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- Given two displacement vectors A=(3.00i-4.00j-4.00K)m and B=(2.00i+3.00j-7.00K)m , find the displacements and their magnitudes for (a) C=A+B and (b) D=2AB .add the given vectors by the component method , by completing the table below. What is the angle of the resultant vector with respect to the xaxis?A = 6.0 N at 135°, B = 3.0 N at 225°, C = 8.7 N at 350Given the following forces: F, = 300 lb 30° N of E, F, = 200 1b S 40° E,F3 = 224 lb W 25° N, and F, = 390 lb 70° S of Ea. Illustrate the forces in a cartesian plane b. Determine the components of each of the forces
- Draw the following vector. Determine the resultant vector. (scale: 1cm = 10 mm) or make your own scale. 1. A= 40 mm, 400 N of E B= 30 mm, 500 W of N C= 35 mm, 450 E of N R =?Vector V is in standard position and makes an angle of 30 degree with the positive x-axis.Its magnitude is 18. Write V in component form ka, bl and in vector component formai + bj.Find the resultant force of the following set algebraically:F1=200 N to the rightF2=300 N @ 60o above the positive x-axis;F3=100 N @ 45 above the negative x-axisF4=200 N vertically downwardGraph resultant alsoMust include x-y comp chart
- The x-component of the vector 25 m [N25ᵒW]For the vectors shown, analytically determine the vector difference. R = A - BFill the table below. Write down your answer on your notebook and check your work afterwards. N B. 30° 60° 80° 70° 7 Given Vector Corresponding Theta (0) (angle w/respect to + x - axis) Direction A C C.
- Find the resultant vector using graphical methods and component method. A= 30 cm 30° N of E B= 20 cm 20° N of W C= 50 cm 40° S of W (parallelogram) ____________? (polygon) ___________? (component) ___________?If the magnitude of the resultant force is to be 500 N, directed along the positive y axis, determine the magnitude of force F and its direction θ . please make it very easy to understandThe sum of the x components (question #1), is 19.45 N. Question 2) what is the sum of the Y components of all 3 forces depicted? Question 3) what is the magnitude for the resultant force? Question 4) what is the angle (magnitude only) of the resultant force?