Determine the magnitude and location of the equivalent resultant force of the sand loading. (ANS: 675 lb @ x=4 ft) 100 lb/ft 50 lb A B 9 ft-
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- Find the elevation h (km) where the weight of an object is one-tenth its weight on the surface of the earth.Find the internal force systems acting on sections 1 and 2.y 300 300 R Practice Problem 2.4.3 The force R is the resultant of the forces P1, P2, and P3 acting on the rectangular plate. Find P1 and P2 if R = 40 kN and P3 = 20 kN. 300 P3 Dimensions in mm 009 00t
- DevsiThe distribution of soil loading on the bottom of a building slab is shown. Replace this loading by an equivalent resultant force. Specify its location in ft, measured from point O. Take x1=9 ft and x2= 8 ft. (In ft.) 50 Ib /ft T100 lb/ft 300 lb/ft X2 X1F1=17 and F2=26 forces in the system shown a-) Calculate the force p, which will keep the system in balance. b-) C Calculate the resultant force at the C point.
- 300 300 R Practice Problem 2.4.3 The force Ris the resultant of the forces P1, P2, and P3 acting on the rectangular P; plate. Find P1 and P2 if R = 40 kN and P3 = 20 kN. 30 Dimensions in mm ----- 00 009Q.2 Find the force F on the section X-Y and where this force acts (i.e. find the center of pressure) with respect to point X. The width of the section is 1 m (dimension perpendicular to the page). 6m 4m Im Section X-Y X=9810 N/m F 307The figure below shows the cross-section of a tank full of water under pressure. The pressure in the tank is 19.62 kN m² and its length is 2 m in the paper. An empty cylinder lies along the length of the tank on one of its corner as shown. Find the resultant force acting on the curved surface ABC. 19.62 kNm R-1m 1.5m Tank fal of water
- Calculate the forces acting on the picture. With the step, Im needed in 30-45 minutes thank uM=684 %3D N. m P=109N W150N 300mm -250mm- PN 9ON 400mm- a) Determine of the resultanl. the magnitude force of the coplanar "force , b) Determine the magnitude of the cauple creded in Nm if the resultant force at a) is place at A pl.The pedal chain unit of a bicycle is shown below. The left foot of the rider exerts a force F = 35.2 N, while the use of toe-clips allows the right foot to exert a nearly upward 80 N force. Treat the problem as two-dimensional. Determine the resultant force at o in N. 30 15 160 mm 80 N 160 mm 5° Leave a me