A rectangular scow 9.5 m wide, 14 m long and 3.2m high has a draft in water of 2.4 m. Its center of gravity is 2.7 m above the bottom of the scow. Calculate righting moment (in kN. m) when the scow tilt until one side is just at the point of submergence. Round off your answer into a whole number. Answer: RM = kN.m
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- A scow 6 m wide and 20 m long has a mass of 200,000 kg. Its center of gravity is 30 cm above the water surface. Determine the following: (a) the depth of submergence. (b) the metacentric height and righting moment when Ay = 30 cm. G IM GO Ay E Bo BA rectangular scow 9m wide, 15m long, and 3.6m high weighs 3304kN.a. What is the draft in the seawater weighing 10.20kN/m^3?b. What is the metacentric height if its center of gravity is 2.7m above the bottom?c. If the scow tilts until one side is just at the point of submergence, determine the right couple.Determine the vertical displacement at point B. Note: Use two (2) decimal places in the final answer. 15 kN 6 kN/m B 2EI EI EI VA 2.0 m 4.0 m 2.0 m Vo 8.0 m O 153.50/EI O 113.50/EI O 149.50/EI O none of the above
- Determine the vertical displacement at point B if El is 15.0 x 10^3 kNm^2 Note: Use two (2) decimal places in the final answer. 15 kN 6 kN/m В C D 2EI EI EI VA 2.0 m 4.0 m 2.0 m VD 8.0 m2 For the Problem below Solve and Calculate the active thrust P, via coulomb's method for the data given assume that Y is a constant for the whole depth and C=0 as follows: H=5 m; = 30; B 100; hw 0; y= 18 KN/m'; q = 250 KN/m² . q kN/m2 WAYAYAYAY Granular backfill (c = 0) Water levelSITUATION 1.3 In the given Figure 1.3 shown, the depth of water upstream is 8.50 meters high and downstream is 3.50 meters high a) What is the hydrostatic pressure upstream H=8.50m. P,=? (in Newtons) b) What is the hydrostatic pressure downstream h=3.50m. P-? (in Newtons) What will be the overturning Factor of Safety=? c) H=8.50 meters Water Surface FIGURE 1.3 GRAVITY DAM Pu=? 2.0m NOTES: Consider 1 meter width. Conrete S. G. = 2.30 Water S.G.=1.0 W₂ Water Surface 9.60 meters Pd = ? h=3.50 meters
- A rectangular scow 2.13 m high, 5.5 m wide and 9.8 m long loaded with garbage has a draft of 1.52 m in water. Its center of gravity is 0.6 m above the waterline. What is the initial metacentric height? Select one: a. 0.66 m b. 0.30 m c. 0.76 m d. 0.60 mA cylindrical caisson having an outside diameter of 6 m floats in watein frsh water with its axis vertical and its lower end submerged 6 m below the surface. Its center og gravity is on the vertical 2.5 above the bottom. Find the metacenter height. Choose the best answer: a.0.875 m b.2.456 m c.0.421 m d.1.67 mA rectangular scow 30 ft wide, 50 ft long and 12 ft high has a draft in sea water (s = 1.03) of 8 ft. Its center of gravity is 9 ft above the bottom of the scow. Determine the initial metacentric height.
- 30 kN 30 kN 30 kN to 20 kN - E 4 m B -2m–2 m: -2 m - EA = constant E = 200 GPa A = 5000 mm? Determine the horizontal displacement at Joint A. Determine the horizontal displacement at Joint B. Determine the horizontal displacement at Joint C. Determine the horizontal displacement at Joint D. Determine the horizontal displacement at Joint E.A cylindrical caisson having an outside diameter of 6 m floats in watein frsh water with its axis vertical and its lower end submerged 6 m below the surface. Its center og gravity is on the vertical 2.5 above the bottom. Find the metacenter height. Provide FBD. Choose the best answer: a.0.875 m b.2.456 m c.0.421 m d.1.67 m3. A rectangular scow 12-m long, 7.20m wide, and 2.40m high has its center of gravity 1.50m above the bottom. It carries a total load of 140 tonnes including its weight in an upright position. If the scow is tilited at an angle of 11 degrees. Determine the value of the weight that must be moved at a distance of 2.40m from the center line of the scow. a. 21.45 b. 24.51 c. 12.25 d. 29,42