Point-masses m, are located on the x-axis as shown. Find the moment M of the system about the origin and the center of mass x. m₁ = 4 m₂ = 12 0 5 10 15 20 25 30 35 40 X
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- The moment of the force F=960-lb about the point O in Cartesian vector form is. 1 ft 4 ft 2ft Select one: O a. Mo = 1600 – 3200A O b. Mo = -200j + 400k Oc. Mo =-200; – 400k O d. Mo= 200; + 400k 1:15 PMThe moment of the force Fa960-lb about the point O in Cartesian vector form is, F 1 ft 4 ft 2 ft 4 ft Select one: O a. Mo = 1600j - 32007 O b. Mo = -200, + 400kPoint-masses m; are located on the x-axis as shown. Find the moment M of the system about the origin and the center of mass x. M = X = 10 15 17 -6 -4 -2 2 4 10 12 WebAssign. NumberLine - co
- The moment of the force F=180-lb about the point O in Cartesian vector form is. 1 ft 4 ft 2 ft 4 ft. Select one: O a. Mo = 300j – 600OK O b. Mo = -200j + 400k O . Mo = -200j – 400k O d. Mo = 2003 + 400kThe moment of the force F=960-lb about the point O in Cartesian vector form is. F 1 ft 4 ft 2 ft A 4 ft. Select one: O a. Mo = 1600j – 3200k O b. Mo = -200j + 400k %3D O c. Mo = -200j - 400k %3D O d. Mo = 200j + 400k %3D4) Use the parallel axis theorem to determine the second moment of mass about the z-axis through the origin for a thin rectangular plate with base b, and height h. Ул ANS. Z 3 [b² + h²] (kg-m^2) h z' b
- The figure below shows the positions of the Centers of mass of the three disks on a rotating shaft. m. =6 kg, M2=4 kg, m3=5 kg, r-=100 mm, r2=200 ver3 = 300. B to dynamically balance the shaft it is desirable to place balancing masses of 3 kg each in their planes. Balancing find the positions of the center of mass (004) of mass A in the unit of cm and degrees. The D value in the figure is 200 mm. mlg my m1 37 53 200 mm 150mm 200 mm ma Please choose one nDetermine the resultant and its moment arm relative to origin. * 100 lb 20 lb 30 45° 60 1b 90 3' 60 30 lb 100 lbA force P in the xy-plane acts on the triangular plate. The moments of P about points O, A, and B are MO =80 N · m counterclockwise, MA =200 N.m clockwise, and MB =0 Determine the Px.
- The moment of the force F=360-lb about the point O in Cartesian vector form is. 1 ft 4 ft 2 ft 4 ft Select one: a. Mo = 600j- 1200k O b. Mo=-200j+ 400%Determine and locate the resultant of the system shown in fig (3). If you know that the values of Ax=240 N. Ay=2000 N. F=160 N, N=2400N, W=400 N and M=2N.mDetermine the resultant of the following concurrent forces: 8 N, 60o N of E and 40N, 45o N of W using: a. law of sine and cosine, andb. parallelogram method For b use the scale: 2N =1 cm.