The bent rod has a mass density per unit length of 0.2 kg/m. It is pinned at point A and has a clockwise angular velocity w = 0.8 rad/s at the position shown. Determine (a) the location of the center...


The bent rod has a mass density per unit length of 0.2 kg/m. It is pinned at point A and has a clockwise<br>angular velocity w = 0.8 rad/s at the position shown. Determine (a) the location of the center of mass G of the<br>rod, (b) the mass moment of inertia of the rod about an axis perpendicular to the page and passing through point<br>A, i.e., I4, (c) the mass moment of inertia of the rod about an axis perpendicular to the page and passing through<br>its mass center G, i.e., Ig, and at the position shown determine (d) the angular acceleration of the rod, a, (e) the<br>acceleration at mass center G, āç, and (f) the horizontal and vertical components of the reaction at A.<br>5 m<br>[4] (a) xg = ;YG =<br>[3] (b) IA<br>(3] (c) lg<br>[8] (d) a =<br>[3] (e) ãg =<br>[4] (f) Az =<br>3 m<br>w = 0.8 rad/s<br>A<br>Lee = lyeys =ml²<br>;Ay =<br>

Extracted text: The bent rod has a mass density per unit length of 0.2 kg/m. It is pinned at point A and has a clockwise angular velocity w = 0.8 rad/s at the position shown. Determine (a) the location of the center of mass G of the rod, (b) the mass moment of inertia of the rod about an axis perpendicular to the page and passing through point A, i.e., I4, (c) the mass moment of inertia of the rod about an axis perpendicular to the page and passing through its mass center G, i.e., Ig, and at the position shown determine (d) the angular acceleration of the rod, a, (e) the acceleration at mass center G, āç, and (f) the horizontal and vertical components of the reaction at A. 5 m [4] (a) xg = ;YG = [3] (b) IA (3] (c) lg [8] (d) a = [3] (e) ãg = [4] (f) Az = 3 m w = 0.8 rad/s A Lee = lyeys =ml² ;Ay =

Jun 11, 2022
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