40 120 mm 40 m 40 mun 40mm 40mm Determine the distance x to the centroid of the beam's cross-sectional area, then find the moment of inertia about y' axis.
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![40 m
120 mm
40 mm
40 min
40 mm
40 mm
Determine the distance x to the centroid of the beam's
cross-sectional area, then find the moment of inertia
about y' axis.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa1818e65-3bdf-4f61-a34f-684da93db1d6%2Fecf3f37c-5b78-4c5c-a10d-d85cc7db8ee3%2F9wgc3ds_processed.jpeg&w=3840&q=75)
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- Jack and Jill are walking with a 5.00-kg plank of wood on their heads. On top of the plank is a 7.80-kg pail of water. The dimensions and distances are shown below. How much weight is Jack feeling pushing down on the top of his head? -3.00 m 0.75 mA helicopter rotor blade can be considered a long thin rod. If each of the three rotor helicopter blades is 3.75 m long and has a mass of 135 kg, A) Calculate the moment of inertia of the three rotor blades about the axis of rotation (b) How much torque must the motor apply to bring the blades from rest up to a speed of 5.0 rev/s in 8.0 s?A 0.19 kg horizontal beam has length L=0.8 m. It is supported by a fulcrum at d=0.50 m from the left end. A 0.25 kg mass ml is suspended at xl-0.25 m from the bar's left end. Another mass mr is suspended at xr=0.80 m from the bar's left end. The system is in equilibrium. How heavy in kg is the mass mr on the right side? Hint: the bar's gravity has a torque if it is not supported by the fulcrum at exactly half way.
- A uniform rod has a mass of 2.53 kg and has a length of 1.17 m. It is hinged to a wall by a pivot at one end and is held in a horizontal position by a light vertical string attached to the other end as shown. wall string pivot rod (a) Calculate the magnitude of the tension in the string. (b) The string is now cut. Ignore the mass of the string. Calculate the magnitude of the angular acceleration (in rad/s2) of the rod about the pivot point just after the string is cut. rad/s2In raising the pole from the position shown, the tension Tin the cable must supply a moment about O of 90 KN Determine the tension T by two way a- Resolving b- Perpendicular distance 20 m 060 8 m-A wooden disk is set on its edge on a table top. A string is wrapped around its outer circumference and a hand is pulling on the string horizontally from the top, so that the disk rolls without slipping on the table. The center of the disk is moving with a velocity of 12.0 cm/s. What is the velocity of the hand? V hand Vcenter
- Axis where x = 1.66. (a) A (b) N-m 43.0⁰ (c) As shown in the top-view diagram, a 46.6-N force is applied to the outer edge of a door of width 1.66 m. Find the torque when the line of action of the force passes through the axis of the door hinges. 4Jackey is standing terrified and trembling at the end of a diving board, which is high above the water. If Jackey has a mass of 114 kg and is standing 2.9 m from the board's pivot point, what torque (in N-m) is Jackey exerting on the board?Ededius Musonda On page styles 54 11 Assignment A uniform rod of mass m = 5.3kg and length l = 1.3m rotates about a fixed frictionless pivot located at one of its ends. The rod is released from rest at an angle 0 = 35° beneath the horizontal. What is the angular acceleration of the rod immediately after it is released? pivot 1/2 rod m g Figure 19: Torque. 55
- 3965ly J- (7) A hinge attached to a wall connects a 3.0 m long pole while the other end is held up by a rope as shown. If the tension in the rope is 250 N, and the force makes a 37° angle with the pole, what torque is created by the rope? What is the mass of the pole? NOse-adodIn the figure, the center of gravity (CG) of the pole held by the pole vaulter is 1.95 m from the left hand, and the hands are 0.725 m apart. The mass of the pole is 5.0 kg. Calculate the magnitude of the force, in newtons, exerted by his left hand.A wheel with moment of inertia 3.00 kg x m^2 has a net torque of 3.50 Nxm applied to it. What angular acceleration does it experience? A) 1.17rad/s^2 B) 0.857 rad/s^2 C) 3.50 rad/s^2 D 3.00 rad/s^2