..) Determine reactions in A and tension in cable as shown in figure?
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- A 150-lb rigid bar AB. with friction less rollers al each end. is held in the position shown in the figure by a continuous cable CAD. The cable is pinned at C and D and runs over a pulley at A. (a) Find reactions at supports A and B. (b) Find the force in the cable.A crane boom of mass 450 leg with its center of mass at C is stabilized by two cables AQ and BQ (Ae= 304 mm2 for each cable) as shown in the figure. A load P = 20 KN is supported at point D. The crane boom lies in the y-z plane. (a) Find the tension forces in each cable: TAQand TBQ(kN}. Neglect the mass of the cables, but include the mass of the boom in addition to load P. (b) Find the average stress (s) in each cable.Solve the preceding problem for W = 1.0 lb. h = 12 in.,and k =0.511,/in.
- 2.4-11 Three steel cables jointly support a load of 12 kips (see figure). The diameter of the middle cable is 3/4 in. and the diameter of each outer cable is 1/2 in. The tensions in the cables are adjusted so that each cable carries one-third of the load (ie., 4 kip). Later, the load is increased by 9 kips to a total load of 21 kips. (a) What percent of the total load is now carried by the middle cable? (b) What are the stresses crvand 0 in the middle and outer cables, respectively? Note: See Table 2-1 in Section 2.2 for properties of cables.Shown in the following figure is a foldable table loaded by weight “W”. The contact points, B, D, and E are frictionless. 1. Find the safest load W if the allowable tensile force in the cable is 1800 N. a. 600Nb. 180 Nc. 482Nd. 630N2. If W = 1500 N, find the reaction at D. a. 500 Nb. 1000 Nc. 800 Nd. 1200 N3. If W = 1500 N, find the reaction at B.a. 500 Nb. 1000 Nc. 800 Nd. 1200 NFind the support reactions and joint force of the construction,shown on the figure ,if P=12 kN q=9 kN/m , M= 12 kN , and L=2m
- Physics for Engineering A uniform bar 3.00 m long is held by ropes at the ends making angle 60.0 and 30.0, respectively, with the horizontal. A weight of 200 N is hung 0.500 m from the left end where the 60.0 rope is attached. Find the tension in the ropes (T1 & T2) and the weight (W) of the bar. (Hint: Formulate three equations for the three unknowns, 2 equations for the 1st condition and 1 equation for the 2nd condition.)Q/ Find the reaction forces at A and B, (A pin connection and B roller connection)? 120N/mDetermine the tensions T1 and T2 in the strings required to maintain equilibrium for the suspended object weighs W = 48.7N shown in the figure. Take, α = 29.4° & β = 47.5°. a) The value of θ1 (Degree) = b) The value of θ2 (Degree) = c) The value of θ3 (Degree) = d) The value of Tension, T1 (N) = e) The value of Tension, T2 (N) =
- Statics-Two Force Members 1. Determine the force P required to maintain equilibrium of the pulley system, and the reactions at the ceiling. 2. Assume W=1.25kN 3. Show and clearly label all Free Body Diagram to determine solution.For bar shown with fixed ends A and D formulate equations to calculate reactions at the ends mentioned. Draw a diagram showing the variation of the normal forces in the bar. and calculate the reactions for the following values: L1 = 200 mm, A1 = 840 mm2 L2 = 250 mm, A2 = 1260 mm2 PB = 25.5 Kn and PC = 17.0 KN.In the figure, AB is a rigid rod and CB is a cable. If M is 900kg, what is the pin reaction at A on the rod AB? What is the tension in the cable?