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A bird is flying in a room with a velocity field of
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Fluid Mechanics: Fundamentals and Applications
- Consider the mechanical energy equation: PE *+ Vg? + g ZB = + V? + gZA + W - loss + VA? +g ZA + W – loss where loss 20 Select ALL true statements below. a fluid particle will flow through point A before point B a fluid particle will flow through point B before point A points A and B do not lie on the same streamline if a turbine is present, w < 0 if a pump is present, w < 0 if the fluid is perfectly inviscid, loss can be 0arrow_forwardCalculate the value of x(t) at the following time, t= 0.5s, t= 1s and t = 1.5sarrow_forwardIn mechanical fluidarrow_forward
- For the piping system shown below, water is flowing from left to right at steady-state and constant temperature. You may assume the flow is frictionless. The pipe diameter is larger in section A than section B. The diameters of sections A and C are the same. If gravitation and frictional effects are negligible, which of the following relationships is true about the static pressure in sections A and B? Pc Ps Flow section A section B section C OPA Pg because pressure decreases as velocity increases at steady-state OPA = Pg because friction is assumed to be negligiblearrow_forwardPlease show complute solutions and units. thank yoouu. Please andswer it in 1hr.arrow_forwardIn this question, assume the "additional displacement" is in the positive u direction. A mass weighing 16 lbs stretches a spring 8 inches. The mass is in a medium that exerts a viscous resistance of 1 lbs when the mass has a velocity of 2 ft/sec. Suppose the object is displaced an additional 5 inches and released. Find an equation for the object's displacement, u(t), in feet after t seconds. u(t) =arrow_forward
- Two objects form a system. The mass of object 1 is 3 times more massive than the mass of object 2: m₁ = 3m₂. At a certain instant, object 1 is at location (10,-8,6) m, moving with velocity (4,6, -2) m/s. At the same instant, object 2 is at location (3,0, -2) m, moving with velocity (-8,2,7) m/s. a. What is the location of the center of mass? b. What is the velocity of the center of mass? What is the total momentum of the system? C.arrow_forwardthis is an asnwer but i want you write it with handwritten .arrow_forwardThe speed of sound traveling through the sea is a function of temperature, salinity, and pressure. It is modeled by the function C = 1449.2 + 4.67T -0.055T² +0.00029T³ + (1.34-0.01T) (S-35) + 0.016D where C is the speed of sound (in meters per second), T is the temperature (in degrees Celsius), S is the salinity (the concentration of salts in parts per thousand, which means grams of dissolved solids per 1000 grams of water), and D is the depth below the sea surface, in meters. Calculate the following (Check attached image d3) when T = 10 °C, S = 35 parts per thousand, and D = 100 m. Explain the physical meaning of these derivatives.arrow_forward
- The two following 2 energy level systems (E; = 0 & E; = 1) are brought into thermal contact: System A: 8 distinguishable particles; UA = 4 System B: 4 distinguishable particles; UB = 1 If a single unit of energy transfers from System A to System B, what is the final Wtot for the combined system?arrow_forwardWhen air expands adiabatically (without gaining or losing heat), it's pressure P and volume V are related by the equation PV^1.4=C where C is a constant. Suppose that at a certain instant the volume is 510 cubic centimeters and the pressure is 87 kPa and is decreasing at a rate of 12 kPa/minute. At what rate in cubic centimeters per minute is the volume increasing at this time?arrow_forwardDynamicsarrow_forward
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