2. Find the value of P and F so that the four forces shown in the figure produce an upward resultant of 300 lb acting at 4 ft from the left end of the bar. 100 b P F 200 lb. 3'
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A: given; lets take;force(F1)=5000KNforce (F2)=800KNforce(F3)=400KN
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Q: Assignment: 1. Find the values of P and F so that the four forces shown in the figure will produce…
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Q: Q7. Determine the resultant force and angle of the forces as shown in figure by (components method…
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Q: QI: The three forces shown in Figure are required to cause a 250 N as a resultant acting…
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Q: Q1) For the force system shown in figure, 1) Find the angle (4) so that the resultant of these…
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Q: Q5- Find w2 and angle a in a way to have a resultant force of zero at point o. w2 110 N 40 W1=250N
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Q: the given figure, the x component of the force P is 140 lb to the left. Determine P and its
A: Given data x- component of force (Px)=140 lb
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- Figure (a) shows the cross section of a column that uses a structural shape known as W867 (wide-flange beam, nominally 8 in. deep, weighing 67 lb/ft). The American Institute of Steel Construction Structural Steel Handbook lists the following cross-sectional properties: A=19.7in.2,Ix=272in.4, and Iy=88.6in.4. Determine the dimensions of the rectangle in Fig. (b) that has the same Ix and Iy as a W867 section.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.The cables AB and AC are attached to the frame OBCD and pre-tensioned to 35 kN. Determine the resultant R of the two cable forces acting at the anchor point A.