Unstretched rod T 1.49 [m] Diameter of rod = 0.148 [m] Stretched rod m 2.63 [m]
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Given the figure, if the tensile stress on the rod is 32.6 [kPa], what is the mass of the block?
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- You must select a submerged centrifuge multicellular pump for a borehole on a worksite that requires a flow of 1.500l/s. The borehole itself is 150m deep (see figure 5). If the outlet pipe has the following properties, then: wwww wwwwwww Water outlet (open air) wwww Outlet pipe L = 200m Borehole wwwww Pump f= 0.04 D = 38mm Figure 5 Borehole and pumping schematic A) Choose a pump from those presented in figure 6 (you must select the most adequate model) if there is no local head-loss, only friction related head-loss. You must draw the complete characteristic curve for the pipe directly on figure 6.; B) Is cavitation an issue if NPSHrequired is 5m briefly discuss the results. C) Determine the supplied power output by the pump (in kW) as well as the absorbed power output when the pump reaches it's operational flow for the pump you have selected. | N.B. Hypothesize that water in the borehole is level with the pump intake. The pump intake is the same diameter as the outlet pipe. Patm-100…A particle is subjected to the action of two forces: F1 = 2.5 i-3j+ 6 k [kN] and F2 = 5 i+6j-5k [kN]. The magnitude of the resultant force is: %3D %3D Select one: Oa. FR=-8.139 [kN] %3D Ob. FR 8.139 [kN] Oc. FR = 5 [kN] Od. FR=-5 [kN] Activate Win ype here to seatch 445 PEFind the characteristic frequencies and the characteristic modes of vibration for systems of masses and springs as in Figure 12.1 and Examples 3, 4, and 6 for the following arrays. 14. k, m, 2k, m, k 5k, m, 2k, m, 2k 15.
- Buckling 1. For a given axially compressed rod with I cross-section and with different support conditions in xz and xy planes find critical stress equivalent for critical compression force. Data: E-205[GPa], a-6[m], J,-2200 cm, A-78.1cm², J-3050.cm*, R-200[MPa], R₁, -190[MPa]. ed X P P est cal #3/4/4/₂12. Imagine a solar collector for hot tap water in a hot climate. De outdoor temperature is 22 degree Celsius. De tank of the solar collector is placed outside, and the cold water temperature to the collector is 20 degree Celsius. De water flow rate through the collector is 45 liter/hour. De collector is 2 [m2] and the average solar radiation in the time period considered is 1000 [W/m2]. What is the temperature of the hot water to the tank? The efficiency of the collector can be assumed to be 0.7 (we neglect the dependency to the water temperature) (multiple choice, one answer) 34 [OC] 47 [OC] 54 [OC] 67 [OC] 74 [OC]D 600 N 4 m 900 N E A) F(ED).sin53= F(DC) 4 m A B B) F(EC)=1500 N 6 m C) F(DC).sin37 = F(ED) force in member [ED] : F(ED) force in member [DC] : F(DC) D) F(ED).cos53 = F(DC) force in member [BC] : F(BC) E) F(DC).cos37 = F(BC) Which following one is TRUE?
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- 1.1 s) The overall size of the system (i.e. the shell) is 5.8 inch ID and a 27-inch long tube section. Assuming tubes are 1/2 inch in diameter (ignore thickness) and that the tubes are spaced with 1/4 inch between them. Estimate the number of tubes that will fit in the shell. O 36 O 60 O 13 O 46 QUESTION 2 1.22 area [ft²]. Og ft² 5 ft² O 17.66 ft2 10.6 ft2 Regardless of your answer to part 1.1, use 36 as the number of tubes and estimate the total heat transfer(The complete question is in the picture) The force acting on an object is F = 3.50 [N]ˆi−5.20 [N]ˆj−2.30 [N]kˆ. The vector from the origin to the point where the force is applied is r = 3.50 [m]ˆi + 2.50 [N]ˆj. What is the vector torque with respect to the origin produced by this force?A. 10.9 [N.m]ˆi + 11.5 [N.m]ˆj − 27.0 [N.m]kˆB. −18.2 [N.m]ˆi + 8.75 [N.m]ˆjC. −5.75 [N.m]ˆi + 8.05 [N.m]ˆj − 27.0 [N.m]kˆD. −5.75 [N.m]ˆi − 8.05 [N.m]ˆj + 9.45 [N.m]k2 Eg = 200 GP₁ A₁ = 200 mm ² T point A and point D lies 2.625 m Find the reactionary force A 1.45 [m] C A₂ = 400 mm² Point Cles from wall at B. ат в in A₁ 19.0 [kN] 4₂ E . 5.250 [m] 0.725 m x-direction. (UNIT KN) De from pin at 65.0 [kN] B