In the figure shown, Given: VA=1.2 m/s = 30° Solve for: a) velocity of B (m/s) b) angular velocity of AB (rad/s) - 60° 500 mm
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- a. Set up the equations of motion that is required to solve the problem. b. Determine the magnitude of W in the figure so that the 200 lb. body will have an acceleration up the plane of 4.025 fps^2A water jet is deflected 30° by a stationary vane as shown. The incoming jet has a speed of 40 m/s and a diameter of 2 cm. Neglect the influence of gravity. Find the horizontal and vertical components of the force exerted by the jet on the vane. The density of water is1000 kg/m3.In the figure below, if the motor turns gear A with an angular velocity of 43 rad/s. The angular velocity of gear D is
- The datum is shown in the image, and the figure is drawn to scale. Use the given distances to find any other necessary distances. If a piezometer is inserted at Point D, which is shown in the image, calculate how much the water will rise in it.1.The location of a certain particle that is only limited to move along a linear direction is given by S = 2t^3 – 24t + 6, such that the unit of s is in meters from an acceptable origin and t is measured in seconds. Solve for the following: -The time needed for that certain particle to attain a velocity of 72 m/s from rest when t = 0. -The acceleration of the particle when it reaches V = 30 m/s -Net displacement in meters from t = 1 second to t = 4 seconds10. As shown in the figure, a projectile is fired at an angle of 81° from the inclined plane. It lands at a distance 87 meters measured along the inclined plane. Determine its initial velocity (m/s). Round off to two decimal places.
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