The object below is in equilibrium and has a weight w = 80 N. Find T,, T2, T3 and T4. 55 TA T3 S00257 T2 T
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- 3. The object below is in equilibrium and has a weight w = 80 N. Find T,, T2, T, and T4- 11 55 TA T3 25 T2 TTake F = 310 N and d = 1.0 m Determine the force in cable AC and AB needed to hold the 24-kg ball D in equilibrium.Two forces F1 150 N and F2 50 N to hold the weight of 200 N. Check and determine if the body is in equilibrium or otherwise. If it's not in equilibrium then in which direction how much force F3 shall be applied to make the frame in equilibrium. While F3 cannot make angle greater than 45° with x-axis. F3 y B 40° 200 N
- Determine the magnitude of the components of the force and the lever arm d that would put the structure below in equilibrium. F1 = 20 N, F2 = 10 N F3 = 5 N, a = 2.0 m, b = 3.0 m, c = 1.0 m. Fh =Fv = d =Two forces F, 150 N and F2 50 N to hold the weight of 200 N. Check and determine if the body is in equilibrium or otherwise. If it's not in equilibrium then in which direction how much force F3 shall be applied to make the frame in equilibrium. While F3 cannot make angle greater than 45° with x-axis. f33D43 45° y В 40° 200 NQ.2. Find F1 and F2 for the given body which is in equilibrium -50N F₂ w 45 60 55 BON
- 1m 3.5m 2.75m 3m →Y 2m Dx m Dy m D (Dx,Dy,0) 50N The bucket at (x.y,z) = (2.2, 2.9,0) is supported by 3 slender bars as shown and is in equilibrium. You can assume the three bars behave as two-force members. Find the magnitude of the force in the bar DB. NEIn 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 136Determine the magnitude of force F3 (in kN) necessary to hold the force F= {-9i-8j-4k} kN in equilibrium. F1 60 135 60° 60 -y 30 F (4 m, 4 m, -2 m)