For the following exercises, use a calculator to draw the legion enclosed by the curve. Find the area M and the centroid ( x ¯ , y ¯ ) for the given shapes. Use symmetry to help locate the center of mass whenever possible. 286. [T] Triangle: y = x , y = 2 − x , and y = 0
For the following exercises, use a calculator to draw the legion enclosed by the curve. Find the area M and the centroid ( x ¯ , y ¯ ) for the given shapes. Use symmetry to help locate the center of mass whenever possible. 286. [T] Triangle: y = x , y = 2 − x , and y = 0
For the following exercises, use a calculator to draw the legion enclosed by the curve. Find the area M and the centroid
(
x
¯
,
y
¯
)
for the given shapes. Use symmetry to help locate the center of mass whenever possible.
Q1. For the following shape,
a. Find the location of centroid.
b. Find the area moment of inertia about "y" axis.
50
-30-
40
15
Dimensions in mm
1 2
²²²(x + y - z) dz dy dx
9
92
27
8
27
2
A O
.BO
.C
.D O
I have part A which was the following:A composite area consisting of the rectangle, semicircle, and a triangular cutout is shown (Figure 1). Calculate the moment of inertia of the triangle with respect to the x axis. The dimensions are m = 70.0 mmmm and n = 35.0 mm
Ix=1.00x106 mm4
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Area Between The Curve Problem No 1 - Applications Of Definite Integration - Diploma Maths II; Author: Ekeeda;https://www.youtube.com/watch?v=q3ZU0GnGaxA;License: Standard YouTube License, CC-BY