7-89. Draw the shear and moment diagrams for the shaft. The support at A is a thrust bearing and at B it is a journal bearing. 2 kN 3 kN/m -500 mm- -300 mm- 200 m Prob. 7-89 B
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- q5I will rate and like. Thank you.ge ! Q 1 Please round to the nearest One (i.e., 1). No Comma! A plate-load test was conducted in a sand soil. The size of the bearing plate was 0.505m x 0.505m. The ultimate load per unit area (qu) for the test was found to be 280 kN/m². Estimate the qu for a real footing of size 5m x 5m. qu for a real footing = kN/m2 F1 2 W S F2 #3 80 E F3 D $ 4 000 000 F4 R FL % 5 SA F5 T MacBook Air A 6 Y ◄◄ & 7 G H F7 U * 8 J F8 Next page ▶▶ 9 K F9 1 O 0
- A box of mass m=3.0kg slides down a smooth incline plane of 5.0m long with angle. Please find the speed when the box slides to the bottom of this incline. We assume the box starts to slide at rest.The impulse's magnitude may find thru the product of and a. mass, velocity force, displacement C. b. force, time d. mass, acceleration65. A varsity soccer player kicks a soccer ball approximately straight upward with an initial velocity of 60 ft/sec. The ball leaves the player's foot at a height of 2 ft. a. Use the formlua s = - gt + vot + so to write a model representing the height of the ball s (in ft), t seconds after being kicked. Assume that the acceleration due to gravity is g = 32 ft/sec?. b. Determine the times at which the ball is 52 ft in the air.
- A sheet of water of uniform thickness (h = 0.03 m) flows from the device shown in the figure below. The water enters vertically through the inlet pipe and exits horizontally with a speed that varies linearly from 0 to 11 m/s along the 0.2-m length of the slit. Determine the y component of anchoring force necessary to hold this device stationary. FAY = 0 m/s- i 0.2m 0.03m N 11m/sThe weight of an individual walking is 824N. The hill they are walking on has a slope of 10 degrees. Assuming they are in a static equilibrium what is their normal force?please help me with this
- A raindrop falls with acceleration 9.8 m/sec² , where "v" is its velocity. What is the raindrop's velocity? 29.4(1 – e3) m/sec 29.4(e- 1) m/sec 29.4(1 – e5) m/sec 32.2 (e- 1) m/secThe mass center G of the 1305-kg rear-engine car is located as shown in the figure. Determine the normal force under each tire when the car is in equilibrium. State any assumptions. -1264 mm-863 mm Answers: Normal force under each of the front tires: N₁= N Normal force under each of the rear tires: N₁ = N i iPlease solve and show all steps / work clearly. Do not use a calculator. I will rate and like. Thank you.