Find the center of gravity for the system shown in figure 1. 2 Calculate the moment of inertia of each body about its center of mass (about z axis). 3. Calculate the moment of inertia of the system about point A (about z axis) which is shown in figure 1. Note 1: The material used in this system is AISI 1023 carbon steel, and all dimensions is in inch. Note 2: symbol X in the dimension shown in figure 1 is the average =2+5+1/3=2.6 I think it's complicated; try your best expert.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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1. Find the center of gravity for the system shown in figure 1. 2 Calculate the moment of inertia of each body about its center of mass (about z axis). 3. Calculate the moment of inertia of the system about point A (about z axis) which is shown in figure 1. Note 1: The material used in this system is AISI 1023 carbon steel, and all dimensions is in inch. Note 2: symbol X in the dimension shown in figure 1 is the average =2+5+1/3=2.6

I think it's complicated; try your best expert.

2X
0.6X
0.2X
00.2X
0.4X
0.2X
20,04X
00.65X
y
00.8X
Figure 1
D0.15X
00.17X
0,08X
Transcribed Image Text:2X 0.6X 0.2X 00.2X 0.4X 0.2X 20,04X 00.65X y 00.8X Figure 1 D0.15X 00.17X 0,08X
00.15
00.17X
PLEASE NOTE THAT THERE IS SYMMETRY IN THE
CALF ABOUT ITS CENTER, MEANING THAT ITS
CENTER OF MASS IS THIS POINT, AND EQUATIONS
NEED NOT BE USED TO PROVE THAT
0.2X
00.65X
00.8X
00.04X
Transcribed Image Text:00.15 00.17X PLEASE NOTE THAT THERE IS SYMMETRY IN THE CALF ABOUT ITS CENTER, MEANING THAT ITS CENTER OF MASS IS THIS POINT, AND EQUATIONS NEED NOT BE USED TO PROVE THAT 0.2X 00.65X 00.8X 00.04X
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