Assessment Simplify. (y^(-3))^(7) Write your answer without using nega
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A: As per given question We have determine determine the force BC and CG
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Q: oblem 1.16 A Newtonian fluid is filled in the clearance between a shaft and a concentric eve. The…
A: given:sleeve speed, v1=50 cm/sinitial force applied on sleeve, F1=40 Nfinal force applied on sleeve,…
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Q: A sensor is housed in a vacuum chamber with its wall cooled to -150oC. The sensor is heated with…
A: GivenT1=-150oC=-150+273=123KQ=0.5Wε=0.8A=100 cm2=100×10-4 m2
Q: Q3- A centrifugal pump draws water from a sump through a vertical 15 cm pipe diameter. The pump has…
A: Givendi=15cmdo=10cmQ=30 l/s=0.030 m3/sPi=-35 kPaPo=180 kPazo-zi=0.5m
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Q: According to the truss shown in figure, answer the following questions: 14.The force in member AH…
A: Find the force in member AH
Q: QUESTION 2. Determine the reaction at pins at A, B and C and fixed joints. Answer in component form.…
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Q: For the following system, calculate the mode shapes 2 m Select one: 01 11T OUT T [11]¹.[1 -0.5] O [1…
A: For solution refer below images.
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A: GivenWhen h1=2mP1abs=1.17 ×105 N/m2=117 kN/m2When h2=5mP2abs=142 kN/m2
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A: Given: The load intensity, w = 30 kN/m
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Q: in fig below, fluid A is water (PH2o = 62.1lbm/ft^3), fluid B is mercury (PHg = 0.4888lbm/in^3).…
A: GivenρH2O=62.1 lbm/ft3ρhg=0.4888 lb/in3=0.4888×123 lb/ft3=844.6464 lb/ft3z=4.5 ft
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A: The masses are m1=m2=1 kg The spring constant are k1=2000 N/m, k2=6000 N/m
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Assessment Simplify. (y^(-3))^(7) Write your answer without using nega
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- Please show all steps, not Ai generated A flow rate is a particular experiment is normally distributed with μ = 15 cfm and σ =1.25 cfm. What is the probability that the flow rate a) is at most 17 cfm, b) is between10 and 14 cfm, c) differs from 15 cfm by at most 1.25 standard deviations?An existing turbine has the following data: D = 95 cm, H = 27 m, Q = 69.9 m3/s, ρ = 998 kg/m3, N = 248 rpm, bhp = 14.1 MW. A new turbine is to be designed based from the existing one to meet the following requirements: H = 91 m and N = 190 rpm. Calculate the new diameter (meter). Round off your final answer to two decimal places.Use g=32.2 */sec2 (9.81 m/s2) and 60°F (16°C) water unless told to do otherwise.• Google schedule-40 pipe’s thickness at different nominal size to obtain the innerdiameter of the pipe for accurate determinaLon of flow velocity.• Must show your work to support your selecLon. Otherwise, no points will be given.• No peer discussion is allowed.1. A schedule-40 pipe necks down from 24 in at point A to 12 in at point B. 8 *3/sec of 60°Fwater flow from point A to point B. The pressure head at point A is 20 *. FricLon is insignificantover the distance between points A and B. What are the magnitude and direcLon of theresultant force on the water? (A) 2900 lbf; toward A(B) 3500 lbf; toward A(C) 2900 lbf; toward B(D) 3500 lbf; toward B
- CH, CQ and n are functions of CP. Draw the dimensionless performance curves of the turbine on a single graph by makingthe necessary scalings. (Fit the curve by using the excel program for drawing. Also give the values you used for plotting inthe table) ÖN=5A fire hose has an inside diameter of 6.5 cm. Suppose such a hose carries a water flow of 40.5 L/s starting at a gauge pressure of 1.68 × 106 N/m2 . The hose discharges through a nozzle having an inside diameter of 3.4 cm. Take the viscosity of water to be 1.005 × 10-3 (N/m2)⋅s dh = 6.5 cmdn = 3.4 cmP = 1.68 × 106 N/m2Q = 40.5 L/s a. the Reynolds number, NR, for flow in the fire hose to show that the flow must be turbulent, with NR≥ 3000. b. Calculate the Reynolds number, NR, for flow in the fire hose and nozzle to show that the flow must be turbulent, with NR≥ 3000.What is the proper model flow rate?
- please answer A pump impeller rotating at 1400 rpm has an outside radius of 21 cm, the vane outlet angle β2 is 158° and the radial velocity at the outlet Cr2 is 4 m/s. Assuming radial flow at inlet, draw the theoretical outlet velocity diagram and calculate the various velocities and angles.( A)What is the theoretical head Ho, in meters, assuming that the circulatory flow coefficient η∞ = 1.,(B)In the preceding example; assume a deviation of 10° applied to β2 due to circulation after the modern theory. The flow is 30 lit/s. After drawing/illustrating the velocity diagram, find the theoretical head Ho, in meters, assuming radial flow at inlet, neglecting the deviation in inlet velocity diagram. (c)Assuming that the mechanical efficiency ηmech = 0.95, the hydraulic (or manometric) efficiency ηman = 0.8, find the required break horsepower to drive the pump.1-A steel discharge pipe with a roughness equal to 0.5 mm is 800 m long and pumps 265 m³ of water per hour at a temperature of 20°C. The pipe diameter is 25 cm. Calculate the head loss. Data: kinematic water viscosity equal to 10-6 NOTE: if necessary, use Moody's DiagramHelp?this is incorrect Note that n-th geometric cash flow = A1(1+g)^n-1
- A2: FLUID FLOW, FLOW RATE & PRESSURE DROPProblem:3. Determine the volumetric flow rate, in L/s, for water flowing out of a faucet based on 6 L in 8 s.Use g=32.2 */sec2 (9.81 m/s2) and 60°F (16°C) water unless told to do otherwise.• Google schedule-40 pipe’s thickness at different nominal size to obtain the innerdiameter of the pipe for accurate determinaLon of flow velocity.• Must show your work to support your selecLon. Otherwise, no points will be given.• No peer discussion is allowed.. A cylindrical tank 5 ft high has a constant diameter of 4 ft is full of water. The tank has a hole2. A cylindrical tank 5 * high has a constant diameter of 4' is full of water. The tank has a holein its bo]om that measures 0.1ft^2. All losses are insignificant. How long will it take for the tankto empty? Note that you can NOT assume a staLc head and constant flow rate because thewater head in the tank decreases as the water flows out of the tank (A) 35 sec(B) 70 sec(C) 105 sec(D) 140 secQ 1(a) Use the below given data and calculate the metacentric height. Note: Explain each and every step. w= 200g W=2533.2g Displacement x (mm) 80 60 40 20 0 20 40 60 80 Tilt angle Ɵ (degree) 9.5 7.5 5.5 3 3 5.5 7.5 9.5 M.H (b) By using U-tube manometer how can you find out the pressure head? (c) If you are lacking of equipment, how can you determine the discharge of any channel?