
3.111 3.6 m IN 3.111 Two cables exert forces of 90 kN each on a truss...
The three supporting cables exert the forces shown on the sign. a) b) Determine the angle θ between BA and BC. Determine the magnitude of the projected component of the 3 kN force acting along the axis BC of the pipe. 2 m 4 m F-3KNC
2. Three cables are attached at point B on the boom of a large construction crane as shown in the figure below. The cable forces acting at point B are FBc 50 kN FBD-100 kN and FBA-75 kN. Determine: a) The resultant, R, of the three (3) forces acting at B, b) The moment of R about the point A, c) The moment of R about the line AD d) The perpendicular distance from A to the line of action...
2. Three forces are applied with cables to the anchor block shown in Pig. P2-98. Determine (a) The magnitude and direction x, y the resultant R of the (angles e,, and 9) of 0.6 m F 272 N 2500 N F3 650 N three forces. 2.7 m 3.6 m (b) The nagnitude of the rectangular component of force F, along the line 09 m 1.2 m 42m 3.6m of action of force F2 (c) The angle a between Fig. P2-98...
Chapter 2 Problems Analytical solutions using force components. Check graphically 2.9 Three members of a truss frame into a steel gusset te as shown. All forces are concurrent at point O Determine the resultant of the three forces that must be carried by the gusset plate 2.10 Two cables with known tensions as shown are attached to a pole at point A. Determine the resultant force to which the pole is subjected. Scale: 1 mm-10 N Note: The pole and...
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Two cables AB and AC secure the post. The cables are pre-stressed so that the forces exerted by the cables on the post are TAB = 1200 N and TAC 1800 N. Determine the magnitude and direction of the resultant force R TAB+Tac acting at point A AC 12 m AB 4 m 4 m m.
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18 kN/m 12 kN/m 6 kN/m Fn = 300 N 12.AN/TITTTTTT6kN/m 0.5 m Fc = 225N 3 m .-3 m . 6 m Fig. for Q.2 0.5 m Fig. for Q.1 1. Two forces are acting on Point A along the direction as shown. Convert each force into Cartesian vector form. Show the various steps of your calculation. Then determine the magnitude and coordinate direction angles of the resultant. 15 Points 2. Replace...
Determine the forces in each member of the truss shown in figure
11. Above.
120 KN 120 KN 4 m 120 KN H E F 60 KN 60 KN 4 m 40 KN 40 KN A B D 8 m +2 m|-3 m-3m|3m|3m|2m1 8 m Figure 11: A truss. GROUP 2B QUESTION 12: You have just graduated from CBU as a civil engineer. A water utility company employs you. During maintenance, in turning the water pump steadily, you exert a...
[2.0] Two cables forces T and P- are used to pull a boat. The resultant of T and P is 300 N and acts in the direction of the keel line (aa). Find the magnitudes of P and T and the angle 0 at which the minimum. (Hint: Use the table to calculate \P\ at ? 30° 40 50° 60°.70°, 80°, 90°) 30° a ,
Note that the angles are the direction cosine from the notes corresponding to α, β, and y. 1. Four forces are applied at a point in a body as shown Determine the F4xN 30 magnitude and direction (angles ee,, and e) of the resultant R of the four orces. i40° 50 40 Three forces are applied with cables to the anchor block shown in Fig. P2-98. Determine (a) The magnitude and direction (angles θ*, ey, and θ-' of the resultant...
Given: A 90-load is suspended from the hook and supported by two cables and a spring. Find: The force in the cables and the stretch of the spring at equilibrium. k = 500 lb/ft 00000001 Plan: 90 lb 1. Draw a FBD for point A. 2. Apply the E-of-E to solve for the forces in ropes AB and AC.