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Q: The extruded plastic shape has dimensions of D = 36 mm, d = 30 mm, a = 82 mm, and t = 8 mm. (a)…
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Q: 2. The bracket BCD is hinged at C and attached to a control cable at B. For the loading shown in…
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Q: A fountain consists of a horizontal inlet pipe with a cross-sectional area, A1, which enters a block…
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Q: What water level H must be maintained in the tank as shown in Fig. P. 3.5.20 to deliver a flow rate…
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Q: Fluid is flowing through a 20 mm inside diameter and 25 mm outside diameter brass tube at no leaking…
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Q: Determine the moment of inertia, with respect to the centroidal axis (CE) parallel to the x-axis.…
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Q: The strain components for a point in a body subjected to plane strain are ɛx = 630 µe, ɛ, = 940µE…
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Q: A combustion chamber in a Gas Turbine Power Plant has efficiency equal to 62.82%, What is the actual…
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Q: A high temperature source supplies a heat engine with 20 kJ of energy. If the engine rejects 4kJ to…
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Q: Question 13 Solve the problem. Find the work done by a force of 200 pounds acting in the direction…
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Q: velocity of the rod
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Q: Three masses are attached to a 100-meter long beam as shown below. The mass of the bea, is 210…
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Q: 1.) An ideal regenerative cycle is executed with 56700 kg/hr of steam initially at 13.44 MPa and 594…
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Q: A particle is moving along a straight line and its acceleration in m/s 2 is given by: a = 6t−18. The…
A: Given:a=6t-18u=15 m/s
Q: Determine the torsion on the rigid supports and the maximum shearing stress developed in each…
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Q: A Kaplan turbine has a runner diameter of 4 m and a hub diameter of 1.2 m. The discharge through the…
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Q: For the beam and loading shown, use the double-integration method to determine (a) the equation of…
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Q: 3. A 60-gram mass vibrates in simple harmonic motion (SHM) at the end of a spring. The amplitude of…
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Q: Q2: The tool shown in Fig.2 is used in a gluing operation to press a thin laminate to a thicker…
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Q: Quiz 2 Find me components of F = 200N Shown in fig with respect to X-axis & y=axis
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Q: Mohr’s circle is shown for a point in a physical object that is subjected to plane stress. Each…
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engineering management:
With the help of the table attached below:
1. Compute the estimated time (te) for A, B, C, D, E, F, G, and H
2. What are the processes included in the critical path?
3. What is the total number of days for the project to be finished?
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- As an automotive engineer, your role is to design a petrol engine for SUV car with fourstroke and four cylinder petrol engine. Describe the performance criteria need to beconsidered in detailing out the possible outcome of your spark ignition engine? Write asimple essay and an example of your design calculation to describe the prototype ofyour engine.Please provide steps on how to derive the output of each container.You are working in the compressor design department of a large compressor manufacturer. As the new junior engineer you have been assigned to a large project and you are responsible to do preliminary thermos-fluids design of a centrifugal air compressor that can supply (266)kg/min of air at a final delivery total pressure of 312kPa. The project manager has advised you to assume the ambient air conditions as 101.55 kPa and 26 degrees Celsius. Further you have been given boundary conditions to help you with compressor design. You must assume that the compressor runs at 19925rpm with isentropic efficiency of 90%. Also assume the is no pre-whirl at the inlet and the inlet hub diameter is 13.4cm and the air enters the impeller eye with a velocity of 158 m/s. Assume the ration of Vw2/U2 (whirl speed to tip speed is (0.804) 1. stagnation temperature in degrees clelcius and the total pressure at the inlet kPa of the compressor 2. stagnation temperature in degrees celcius at the end of…
- Task 1: - Wind Turbine Electrical Arrangements: There are four types of wind turbines in terms of their electrical design, namely: Type A, B, C and D. Considering the mechanical, electrical, electronic and control design features of these four types, compare them in terms of: Efficiency. Performance.Tin Opener EM 511 ASSIGNMENT 1 TITLE: TOTAL DESIGN ACTIVITY EXERCISE PRODUCT DESIGN SPECIFICATION (PDS) Due Date: 30th April 2022 Place yourself in the position of a consulting engineer who has been asked by a client to design several structures to be mounted on an existing jetty. Each Structure is to carry a cyclone and powered articulated arms carrying a suction pipe system for unloading of grain ships directly into trucks (Figure 13.2). Outline the range of questions you would ask your client in preparation of the initial Product Design Specification(PDS), giving reasons for asking such questions in the context of this problem.As a building designer, you have been asked to analyze and select the bestwindow frame type alternative—either aluminum or steel. The project is located in a remotearea, and the nearest industrial area hosting steel and aluminum windows framesmanufacturers is 250 km away. All project windows are identical, and the circumference ofthe window frame is 6.2 meter. A crew of two labors is required to manufacture one steelframe. It takes 2.5 hours to manufacture the first window every day, and the learning rate is0.9. The number of production units is per day is limited to 8. The weight of steel is 12 kg permeter, and the weight of aluminum is 4.5 kg per meter. The cost of steel is 0.4 OMR per kgand the cost of aluminum 1.1 OMR per kg. If 45 windows frames are required for the project,the crew cost is 3 OMR per hour for steel frames and 3.6 for aluminum frames, and thetransportation, price is 0.01 OMR per kg per 50 km, which alternative would you select?
- 15.16. Files & More (F&M), a manufacturer of office equipment, is introducing a new product, the BUNGEE desk chair, made from elastic webbing that provides both comfort and support. The materials that go into the chair are shown below. a. Construct a product structure diagram that reflects how the product is assembled. b. Convert the product structure diagram into a multilevel indented bill of material. c. F&M is trying to decide how much of the chair to assemble for the customer prior to shipping. Recommend a preassembly strategy that would allow easy assembly for the customer, and document it with a revised multilevel indented bill of material.Part A & B - Label and solve and circle answers Question : The controversial Cape Wind project proposes 130 large wind turbines in Nantucket Sound, intended to provide 75% of the electric power needs of Cape Cod and the Islands. The turbine diameter is 100 m. For an average wind velocity of 7 m/s, what are the best rotation rate (r/min) and total power output (MW) estimates for (a) a HAWT; and (b) a VAWT?Department of Mechanical Engineering PRINCIPLES OF COMPUTER AIDED ENGINEERING – MENG30 Please solve the problem by keupord 10.Consider the Material Selection Design Problem for the FRAME of a Human Powered Road Vehicle. Define the selection criteria, assign weights (importance), and evaluate the following alternatives based on COST, WEIGHT, STRENGTH, AVAILABILITY, MANUFACTURABILITY, ASSEMBLY, TEST & MAINTENANCE, ENVIRONMENT & SUSTAINABILITY, SAFETY & RELIABILITY: a.Steel b.Aluminum c. Titanium
- MECT361 Mechatronics Components and Instrumentation Please solve the problem in keupord 0.Consider the Material Selection Design Problem for the FRAME of a Human Powered Road Vehicle. Define the selection criteria, assign weights (importance), and evaluate the following alternatives based on COST, WEIGHT, STRENGTH, AVAILABILITY, MANUFACTURABILITY, ASSEMBLY, TEST & MAINTENANCE, ENVIRONMENT & SUSTAINABILITY, SAFETY & RELIABILITY: a.Steel b.Aluminum c. Titanium d.Composite- CFRPDesign analysis q7Q5.3) Explain the key principles behind applied design thinking.