Determine the second moment of area for the shaded region shown in Fig. with respect to The y-axis. y2 = x 16 in.
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- The intensity of the line loading acting on a quarter circle is w=w0(2/). Use intergration to determine the resultant of the loading and its line of action.It can be show that a plane area may he represented by a vector A=A, where A is the area and represents a unit vector normal to the piano: of the area. Show that the area vector of the parallelogram formed by the vectors a and b shown in the figure is A=ab.Using the method of composite areas, find the dimension h that maximizes the centroid coordinate y of the plane region shown.
- The flanged bolt coupling is fabricated by drilling 10 evenly spaced 0.5-in. diameter bolt holes in a steel plate. The radii of the plate and bolt circle are 5 in. and 4 in., respectively. Determine the percent reduction in the polar moment of the area about point O due to the drilling operation.Compute the dot product A - B for each of the following cases. Identify the units of each product. A=12j+8kftB=4i2j+3kftA=5i+3jmB=7i12kNA=3j+2j-kmB=6i+2j8kmFor the shaded region shown, determine (a) Ix and Iy; and (b) Ix and Iy using the parallel axis theorem and the results of part (a).
- Determine the second moments of area about the axes XX for the sections shown in Fig shown in the picture. Thanks..Please help me with this. Thank you! :) Determine the second moment of area about the X-X centroidal axes and Y-Y centroidal axes for the C section shown.Please help me with this question. Thank you! :) Determine the second moment of area about the X-X centroidal axes and Y-Y centroidal axes for the I section shown.