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- Determine the magnitude and direction of the resultant of the following forces: 50 N at 50 degrees,60 N at 120 degrees,40 N at 220 degrees,30 N at 330 degrees. All angles are measure from the positive x-axis. Use the component method. Select one: a. 75 N: 42º b. 50 N: 87º c. 54 N: 87º d. 101 N: 89ºthe x-component of the force isResolve the 20-kN force into components along the u- and v-axes.
- 4. The force system has a resultant of 250 kN up to the right at 30° from the x-axis. Compute the values of F and e to give this resultant. y 650 kN 2 20 3 320 kN1. Compute the resultant using cosine law (force polygon) 2. Compute the angle of the R measured clockwise from the x-axisThe components of a certain force are defined by Fx = 300 lb and Fy =− 200 lb. Determine the magnitude and inclination of of the resultant with the x- axis. Draw/plot your answer.
- Determine the x- and y-coordinates of a point through which the resultant of the parallel forces passes. y 20 lb 90 lb 85 lb 30 Ib 16" 7" 13" 13" 25 lb v Part 1 The problem asks us to replace these five forces with a single equivalent force. The new system is shown below. y Find the force R. Answer: R = IbFind the magnitude and direction of the resultant of a 60-pound force acting at an angle of 40 degrees clockwise from the positive y-axis.What is the corresponding magnitude of the resultant?
- 2. Determine the coordinate angle for F2 and then express each force acting on the bracket as Cartesian vector. (5pts) F = 450 N 30 60 F;= 600 N1. Compute the resultant using cosine law (force polygon) 2. Compute the angle of the R measured CW from the x axisGiven the forces, 60, 13, and 92, compute for the resultant force. B 20⁰ y-axis 15 x-axis