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- 4.15. Calculate I,, ly, Iy for the section of Figure P4.9 above. You can use the results from Example B.1.Here are these questions if I could get help with themIf a spherical storage tank holds 40,000 gallons (120,000 liters) of water,what diameter must it have?If a cylindrical storage tank has a 40-foot (12 m) diameter circular 05::=how high must it be to hold 1 million gallons (3 million liters)?If water is moving at a rate of 3.2 ft3/sec (90,000 cc/sec), how manygallons (liters) per minute is this?If the specific gravity of gold is 19.0. what is the weight of a cubic inch(cubic centimeter) of gold? A cubic foot (cubic meter)?Ex:O How many Potenhially defferent mixed tensors forder two ca be defined by faking the auer Product of s and T twice 7 Ok / tten Contraching s
- Please solve this question quecklyEngine oil at 60°C rotates as a rigid body about the z-axis in a spinning cylindrical container. There are no viscous stresses since the water moves as a solid body; thus the Euler equation is appropriate. (We neglect viscous stresses caused by air acting on the water surface.) Integrate the Euler equation to generate an expression for pressure as a function of r and z everywhere in the water. Write an equation for the shape of the free surface (zsurface as a function of r). (Hint: P = Patm everywhere on the free surface. The flow is rotationally symmetric about the z-axis.)4. Kittel Ch3-4. Energy fluctuations. Consider a system of fixed volume in thermal contact with a reservoir. Show that the mean square fluctuation in the energy of the system is ((x − (e))²) = t² (əU / ət), Here U is the conventional symbol for (e). Hint: Use the partition function Z to relate U/ar to the mean square fluctuation. Also, multiply out the term (...). (89)
- dar Grubler's planar mcchanism to be onc. The mumber of degrees of freedom for below mentioned arrangement is 3- 651 14 (a) 0 18. (c) 2 (b) 1 ケ3 (d) 3" CENTROIDS OF VOLUMES " Please refer to the answer key (book from Engineering Mechanics by SInger) Please include the analyzation of figure so that i could undestand the steps and solution. Thankyou!SEA WATER T SIDE FRS 7M Faf FRESH WATER SIDE As shown in the figure, a vertical wall Seperates a seawater-filled tank and a freshwater-filled tank from each other. Since the depth of seawater is 7 meters a) How deep should the fresh water be for the compound force on the wall to be Jero? 2 b) is the moment created by the fluid forces gero when the resultent force on the wall is gero? Explain.
- 216 Home Works Find the Centroid for the Shaded area. [Q2] 120 150 30 90 130 4 4Consider how the new geometry in this problem affects the math/boundary condition/derivation. Both equations are listed!An infinitely long cylindrical container has a cross section area of radius R, and is placed horizontally with gravity being in the −y direction, as shown in the figure. The cylinder is 50% filled with water (the shaded part), with density ρ. The other 50% of the volume in the cylinder is filled with air with constant pressure of p = p0. The length of the cylindrical container in the axial direction is W. c) Use control volume analysis and divergence theorem on the 4th quadrant water volume to compute the hydrostatic force acted on the 4th quadrant of the cylinder wall, as shown by the thickened line in the figure.