2 8 in. Path of impending motion of B B 20 in. R = 17 in. 15 in. y
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5: The uniform bar of weight W is supported by a ball-and-socket joint
at A and rests against a vertical wall at B. If sliding impends when the bar is in the
position shown, determine the static coefficient of friction at B. [Hint: The direction
of impending sliding is tangent to the dashed circle (the potential path of motion of
point B).]
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- Given: Va and 0 Find: Horizontal distance it XB travels and vc- B VA = 10 m/s Plan: Apply the kinematic relations in x- and y- 30° directions.A) B) Find and report the magnitudes and directions for w3 and w4. Find and report the magnitude and direction of the absolute velocity of point P on link 3. input : w, = 1 rad/s ccw link 4 = 110 cm %3D C 4 В P A 2 D 3.must be handwritten
- 2.) If the Angular Momentum is define as the following function: M =, what is the Moment as a function of time? %DZorch, an archenemy of Superman, decides to slow Earth’s rotation to once per 29 h by exerting a force parallel to the equator, opposing the rotation. Superman is not immediately concerned, because he knows Zorch can only exert a force of 4.15 × 107 N. For the purposes calculations in this problem you should treat the Earth as a sphere of uniform density even though it isn't. a. How long, in seconds, must Zorch push with this force to accomplish his goal? (This period gives Superman time to devote to other villains.)Find the angular velocity of a yo-yo after it has fallen a distance of y, given its mass, distance between center and attachment (r), gravity, and assuming its moment of inertia is 0.5mr² and it doesn't change as the yo-yo falls. r m
- Don't Use Chat GPT Will UpvoteP.2) nism is constrained to move horizontally with a velocity VA = 10i ft/s. At the depicted instant, A is located directly beneath the fixed pivot point C, and links AB and BC are orthogonal and of equal length, rgIA = 'B/c = w and vg. The lower link of the given mecha- B = 1.2 ft. Find AEquation of Motion The triangle is made of 3 rods of a length 1-2.1ft and density is p = 4 lb/ft. ^ 1) Establish what you think is the best Coordinate system for this problem and explain why. 2) Find the location of the center of gravity (x bar and y bar). 3) Find the weight of the triangle. 4) Find the Mass Moment of Inertia at O of the triangle. 5) Draw the FBD and kinetic diagram of the triangle. 6) Find the accelerations of the triangle (angular and linear). 7) Find the Pin Reaction at O: . On and Ot • or Ox and Oy . • Magnitude O, and direction. In the box below, enter the angular acceleration & in rad/s with one decimal. Include the sign + if CCW or - sign if CW.
- Pls i need her solve with explanationP.2) The lower link of the given mecha- nism is constrained to move horizontally with a velocity VA = 10i ft/s. At the depicted instant, A is located directly beneath the fixed pivot point C, and links AB and BC are orthogonal and of equal length, "B/A = 1.2 ft. Find w and VB. B/C A OB jHow do you find the external forces' resultant and the application point?