find the mass of pink, cyan, and orange
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find the mass of pink, cyan, and orange
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- Unit weight of liquids Derive the formula used in determining the unit weight or density of a liquid using the displacement method. How is it different from the direct method? What are the practical applications of experiment?Two homogeneous spheres of mass M radius R joined by a bar of length L = 2R, negligible mass, and suspended from its geometric center by a rope such that when rotated ϕ exerts torque −kϕ with k torsion coefficient of the wire. The air exerts dissipative effect F = −6πηv on each sphere, where η is the viscosity of the air and v is the linear velocity of each sphere. If I0 = 25MR2 is the moment of inertia of a sphere with respect to its center of mass (image 1)determine the equation of motion of the pendulum. (image 2)A mixed berries cordial manufacturer changed to 5 m stainless steel tubing due to highamount of energy drop recorded in the previous material. Calculate the pressure drop permeter length for the cordial if relative roughness, velocity, density, viscosity, and friction inthe pipe are given as 0.0015, 1.5 m/s, 1120 kg/m3,1.6 X10-3 kg/m s and 0.07, respectively.
- Cell culture media is flowing through a cylindrical tube at a volumetric flow rate of 12 ml/s. The tube has a diameter of 0.8 cm and length of 12cm. Assume the viscosity of the media is 1.2 cP (0.0012 Pa s). a. What is the shear rate at the wall of the tube ? b. What is the shear rate at the centerline of the tube ? c. What is the shear stress at the wall of the tube ?Q6: Using Raleigh’s method, Analyze an equation to determine the resistance, P of a sphere of diameter, D moving with a velocity, v in an incompressible and unlimited medium of specific mass, ρ and coefficient of viscosity μWe would like to develop an empirical correlation to determine the heat trans- fer coefficient, h, for turbulent flow in a circular conduit. Please use the order provided for the lists of physical variables and fundamental units in working this problem. The following physical variables are to be included: h, average fluid velocity v, density ρ, viscosity μ, thermal conductivity k, specific heat capacity c, diameter D, and length L. (a) Express each physical variable in terms of fundamental units mass (m), length (l), time (t), and temperature (θ).
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- Two endlessly long flat plates, separated by 3 inches in distance but with a thickness of 5 inches, each transport alcohol (5 m/s, 1 Pa·s, S.G. 0.89 (ref. water at 4 degrees Celsius) to a given location with a specific velocity. Prove that the Reynold's number of the following problem is a value approximately around 90-100.A solid cylinder of diameter D , length L , and density ρ sfalls due to gravity inside a tube of diameter D 0 . The clearance,D 0 - D <<, D , is fi lled with fl uid of density ρ andviscosity μ . Neglect the air above and below the cylinder.Derive a formula for the terminal fall velocity of the cylinder.Apply your formula to the case of a steel cylinder,D = 2 cm, D 0 = 2.04 cm, L = 15 cm, with a film of SAE30 oil at 20 ° C.What is the behavior of flow if water at 20 deg C is flowing through a pipe with a radius of 2.067 in at 20 gal/min. Viscosity of water at 20 deg C =1.005 cP Density of water at 20 deg C = 998.23 kg/m3