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Q: 2
A: Free Body Diagram for above Diagram: T = 100*0.5 = 50N-m
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A: Note- As per our guidelines we are supposed to answer only one question. Kindly repost other questio...
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A: For solution refer below images.
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A: Given:P1=4 MPaP2=6 KPa
Q: in figure, the length of wire
A: GIVEN:
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- The 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).The 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.Using Ix and Iu from Table 9.2, determine the moment of inertia of the circular sector about the OB-axis. Check your result for =45 with that given for a quarter circle in Table 9.2.
- Using integration, compute the polar moment of inertia about point O for the circular sector. Check your result with Table 9.2.Determine the product of inertia with respect to the x- and y-axes for the quarter circular, thin ring (tR) by integration.The product of inertia of triangle (a) with respect to its centroid is Ixy=b2h2/72. What is Ixy for triangles (b)-(d)? (Hint: Investigate the signs in the expression Ixy=IxyAxy.)
- The moments of inertia about the x- and u-axes of the plane region areIx = 14 × 10^9 mm^4 and Iu = 38 × 10^9 mm^4, respectively. If h = 200 mm, determine the area of the region, and the radius of gyration about the centroidal axis parallel to the x-axis.A built-up section fabricated by attaching a C180x15 to a W250x18 shape with 15 mm rivets as shown. Determine the moment of inertia at the centroid of the built-up section. Answer: Centroidal moment of inertia along x-axis= 48.857x106mm4 Need the complete solution, thanks!Determine the moment of inertia (mm4) of the cross section shown with respect to the x-axis if a=17mm, b=76mm, c=25mm, and d=52mm. Round off only on the final answer expressed in whole number.
- Calculate and determine the Moments and Principal Axes of Inertia of the profile below, indicating the best position to use the profile.Where:h = 21 cmb = 28 cmCalculate and determine the Moments and Principal Axes of Inertia of the profiles below, indicating the best position to use the profile.h = 21 cmb = 28 cmPlease find the centroid and moment of Inertia around axis X and axis Y passing through of centroid of cross-sections below: I got 1910.67cm^4 for the y axis and 108cm^4 for the x axis but someone else disagrees