The rectangular components of a force are
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- Find the internal force systems acting on sections 1 and 2.arrow_forwardDetermine the magnitude and direction of the resultant of the concurrent forces described below. Draw the necessary figure. F1= 300 lb, up to the right, 45 degree with respect to positive x-axis F2= 400 lb, up to the left, 60 degree with respect to x-axis F3= 200 lb, down to the left, 30 degree with respect to x-axisarrow_forwardFor the distributed loading shown, find the equivalent resultant force and specify its location measured from point A, along AB, given: W1 = 260 lb/ft, W2 = 100 lb/ft, L1 = 9 ft, L2= 6 ft The magnitude of resultant force, FR is: (enter a positive number) FR = lbs The distance from point A in the positive X-direction is: d = ftarrow_forward
- I have Confusion Between 3ft and -6ft Can anybody Clarify it ? Pleasearrow_forwardForces: F1 = 40N, east %3D F2 = 60N, 30 degrees south of east F3 = 50N, 45 degrees south of north Q1. Find the resultant and direction of the given forces above.arrow_forwardSolve this question using geometry and drawing Determine the forces P and Q when the 125 N force is the resultant force of these forces 125 N Parrow_forward
- Determine the magnitude of the resultant force F(R). Determine the angle between the resultant force and the x axis. And finally specify where the resultant’s line of action intersects member AB, measured from point A. (y = ….. ft above A)arrow_forwardA frame is subjected to the forces as shown. Calculate the resultant and locate with respect to point A.arrow_forwardCompute the values of force T and its direction θ of the force system shown if the force system has a resultant of 500 N pointing leftward along the x-axis.arrow_forward
- Please Answer the problem in the image.arrow_forwardI need the answer quicklyarrow_forward2/32 The rectangular plate is made up of 1-ft squares as shown. A 30-lb force is applied at point A in the di- rection shown. Calculate the moment Mg of the force about point B by at least two different methods. 30 lb 1ft 1 ftarrow_forward
- International Edition---engineering Mechanics: St...Mechanical EngineeringISBN:9781305501607Author:Andrew Pytel And Jaan KiusalaasPublisher:CENGAGE L