PLEASE SHOW COMPLETE SOLUTION AND BOX THE FINAL ANSWER. THANK YOU. A man and a parachute are falling with a speed of 173ft/sec when the parachute ppens and the speed is reduced so as to approach the limiting value of 15ft/sec by an air resistance proportional to the square of the speed. Find time in terms of the velocity.
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- A box slides from rest at point A down an inclined 30 degrees to the horizontal. After reaching the bottom of the plane, the box moves on a horizontal floor at a distance 2m before coming to rest. Coefficient of friction between the box and the floor is 0.40 a. What is the distance from point A to the intersection of the inclined plane and the horizontal floor? b. What is the velocity of the block as it reaches the intersection of the inclined plane and the horizontal floor? c. What is the total time of travel until it stop?Show complete solution and 3 decimal places for the final answer. Asap thanks! A truck carrying fully-filled water container that is 2.5m long, 2.5m wide, and 2m high. The entire mass is 3000kg encountered an unbalanced force of 15kN. Estimate the volume of spilled water m^3.A skier starts from rest and slides downhill. What will be the speed of the skier if he drops 35 centimeters in vertical height? Ignore any air resistance ( which will in reality be quite a lot) and any friction between the skis and the snow
- PLEASE ANSWER QUESTION #1 ONLY, DISREGARD THE OTHER PROBLEMS GIVEN. SHOW COMPLETE SOLUTION. THANK YOU. An 8 ft diameter by 16 ft height vertical tank is receiving water (? = 62.5 lb/ft3) at the rate of 295 gal/min and discharging through a 4-in ID line with a constant speed of 6 fps. At a given instant, the tank is half full. Determine the following: QUESTION #1: What is the mass change in the tank? note: round off to 2 decimal place QUESTION #2: What is the water level in the tank 15 min. later? note: round off to 2 decimal place QUESTION #3: What is the volume change in the tank? note: round off to 2 decimal placeNeed the correct answers in this problem AS SOON AS POSSIBLE. Please provide COMPLETE SOLUTION in 2 questions. Box the final answers. Thank you, I will give upvote if you does. Load in C = 400kN Load in E = 500kNA section of a reinforced concrete elevator shaft is shown in the figure. Compute the following: a. Centroid of section; b. Centroidal Moments of Inertia; and c. Rigidity about the centroidal axes. Consider the effect of shear deflection. Assume h = 15m, P = 1000 kN, and f'c = 24 MPa. ..need original and complete answer
- Read the question carefully and give me right solution according to the question.. Don't miss anything. Thank you At what speed in rpm must an open vertical cylindrical vessel, 2m in diam, 4m high and filled with water, be rotated on its own vertical axis in order that the effect of rotation will be to discharge sufficient quantity of water to uncover a circular area on the bottom of the vessel 1m in diameter. Determine also the volume of water spilled out. Draw the Figure.A rectangular tank 20 ft long by 6 ft deep by 7 ft wide contains 3 ft of water. If the linear acceleration horinzontally in the direction of the tank's length is 8.05 ft/sec2, a.) Compute the total force due to the water acting on each end of the tank and b.) show the difference between these forces equals the unbalanced force necessary to accelerate the liquid mass. i need an answer right away please sir , thanks.DYNAMICS OF RIGID BODIES UPVOTE WILL BE GIVEN.PLEASE WRITE THE COMPLETE SOLUTIONS CORRECTLY AND LEGIBLY. NO LONG EXPLANATION NEEDED. BOX THE FINAL ANSWER. A 1.09 kg block B is moving with a speed of 2.61 m/s as it strikes the 0.38 kg sphere A which was at rest. If the coefficient of friction between the block and the floor is μ = 0.27 and the speed of the sphere was 1.22 m/s immediately after impact, compute the distance (m) travelled by the block. Round off only on the final answer expressed in 3 decimal places.
- A plunger (54 mm Ø and 0.5 m long) is moving through a horizontal cylinder (60 mm Ø) containing oil at a speed of 8 m/sec that has a viscosity of 7.1x10-6 m2/sec and specific gravity of 0.84. Calculate the force needed to maintain its velocity. Use 2 decimal places.Situation 2. Given the figure below, determine the velocity in (fps) of block A as it hits the surface B. 410 lb-log released from rest. Coefficient of static=0.48 Please answer this with FBD and complete solution. Thank you.10. Situation 4 - A block of wood 0.6 m x 0.6 m x “h” meters in dimension was thrown into the water, it floats with 0.18 m projecting above the water surface. The same block was thrown into a container of a liquid having a SG of 0.90 and it floats with 0.14 m. projecting above the liquid surface. Determine the weight of the block in kN. Round off to three decimal places.