International Edition---engineering Mechanics: Statics  4th Edition
International Edition---engineering Mechanics: Statics 4th Edition
4th Edition
ISBN: 9781305856240
Author: Pytel
Publisher: Cengage
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Chapter 9, Problem 9.87RP
To determine

(a)

The other principal centroidal moment of inertia I1.

Expert Solution
Check Mark

Answer to Problem 9.87RP

  I¯1=6.459×106mm4

Explanation of Solution

Given information:

The inertial properties of L150×100×10mm :

  x¯=23.8 mm, y¯=48.8 mm, A=2400 mm2I¯x=5.58×106 mm4I¯y=2.03×106 mm4

The angle a locating the axis of minimum centroidal moment of inertia is 24.0°.

And the corresponding radius of gyration is k¯2=21.9 mm.

Calculations:

  From the relation:(I=Ak2)I¯2=Ak¯22=(2400)(21.9)2=1.151×106mm4using the relation: ( I ¯ 1+ I ¯ 2= I ¯ x+ I ¯ y)I¯1=I¯x+I¯yI¯2I¯1=(5.58+2.031.151)×106I¯1=6.459×106mm4

Conclusion:

The other principal centroidal moment of inertia is I¯1=6.459×106mm4.

To determine

(b)

  I¯xy.

Expert Solution
Check Mark

Answer to Problem 9.87RP

  I¯xy=1.972×106mm4

Explanation of Solution

Given information:

The inertial properties of L150×100×10mm :

  x¯=23.8 mm, y¯=48.8 mm, A=2400 mm2I¯x=5.58×106 mm4I¯y=2.03×106 mm4

The angle a locating the axis of minimum centroidal moment of inertia is 24.0°.

And the corresponding radius of gyration is k¯2=21.9 mm.

Calculations:

  From equation 9.23:I¯1=12( I ¯ x+ I ¯ y)+RR=I¯1 I ¯ x+ I ¯ y2=(6.459 5.58+2.032)×106=2.654×106mm4Now, using equation 9.21:sin2θ2=I¯xy/RI¯xy=Rsin2θ2Butθ2=θ1+90o=24.0o+90o=114.0o2θ2=228.0oI¯xy=(2.654× 106)sin228.0oI¯xy=1.972×106mm4

International Edition---engineering Mechanics: Statics  4th Edition, Chapter 9, Problem 9.87RP

Conclusion:

For the given structural shape, I¯xy=1.972×106mm4.

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Chapter 9 Solutions

International Edition---engineering Mechanics: Statics 4th Edition

Ch. 9 - Compute the moment of inertia about the x-axis for...Ch. 9 - By integration, find the moment of inertia about...Ch. 9 - Figure (a) shows the cross section of a column...Ch. 9 - Compute the dimensions of the rectangle shown in...Ch. 9 - Compute Ix and Iy for the W867 shape dimensioned...Ch. 9 - Figure (a) shows the cross-sectional dimensions...Ch. 9 - A W867 section is joined to a C1020 section to...Ch. 9 - Compute Ix and Iy for the region shown.Ch. 9 - Prob. 9.19PCh. 9 - Calculate Ix for the shaded region, knowing that...Ch. 9 - Compute Iy for the region shown, given that...Ch. 9 - Prob. 9.22PCh. 9 - Prob. 9.23PCh. 9 - Determine Ix for the triangular region shown.Ch. 9 - Determine the distance h for which the moment of...Ch. 9 - A circular region of radius R/2 is cut out from...Ch. 9 - Prob. 9.27PCh. 9 - Determine the ratio a/b for which Ix=Iy for the...Ch. 9 - As a round log passes through a sawmill, two slabs...Ch. 9 - Prob. 9.30PCh. 9 - By numerical integration, compute the moments of...Ch. 9 - Use numerical integration to compute the moments...Ch. 9 - The plane region A is submerged in a fluid of...Ch. 9 - Use integration to verify the formula given in...Ch. 9 - For the quarter circle in Table 9.2, verify the...Ch. 9 - Determine the product of inertia with respect to...Ch. 9 - The product of inertia of triangle (a) with...Ch. 9 - Prob. 9.38PCh. 9 - For the region shown, Ixy=320103mm4 and Iuv=0....Ch. 9 - Prob. 9.40PCh. 9 - Calculate the product of inertia with respect to...Ch. 9 - Prob. 9.42PCh. 9 - Prob. 9.43PCh. 9 - The figure shows the cross section of a standard...Ch. 9 - Prob. 9.45PCh. 9 - Prob. 9.46PCh. 9 - Prob. 9.47PCh. 9 - Use numerical integration to compute the product...Ch. 9 - Determine the dimension b of the square cutout so...Ch. 9 - For the rectangular region, determine (a) the...Ch. 9 - Prob. 9.51PCh. 9 - Prob. 9.52PCh. 9 - Prob. 9.53PCh. 9 - Prob. 9.54PCh. 9 - Prob. 9.55PCh. 9 - The u- and v-axes are the principal axes of the...Ch. 9 - The x- and y-axes are the principal axes for the...Ch. 9 - Prob. 9.58PCh. 9 - The inertial properties of the region shown with...Ch. 9 - Determine Iu for the inverted T-section shown....Ch. 9 - Using Ix and Iu from Table 9.2, determine the...Ch. 9 - Show that every axis passing through the centroid...Ch. 9 - Prob. 9.63PCh. 9 - The L806010-mm structural angle has the following...Ch. 9 - Compute the principal centroidal moments of...Ch. 9 - Prob. 9.66PCh. 9 - Determine the principal axes and the principal...Ch. 9 - Compute the principal centroidal moments of...Ch. 9 - Find the moments and the product of inertia of the...Ch. 9 - Determine the moments and product of inertia of...Ch. 9 - Find the principal moments of inertia and the...Ch. 9 - Determine the moments and product of inertia of...Ch. 9 - Prob. 9.73PCh. 9 - Prob. 9.74PCh. 9 - The u- and v-axes are the principal axes of the...Ch. 9 - The x- and y-axes are the principal axes for the...Ch. 9 - Prob. 9.77PCh. 9 - The L806010-mm structural angle has the following...Ch. 9 - Prob. 9.79RPCh. 9 - Prob. 9.80RPCh. 9 - By integration, show that the product of inertia...Ch. 9 - Compute Ix and Iy for the shaded region.Ch. 9 - Using integration, evaluate the moments of inertia...Ch. 9 - The inertial properties at point 0 for a plane...Ch. 9 - Compute Ix and Iy for the shaded region.Ch. 9 - The flanged bolt coupling is fabricated by...Ch. 9 - Prob. 9.87RPCh. 9 - Compute Ix,Iy, and Ixy for the shaded region.Ch. 9 - Determine Ix and Ixy for the shaded region shown.Ch. 9 - Calculate Ix,Iy, and Ixy for the shaded region...Ch. 9 - For the shaded region shown, determine (a) Ix and...Ch. 9 - Use integration to find Ix,Iy, and Ixy for the...Ch. 9 - Determine the principal moments of inertia and the...Ch. 9 - The properties of the unequal angle section are...
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