• The system in the figure is at equilibrium and m 13kg. What is the tension in cord 1(T¡) assuming the angle 0 = 53° (in N)? T T m
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- A uniform rod AB of weight 500 N and length 4.0 m is supported at two points P and Q as shown below. AP = QB = 0.80 m. A man of weight 800 N is walking from Q to B. Find the maximum %3D %3D distance x from Q the man can walk before the rod topples about Q. P Q A 1 -| × |- O 0.4 m O 0.8 m O 0.75 m O 0.6 mThree blocks where suspended in the air using massless strings and passing through massless and fixed pulleys as shown. The middle mass mg = 5.00 [kg]. When the system achieved equilibrium, it was found out that a = 60.0° and y = 30.0°. MA What is the magnitude of mĄ? What is the magnitude of mc? α тв What would be the magnitude of mд and mc when a = y = 45.0°? mcLocate the mass center of the homogeneous solid body whose volume is determined by revolving the shaded area through 360° about the z-axis. r | mm Answer: Z = 330 mm r= -=kz³ 250 mm
- Please help meData has been gathered from a lifting system used to trans port engine parts. The sys tem consis ts of a drum and cable. The following data was obtained when the drum lowers the load (assume cons tant acceleration). Drum diameter = 1m Mass of load - 9kg Initial velocity =0 m/s Time to des cend- 64 secs Distance travelled 0.7m You have been asked to use this information to determine: Cable a) The final linear velocity of the load b) The linear acceleration of the load Load c) The final angular velocity of the drum d) The angular acceleration of the drum e) The tension force in the cable f) The torque applied to the drum Fioure 1 solve (d),(e),(f) parts and please mention kinematic equations which need to solve this questionFind the smallest and largest value of P to maintain equilibrium when the coefficients of friction between the block and the rail are us and W= 88N Hs=0.32 Hk=0.26 e =54° F= 390N e =54°