PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
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Determine the moments of inertia of the shaded area about the x- and y-axes. Also determine the polar moment of inertia about point
O.
-0.80h
Answers:
lx = i
ly= i
lo = i
0.67h
-0.80h
h4
h4
h4
Determine the moments of inertia of the shaded area about the x- and y-axes. Also determine the polar moment of inertia about point
O.
-0.56h
Answers:
1x = i
ly= i
lo= i
0.60h
-0.56h
h
h4
h4
he
Determine the moment of inertia about the x-axis of the shaded area of the figure shown:
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- Determine the product of inertia with respect to the x- and y-axes for the quarter circular, thin ring (tR) by integration.arrow_forwardThe moments of inertia of the plane region about the x- and u-axes are Ix=0.4ft4 and Iu=0.6ft4, respectively. Determine y (the y-coordinate of the centroid C) and Ix (the moment of inertia about the centroidal x-axis).arrow_forwardThe moment of inertia of the plane region about the x-axis and the centroidal x-axis are Ix=0.35ft4 and Ix=0.08in.4, respectively. Determine the coordinate y of the centroid and the moment of inertia of the region about the u-axis.arrow_forward
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- Determine the moment of inertia and the radius of gyration of the shaded area with respect to the x-axis. Given: r = 79 mm. 125 mm 125 mm - 250 mm The moment of inertia is The radius of gyration is *106 mm4. mm.arrow_forwardDetermine the moment of inertia of the shaded area about the x-axis in two different ways. 3.0a fa Answer: Ix = i a4arrow_forwardDetermine the moments of inertia of the shaded area with respect to the x and y axes. use a horizontal differential element of thickness for both calculations.arrow_forward
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