or the given force on the following figure, write in vector form using the units vectors i ndj. FN = 88 Z Al FN x 10² Newton -x
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- Now the cable forces need to be written in component form. This is done by multiplying the magnitude of the cables by unit vectors directed along the cables: (Use form pic to finish sentence). Pt . Given the tower height of h = 36m and the anchor distance of r = 24 m, find the unit vector directed along cable ADetermine the magnitude and direction of the resultant force using parallelogram law of forces for the figure given below.Expiremental Method: Force Table F1 - 150N, 30° N of E F2 - 100N, 60° E of S 1) Find the Equilibrant Magnitude and Equilibrant Direction 2) Find Resultant Force Vector Magnitude and %Error 3) Find Resultant Force Vector Direction and %Error
- Considering the figure below, the volume loaded at point A is a force of F pounds in wire AB.constitute. This force creates the force F from point A to point B in Cartesian vector form.Express.(F=309daN)The forces in the figure are P=80 N, Q=110 N. Find the direction and intensity of the sum of moments of these two forces relative to point O.A force F1= 2i – 6k {kN) is applied at the position 3j + 5k {m}, meanwhile another force F2 = - i + 4j + 7k {kN) is applied at the position 8k {m}, on a structure. Evaluate the resultant moment by vector calculation
- Two vectors are as shown in the figure. Force F = 35 kN and force P = 85 kN.A: Moment arm of the force In the figure, the dashed line extending from the force vector F is called the line of action of F. The force’s moment arm is the perpendicular distance rm from the pivot point P to the line of action. What is rm, the length of the moment arm of the force F about point P? Express your answer in terms of r and θ. Find the moment M about P due to F. Your answer should correctly express both the magnitude and the sign of M. Express your answer in terms of either rm and F or r, θ, and F. B: As shown (Figure 2), resolve the force vector, F, into radial (parallel to r) and tangential (perpendicular to r) components. Find the magnitude of the radial and tangential components, Fr and Ft. Assume that θis between zero and 90 degrees. Express your answers in terms of F and θ Is the following statement true or false? The moment about point…We have 2 individuals pulling a marshmellow with ropes. The resultant force is directed along the positive x-axis. Person A is pulling at 60 degree angle. 1. Find what angle ? is if individual B is pulling twice as hard as individual A. 2. Draw the vector addition relationship between the force vectors ??, ??. Also, find FA and FB resultant force, shown using ?. Use either the parallelogram law or the triangle rule.
- The magnitude of the force F, in the figure shown is 107 lb. Determine the scalar component of the moment of this force with respect to the line OC, please find the values detailed here The z component of the coordinates at point A The x component of the unit vector of the OC axis The y component of the position vector that goes from O to A is The x component of the force has the following value The moment of the force with with respect to the OC axis isA. 1 A force F passing through points A and B shown in the figure has a counter-clockwise moment of 600J about 0. Compute the moment of force F about point 0. Don't use Varignon's Theorem in the application.with the following modifications: Replace the vertical 6kN at point B with a horizontal force 6kN acting to the right at the same point.