direction, acting on the plug if it is inverted and if the tank contains 600mm of oil having an SG of 0.82. Box your final answer and upload your solution for this problem here.
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- A vertical plate is submerged in water and has the shape as seen in the picture. Using the fact that the weight of water is 62.5 lbs/ft³, calculate the hydrostatic force (in Ibs) against the end of the tank. Give your answer correct to the nearest hundred. (Hint: First set up a Riemann sum that approximates the hydrostatic force, which can then be used to obtain an integral that represents the force.) 12 ft 8 ft 20 ft Hydrostatic force = IbsA conical plug is used to close a 0.1m radius circular hole at the bottom of the tank. The dimension for the plug is 0.4m diameter and 0.3m long. Determine the total vertical force, and its direction, acting on the plug if it is inverted and if the tank contains 600mm of oil having an SG of 0.82. Box your final answer and upload your solution for this problem here. Attach File Browse Local Files Browse Content CollectionAn empty long neck bottle with an upper cylinder diameter of 1 inch, with the length of 4 inches and lower cylinder measures 4 inches in diameter and length of 5 inches is vertically immersed in a body of water. How deep will you submerged the bottle from the mouth opening in order to occupy the whole bottle neck with water. please show the formula used and cancellation of units, if possible include illustration also.
- In the Fig. is shown the cross-section of the tank full of water under pressure. The length of the tank is 2.5 m. An empty cylinder lies along the length of the tank on one of its corners as shown. Find the horizontal and vertical components of the force acting on the curved surface LMN of the cylinderCalculate the hydrostatic force and components of the semicylindrical protuberance located at the bottom of the tank. It has a length of 9 feet inward.Do it as a new job.The cylinder shown in the figure extends 9ft into the paper. If the cylinder has the radius of 4 ft, compute the vertical component of the hydrostatic force of the oil on the cylinder. 90 Oil ( s.g. = 0.85 ) 4 ft 90° 50°
- Using the piezometric concept, compute the magnitude of the resultant force on the indicated area 0.2 m and the location of the center of pressure. Note that Semicircular hatch the tank is now sealed at the top with a pressure of 0.25 m 13.8 kPa (gage) above the fluid. 0.66 m 508-mm radius Ethylene glycol sg = 1.10 0.25 m 30° Tank is symmetricalA trough, 10meters long is filled with a liquid of density 840 kg/m3. Its cross section is in the shape of a parabola with base width of 4m at the top and a height of 5m. If the trough is filled with water to a depth of 4 meters, find the force due to liquid pressure acting on one end of the trough. (Note: Place the liquid surface along the x-axis.)PLEASE ANSWER THEM ASAP ALL FOR AN UPVOTE. I PROMISE THAT. At 20 0 C, determine pressure (in N/m²) inside a water droplet having diameter of 1.5 mm with a surface tension of 0.053 N/m. a.) What is the working formula of pressure to be used in this problem? b.)What is the diameter of the droplet (in m - enter your complete answer in decimal system)? c.) What is the radius of the droplet (in m - enter your complete answer in decimal system)? d.) What will be the modified working equation to be used to solve this problem based from the given? e.) What is the pressure inside the droplet of water (in N/m²)? f.)What is the pressure inside the droplet of water (converted to its CGS unit)?
- 1. Determine the hydrostatic force acting on a vertical trapezoidal section whose upper base is flushed parallel to the liquid surface. The top base measures 2 m and the lower base is twice the length of its top. One of its remaining side is upright vertical while the other is inclined 45° with the horizontal. Calculate as well the location of its center of pressure. 6 m 2. The tank shown contains alcohol (SG=o.78) and covered by a diameter Calculate the bydrostatic force EA conical plug is used to close a 0.1m radius circular hole at the bottom of the tank. The dimension for the plug is 0.4m diameter and 0.3m long. Determine the total vertical force, and its direction, acting on the plug if it is inverted and if the tank contains 600mm of oil having an SG of 0.82.For the vertical wall shown on the left, the oil thickness is assumed to be 0.2 m and its SG is 0.8. Assume the wall and gate width (into the paper) are 2 meters. Draw the pressure diagram. Assume the density of water is 1000 kg/m2 and g = 9.8 m/s2. Oil Determine а. Pressure at the interface between oil and water Water b. Pressure on the hinge С. Pressure at the base of the gate 2.1 m d. Amount of force acting on the gate Hinge е. Location of the force relative from the hinge 2-m-wide 0.8 m gate