When activated by the force P, the gripper on a robot’s arm is able to pick up objects by applying the gripping force F. Given that P = 120 N, calculate F in the position shown.
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When activated by the force P, the gripper on a robot’s arm is able to pick up objects by applying the gripping force F. Given that P = 120 N, calculate F in the position shown.
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- The uniform 240-lb bar AB is held in the position shown by the cable AC. Compute the tension in the cable.You may consider the biceps muscles tension to be completely canceled at the shoulder to which they are connected. You may also consider the shoulder to not contribute any additional torque on the system. If the Submitter (the one applying the armbar and trapping the arm) is applying a force of 400 Newtons at the opponent’s wrist and pushes the opposite direction at the hips with a force of 400 Newtons, what tension force must the opponent’s biceps exert to balance this torque and hold off the armbar? Keeping in mind that the biceps muscles are much smaller than the quadriceps muscles of the legs, should the opponent “tap out” (this is polite for YOU WIN, or cry Uncle, or I give up, or ouch)? We can assume here the flexing the opponent’s biceps here is the only option left for escape.When activated by the force P, the gripper on a robotic arm is able to pick up objects by applying the gripping force F as shown in the figure below. Given that P = 120 N, calculate the gripping force F in N for the position shown.
- A system of three pin connected bars takes the depicted equilibrium position under the given loading with the forces F1 and F2. What is the ratio of F1/F2?Equilibrium of Concurrent Force System. The piston of a reciprocating engine exerts a force of 175 kN on the crosshead when the crank is 45° (angle B) past TDC. If the stroke of the piston is 800 mm and the length of the connecting rod is 1.80 m, find the guide force and the force in the connecting rod. Hint: 1=½ stroke; Angle o may be solved using Sine Law in AACO. K= Compressive Force in the connecting Rod E= Piston Effort 70 120 F, = Guide Force Fig. P-1 Fig. P-2 a Tools: EF cos0=0; F sin .=0. R = Ev)* + (E#): ; R 771 =- : tane = sin A sin B sin C1. The PASCO human arm model is configured such that the cord representing the bicep is perfectly vertical and the forearm is at 90° (in the figure to the right, the cord is not quite vertical). A mass of 100 g is attached to the hand. Draw a free-body diagram on the figure to the right showing all forces which act on the forearm. The force of the bicep F on the arm The force of the humerus FH on the arm The weight of the forearm W The mass in the hand Wm 100 g Be careful to draw the force vectors with tails beginning at the point where the force is actually applied to the forearm. 2. Consider the free body diagram below. Determine the perpendicular component F̟ of the force F exerted by the biceps brachii on the forearm. Use the fact that cos 0 = H/B to write this component directly in terms of the humerus length H and the biceps length B. H 3. If the forearm is in equilibrium, then there is no angular acceleration and therefore the sum of the torques applied to the forearm must be…
- can you help me determine the location where the system reduces to force-onlyThe following forces are acting on the bracket below (a free-body diagram of the bracket is shown), that is hinged at point 1 (bottom left point). The bracket is in equilibrium (not accelerating). The force at point 2 must act horizontally, but can act to the right or left. I drew the force acting at point 2 (the middle point) pushing the bracket to the right. For the given forces, did I draw the force acting on the bracket in the correct direction? F2 F1x 10 Ibf Yes No Can't be determined based on the given informationDetermine the constraint equation that relates the bodies A and B.
- Find the magnitude of the torque about P if a 36-lb force isapplied as shown in #40.When activated by the force P,the gripper on a robotic arm is able to pick up objects by applying the gripping force F as shown in the figure below. Given that P = 120N,calculate the gripping force F in N for the position shown.Torque Problem The diagram below shows the lower leg being held in a stationary. The torque acting to turn the leg in a clockwise direction is being generated by the weight of the leg and the weight of a barbel attached to the ankle. Using the information provided calculate the magnitude of the quadriceps force. LOWER LEG IN ANGULAR EQUILIBRIUM 15° Quadriceps muscle force 0.05m 0.14 m 50° 0.30m 90 Newtons 120 Newtons Show your calculations step by step here. Includes diagrams and short comments to explain your approach to solving the problem.