Determine the magnitude of the force P required to maintain the equilibrium of the two bar linkages. The mass and the length of each link are m and 1, respectively. Hint: Use the principle of virtual work [20 marks] GN mg X y 0 G₂ mg P
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- Question 2 Find the value of The reaction force at the support A. (X,XX,XXX represents the last digits number pf your IC) 4m 400 KN 10 m B 60 KN 4m 10 m. 157KN 4m 17 m DF₁ 2-- Y B y I F₂ 65° 40° F3 Given: F₁ = 2 kN, a = 111.8, 8 = 42", y = 56.15* F₂ = 4 kN F3 1.2991-0.75k kN Choose the best answer: [Select] - X -- A system of three forces acts on particle P. What additional force is required for the particle to be in static equilibrium?Based on the given cage system, where the bars can withstand a maximum tensile force of 5 kN and a maximum compressive force of 8 kN, we need to find the maximum force P that the system can support. A E x 1m x (Ctrl)- 2 m B G F P 2 m D Im 2 m 2 m
- Determine the normal tension of the cylinder piston rod (diameter 32mm). The clamping force of the pliers is 6000N. The dimensions of the structure are: x1 = 10 mm x2 = 120 mm y1 = 110 mmy2 = 798 mm Use the units [N, mm], ie the answer comes in MPa !!! Please enter a numeric value only !!ASAPThe rod supports a weight of 340 Ib and is pinned at its end A It is also subjected to a couple moment of 100 lb-ft. The spring has an unstretched length of 2 ft and a stiffness of 50 lb/ft (Egure.) Figure 100 lb-ft 2ft 3h <1 of 1 k-50 lb/ht H ▼ Part A d Determine all possible angles for equilibrium, 0 << 90° Express your answer in degrees to three significant figures. If there is more than one answer, separate them by a comma View Available Hint(s) 0 Submit ΑΣΦvecThe figure shows a mechanical model of the Russel fracture traction device and the leg. The leg is held in balance in the position indicated by the two weights attached to the two cables. The total weight of the leg and the cast is W=200 N. The horizontal distance between points A and B where the cables are attached to the leg is L=100 cm and the vertical distance is d=10 cm . Point C is the center of gravity of the cast and leg at three quarters of the L measured from point A ( 3L/4= 75 cm) . The angle that cable 2 makes with the horizontal is measured as β=40 ° . Accordingly, in order for the leg to remain in balance in the position shown; a) Find the tensile force T 1 in cable 1 . (Write your result in N ) b) Find the tensile force T 2 in cable 2 . (Write your result in N ) c) Find the angle α of cable 1 with the horizontalIn the arrangement in equilibrium, the weight of the object is equal and 100 N with a 2m long smooth rod. Approximately how many Newtons is the horizontal force exerted on the rod by the plane at point A? (Take Cos16=0.96 Sin16=0.28 Cos53=0.6 Sin53=0.8) 16 153 Dengede olan şekildeki düzenekte 2m uzunluktaki düzgün çubuk ile cismin ağırlığı eşit ve 100 N'dur. A noktasında düziem torafından cubuga uygulanan yatay kuvvet yaklaşık koaç Newtondur? (Cosl6-0,96 Sin16=D0,28 Cos533D0,6 Sin53=D0,8 atınız) 152 164 144 136The figure shows the Russel fracture traction device and a mechanical model of the leg. The leg is held in balance in the position indicated by the two weights attached to the two cables. The combined weight of the leg and the cast is W=210 N. The horizontal distance between points A and B where the cables are attached to the leg is L=100 cm and the vertical distance is d=6 cm. Point C is the center of gravity of the cast and leg at three quarters of the L measured from point A (3L/4= 75 cm). The angle that cable 2 makes with the horizontal is measured as β=33°. Accordingly, in order for the leg to remain in balance in the shown position; a) Find the tensile force T1 in cable 1. (Write your result in N) b) Find the tensile force T2 in cable 2. (Write your result in N) c) Find the angle α of cable 1 with the horizontal.3 m y 2 m A 4 m E F AB= F(AB)=tension force in AB F. = F(AD)=tension force in AD AD F = F(AC)=tension force in AC AC Weight of the flowerpot is 40 Newton. W=weight of the flowerpot What is the tension force magnitude in A C rope? Determine the force developed in each cable for equilibrium.The figure shows the Russel fracture traction device and a mechanical model of the leg. The leg is held in balance in the position indicated by the two weights attached to the two cables. The combined weight of the leg and cast is W=180 N. The distance between the points A and B where the cables are attached to the leg is given as L=100 cm and the angle of the leg with the horizontal is given as γ=8°. Point C is the center of gravity of the cast and leg at three quarters of the L measured from point A (3L/4= 75 cm). The angle that cable 2 makes with the horizontal is measured as β=50°. Accordingly, in order for the leg to remain in balance in the shown position; a) Find the tensile force T1 in cable 1. (Write your result in N)b) Find the tensile force T2 in cable 2. (Write your result in N)c) Find the angle α of cable 1 with the horizontal.Two men exert forces F and P on the ropes. If P = 48 Ib, what is the required force F to maintain equilibrium? Supply the answer in pounds. 6 ft 12 ftSEE MORE QUESTIONS