1. Three forces are acting on the eyebolt as shown. All forces intersect at a common point. Determine the resultant force (magnitude and direction) using graphical method. =3 KN 35° 300 ,F3=5KN
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- NT2C-RT13: ADDITION AND SUBTRACTION OF THREE VECTORS II-DIRECTION OF RESULTANT Three vectors, labeled P, C, and R, are shown below. The magnitude of each vector is given in arbitrary In each space provided above, construct a drawing of the resultant of the combination of the vectors P, l, and R, as indicated and then rank the magnitude of the angle that the resultant vector makes with the vector Please explain your reasoningFirst, write your individual forces here (if you are using trig stuff, the system knows radians): FQ Fp Now, find the sum of the forces in a new vector here: i- The magnitude of the resultant is lbs. The direction of the resultant is degrees.! Required information A rope connecting points A and B supports the force Fshown in the figure. Write expressions using Cartesian vector representation for the following. Take L = 8 ft and F= 12 Ib. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. y B 30° ÜBA : the unit vector from B to A. ÜBA
- The sketch shows the top view of a door that has width, L. The small blue circle is hinge. The door is free to rotate about the hinge. All forces have same value, F. The angled forces and F5 are at the middle of the L. (a) Draw the line of action of force for each force on the given diagram. (b) Draw the lever force of each forces shown above. There should be a drawing for each force including the force, its line of action, axis of rotation and finally the lever arm. (c) Write down the torque due to each force using sign convention used in class. Label a force first and then write the torque equation.C h kN y bkN a kN In the accompanying sketch, triangle OAB lies in the ry-plane. The component of F represented by line segment AC is parallel to the z-axis. If a = 4.8, b = 7.8, h = 3.9 and B= 27°, express the force F in cartesian vector form. %3D Note that A, B and C do NOT denote points measured with respect to distances; they relate to forces. F = k) kN j+$ Magnitude R= Direction 8 = Three forces act on point : A = 60 N at 135°, B = and C in this diagram to the correct magnitudes and directions. When this has been done correctly the dotted vector will become solid. 50 N at -45° and, C= 75 N at 60° 2. Pick up vectors A, B and C by their tails, and move them into a tip to tail arrangement. When this has been correctly done the resultant R will appear. measured Estimate the magnitude and direction of the resultant Based on this diagram, estimate the magnitude R and direction of the resultant. from the force R using the tip-to-tail method. 1. Move the tips of forces A, B, Submit part Submit part
- In the figure F1F2 are force vectors with magnitude shown. (A) Express each force in cartesian vector form (B) Determine the magnitude and coordinate direction angles of the resultant vector FR. (C) Draw the resultant vector. Make sure you label the axis, vector and angles. F = 125 N 60 45 60 F- 400 N F1 = 400 N , F2 = 125 N Need all three subparts detailed solution I want to learn how u got the answerProblem 3: Note: Make sure to draw all diagrams. All Units must be included. Determine the magnitude and coordinate direction angles of the resultant force and sketch this vector on the coordinate system. 3-250 N Problem 2 60 60 45 F-350 NAfter the web meeting, submit this document on Canvas Undel ne Meeting Assignment. This is an individual submission. TAE %3D Follow the steps below to express the force F, as a vector using the format: F, = F 1. Write the position vector: TAE = 4 ft 4 ft F = 300 lb 6 ft 6 ft 2. Find the magnitude of the position vector: 6 ft TAE = F = 400 lb 3. Find the unit vector by dividing the position vector by its own magnitude: NAE = 4. Write the force vector: F1 =FinAE =