subject
Engineering, 31.10.2020 14:00 texas101st78

5.2. A liquid-level system, such as the one shown in Fig. 5–1, has a cross-sectional area of 3.0 ftº. The
valve characteristics are
9 =
8 vh
where q = flow rate, cfm, and h = level above the
valve, ft. Calculate the time constant for this system
if the average operating level above the valve is
(a) 3 l
(b) 9 fu

ansver
Answers: 2

Another question on Engineering

question
Engineering, 04.07.2019 18:10
An ideal otto cycle with air as the working fluid has a compression ratio of 8. the minimum and maximum temperatures in the cycle are 300 k and 1340 k. use constant specific heats at room temperature to determine (a) the amount of heat transferred to the air during the heat- addition kj/kg, (b) the thermal efficiency, and (c) the thermal efficiency of a carnot cycle ope limits. process, in rating between the same temperature
Answers: 2
question
Engineering, 04.07.2019 18:10
Assuming compressible flow of air and that the measurements are done at flagstaff a pitot static tube that gives the difference of total and static pressure measures 0.35 m of mercury. what is the velocity of air? assume the temperature to be 300k. (submit your excel or matlab calculation sheet)
Answers: 1
question
Engineering, 04.07.2019 18:10
True or false (explain) (110)[111] is a slip system in bcc metals . the {111} family in fcc contains 8 planes. resolved shear stress (rss) in single crystals is just related to the applied stress. critical resolved shear stress (crss) in single crystal metals is direct proportional to the number of defects in the structure
Answers: 2
question
Engineering, 04.07.2019 18:10
Journeyman training is usually related (clo2) a)-to specific tasks b)-to cost analysis of maintenance task c)-to control process to ensure quality d)-to installation of machinery
Answers: 2
You know the right answer?
5.2. A liquid-level system, such as the one shown in Fig. 5–1, has a cross-sectional area of 3.0 ft...
Questions
question
Mathematics, 20.09.2020 09:01
Questions on the website: 13722359