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- The force R is the resultant of P and 0. Determine Q and the angle .A force of 800 kN is applied at point B and is directed towards point F. The Force at D = 0 and does not apply. Determine the component of the force that acts in the direction of line BE. Write this component as a Cartesian vector. The answer is (299i-598j+199k) kN, please show in depth how to solve.Determine the magnitude and coordinate direction angles of the resultant force acting at A. FB= 900 N A Fc= 600 N C 6 m 3 m 45° B 45 m 6 m
- Four parallel forces act on the plate as shown. For the force system shown, find the equivalent resultant force and specify its x and y location from the origin, given: FA = 170 lbs, FB = 240 lbs, FC = 210 lbs, FD = 140 lbs, LX = 16 ft, LY = 14 ft, BY = 5 ft, DX = 6 ft The magnitude of resultant force, FR is: (positive number) FR = lbs The distance from the Origin in the positive X-direction is: X = ft The distance from the Origin in the positive Y-direction is: Y = ftUsing graphical approach, find the actual magnitude and direction of the resultant vector of D, E, F, G, H, I, J vectors. If 1 cm in the paper represents= 10ft/s, what is the magnitude of the resultant vector in ft/s? D= 3.3 cm E= 5.1 cm F= 3.6 cm G= 4.3cm H= 1.4 cm I= 2.35 cm J= 2.5 cmDetermine the Resultant Force, its magnitude and direction of the given co-planar, Space tensile force cables as shown in the diagram below. AB = 100lbs; AC = 80 Ibs & AD= 90 Ibs. Please answer in COMPLETE solution. *3 decimal places all answer.
- Exercise: - Calculate the magnitude and the direction of the resultant of the two forces: A = (11.7 N, 20ᴼ) B = (14.1 N, 45ᴼ), using the following methods: 1. Mathematical Method 2. Graphical Method (Squares paper sheet can be used) 3. Components method (Squares paper sheet can be used)The resultant of the two forces F =766 N and P = 1458 N is a vertical force directed upward. If the angle between F and P is 60°, as shown in the figure, find the measure of angle β in degreesSITUATION 6: From the given set of forces shown in the Fig. ENG-228, determine the following: X-component of the resultant force of the system (N) (Answer: 47.26) and Y-component of the resultant of the force system (N). (Answer: 60.97) The angle (degrees) that the resultant force makes with the horizontal measured CCW. (Answer: 52.22) The distance (m) from the origin where the resultant intersects the x-axis. (Answer: 6.06)
- The screw eye in figure is subject to two forces F1 and F2 .determine the magnitude and direction of the resultant force F2 = 150 N F1 = 100 Nwhat is the magnitude of the resultant force of the two forces which are perpendicular to each other? the two forces are 20units and 30units respectively. final answers in 3dec placesN m A 150 N 300 mm 250 mm P N 400 mm 90 N Question Determine the magnitude of the resultant force (in N) of the coplanar force system shown in the figure below where the horizontal force P = 248 N and the couple M = 568 Nm. Determine the angle (in degrees) that the resultant makes with the positive x-axis, which is in the same direction as the horizontal force P. If the resultant force calculated in Q8 is placed at A, determine the magnitude of the couple created in Nm. Determine the distance from A (in m) at which this resultant should be placed so that the system is replaced entirely by a single force. If the resultant force calculated in Q8 is placed at O, determine the magnitude of the couple created in Nm. Determine the distance from O (in m) at which this resultant should be placed so that the system is replaced entirely by a single force.