1.289. isentropic expansion then occurs until the pressure is 200 kpa. a) determine the initial volume of co2 in m. b) determine the final temperature in k. c) determine the work done by the system during the expansion kl.
Answers: 2
Engineering, 04.07.2019 19:10
In general, how do thermosetting plastics compare to thermoplastics in mechanical and physical properties?
Answers: 3
Engineering, 06.07.2019 03:10
Steel balls 12 mm in diameter are annealed by heating to 1150 k and then slowly cooled to 400 k in an air att 325 k and h -20 w/m2 k. assume the properties of the steel to be k- 40 w/m k,p 7800 kg/m3, and cp 600 j/kg k. a. determine whether lumped system method can be used to analyze this problem and if so why" b. determine the time required for the cooling process. c. determine the total amount of heat lost from each ball to the ambient air
Answers: 1
The pressure drop latex: \bigtriangleup p△ p, along a straight pipe of diameter d has been experime...
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Mathematics, 22.06.2019 11:30