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Consider the pendulum shown in the figure. Calculate: A- B- C- h y 0.5h t r A' B' C' r1 = 0.5 in

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Consider the pendulum shown in the figure. Calculate: A- B- C- h" y "" 0.5h" t" r" A' B' C' r1 = 0.5 in r2 = 1.2 in h = 4 in The moment of inertia about the y axis. in 4 3 tries remaining. 1 point(s) possible The moment of inertia about the x axis. 3 tries remaining. 1 point(s) possible 3 tries remaining. 1 point(s) possible in t The moment of inertia about the AA' axis. 3 tries remaining. 1 point(s) possible in 4 t = 0.3 in ENTER in 4 ENTER The moment of inertia about the BB' axis. ENTER ENTER The moment of inertia about the CC' axis. 3 tries remaining. 1 point(s) possible in 4 3 tries remaining. 1 point(s) possible The location of the x axis such that the moment of inertia around the x axis will be minimized. ENTER in ENTER Moment of Inertia IAA IBB Icc = = = = = = = = [()] + [h + Ay] + [H2) + Ay] 12 TI(0.5)4 0.049 +18.3 + 220.715 + [0.2(6) + (0.2 6) (+0.5)*] + [(1.1)* + n(1.1)(1.1 +6+ +6+0.5) 12 T(0.5)4 [(1)4 [()* + Ay] + [h] + ["()* + Ay] 4 9.67 +3.6 + 65.05 T(0.5) * + (0.5) ( + 0.5)] + [0.(6)] + [(1.1)* + (1.1) ( +1.1)] 12 239.064 in.4 = [T()* + Ay] + [th + Ay] + [2] 4 12 45.414 + 23.772 + 1.15 78.32 in.4 + (0.5)(0.5 + 6 +1.1) + +1.1)] + [0.2(6) + (0.2 6) ( +1.1)] + [H(1.)* ] 12 70.336 in.4

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