A couple force acts on the beam. The couple moment at point E is found to be 200KN.m. clockwise. 1. Find the magnitude of F1 & F2.
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- The force magnitudes are F1 = 81 N and F2 = 22 N. The dimension h = 0.6 m and the dimension l = 0.5 m. Calculate the moment couple to one decimal place.6 in 60° 20 in Statics Instructor A vertical force of P = 100 lb is required to remove the nail at C from the board. Determine the magnitude of the moment about B exerted by the 100 lb vertical force. Draw a free body diagram for the system. Then, use what you know about moments to solve for Mp What is the magnitude of the moment at point B due to P if P = 100 lb and 9 = 10"? Round to the nearest whole number. Enter a response then click Submit below lb inwith the following modifications: Replace the vertical 6kN at point B with a horizontal force 6kN acting to the right at the same point.
- The rectangular framework is subjected to the following non-concurrent system of forces: a 30lb- force below the origin, a 20 lb-force,3ft above the origin and making an angle of30°N of E, a 100lb-force with a horizontal distance of 3ft and a vertical distance of 4ftfrom the origin and making an angle of 45°NW , a 60lb -force with the same distance like the previous force but along the positive x-axis, and a 100lb- force 4ft tothe right of the origin and making an angle of 60° S of W . Determine the magnitude and direction of the resultant, as well as its moment arm relative to the origin.Add the following forces to find the resultant force. V1 = 150 g @ 470 V2 = 550 @ 324° V3 = 350 g @ 215° V4 = 250 @ 172° V5 = 450 g @ 285°Find the moment of the force F on the pivot O. F-0.4 lb|
- Q1: Determine the moment of 50N force shown in Fig. about point O by at least two ways? -100 mm- 45 200 mm 100 mm- Q2: determine the value of F Which effect with other two forces as shown in Fig. if the Resultant of these forces are 80 N and acting along u- axis. Note that: Cos20 + Sin2° = 1 50 1b 90 Ib A **** **** *Q2:- For the block shown in the figure below, the 40 lb. force is passing through points EF, the 50 Ib. force is passing throuch points JB, and the force 20 lb. is passing through point C. 1. Find the resultant force and its directions. 2. Determie the resultant moment of three forces in Figure about the x-axis, the y-axis, and the z-axis. 20 ib 50 lb 40 lb 3 dimensions in inchFind the internal force systems acting on sections 1 and 2.
- The force in the rope if F= 500 N. The dimensions of the beam are: AC = 2 m, AD= 3 m, DB= 2.5 m, h= 1 m and r= 0.3 m. F Ac PENDIDIK C AD DB Which side is the easiest to use to solve for the internal forces at C. O Left side, less forces. O Right side, less forces. Either sides have the same number of forces. B#Q1: Determine the moment of 50N force shown in Fig. about point O by at least two ways? 50N 100 mm 200 mm 45 100 mm * Q2: determine the value of F Which effect with other two forces as shown in Fig. if the Resultant these forces are 80 N and acting along u- axis. Note that: Cos2e + Sin20 = 1 S0 Ib 45° 90 lb2. Given the cantilever framework below, find the shortest distance from point B to line AC and to line AD. 8' A 3. In the system shown below, determine the length of the common perpendicular between lines AE and BD. Solve in two ways. W = 2200 Ib 4. If the magnitude of a force P acting from A to D is P = 20V73 Ib, determine the component of P that is perpendicular to the plane defined by points E, A, and C. 10' B