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- The figure shows the chain drive of a bicycle. How far will the bicycle move if the pedals are rotated through 180°? Assume the radius of the bicycle wheel is 12.7 inches. The bicycle will travel approximately (Round to the nearest tenth.) in. C -1.95 in 4.21 inA flag pole has a staked line to keep it from tipping over. The height of the flagpole is 17 ft. The cable can hold a maximum tension of 1500 lb. Determine the moment created at the support Q by the tension in cable. Enter your answer in Cartesian components with units of kip-ft (1 kip = 1000 lb). Round to 3 significant digits. top T a y Values for dimensions on the figure are given in the table below. R. Variable Value a 13 ft b 18 ft M i + а. A = (| k) kip-ftA bent tube is attached to a wall with brackets as shown. . A force of F = 970 lb is applied to the end of the tube with direction indicated by the dimensions in the figure. a.) Determine the force vector F in Cartesian components. b.) Resolve the force vector F into vector components parallel and perpendicular to the position vector I DA- Express each of these vectors in Cartesian components. NOTE: The parallel component of the force is the same as the force along that direction. The perpendicular component of the force can be found from the relationship: Fparallel + Fperpendicular = Ftotal 2013 Michael Swanbom BY NC SA d A FK values for dimensions on the figure are given in the table below. Note the figure may not be to scale. Be sure to align your cartesian unit vectors with the coordinate axes shown in the figure. d 78 in h 57 in g 60 in Variable value 13 in 36 in 45 in F|DA = i. k) lb and b. FL DA =
- What would be the resultant moment of the three forces acting at the beam shown in the figure about point A. 200 lb 3 ft 3 ft 3 ft 50 lb 30 100 lb Select one: Oa. -269.7 lb.ft Ob. 345 lb.ft C. 1469.7 lb.ft O d. 509.7 lb.ftPS2-5 Three forces are acting on the problem. List all of the simplifications that can be used in the problem. What is the simplest problem? F₂ 45° RA vector polygon for summing F1 = 11 kN and F2 = 5 kN forces is shown. End R Start 55% a. Determine the magnitude R of the resultant by using the law of cosines. (Express your answer using three significant figures.) R = kN b. Determine its angle of action 0 by using the law of sines. (Express your answer using four significant figures.)
- The structure is supported with cables as shown in Figure 3. All dimensions are in meters. a) If T2= 619 N, solve for F and the remaining cables that can hold the allowable force F acting upward at point A to maintain its equilibrium. b) Solve for the magnitude and direction angles of the resultant force for the three cables if T1= 889 N, T2= 1417 N, T3= 1500 N c) Determine the moment of the resultant force about the axis BC.In the figure below, a 100 N weight flower pot is suspended by three ropes. The tension in rope AB is three times the tension in ropes AC and AD. Find the dimension “d” on the figure which corresponds to the z-coordinate of point B. Also find the tensions in ropes AB, AC, and AD.5. A person pulls on a rope with a force of 100 lbs as shown below. What is the moment about point A as a result of this pulling force? Answer: 3034 ft-lb CW 200 le 10 ft 18 ft Gin A * 40 ft SA

