3. Use the method of sections to determine the forces in the members BD, CD, CE in the struc- ture of Figure 3. A B D 4 kN 6 kN all dimensions in meters. Figure 3
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![3. Use the method of sections to determine the forces in the members BD, CD, CE in the struc-
ture of Figure 3.
A
B
D
4 kN
6 kN
all dimensions in meters.
Figure 3](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2f765f99-7a5a-45ec-9c60-2b1771022dd3%2F6cb61343-590e-42d9-b0a4-0c08b5431ce5%2Fterug67_processed.png&w=3840&q=75)
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- Q. 5 Find the resultant and its location w. r. t. point A for the force system given in the figure below- 50N 3 m 20 N 4 m 30NAsap2. 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
- solve it correctly please. i will rateWhat would be the resultant moment of the three forces acting at the beam shown in the figure about point A. 200 lb 3 ft 3 ft 3 ft 50 lb 30 100 lb Select one: Oa. -269.7 lb.ft Ob. 345 lb.ft C. 1469.7 lb.ft O d. 509.7 lb.ftPS2-5 Three forces are acting on the problem. List all of the simplifications that can be used in the problem. What is the simplest problem? F₂ 45° R
- A vector polygon for summing F1 = 11 kN and F2 = 5 kN forces is shown. End R Start 55% a. Determine the magnitude R of the resultant by using the law of cosines. (Express your answer using three significant figures.) R = kN b. Determine its angle of action 0 by using the law of sines. (Express your answer using four significant figures.)The structure is supported with cables as shown in Figure 3. All dimensions are in meters. a) If T2= 619 N, solve for F and the remaining cables that can hold the allowable force F acting upward at point A to maintain its equilibrium. b) Solve for the magnitude and direction angles of the resultant force for the three cables if T1= 889 N, T2= 1417 N, T3= 1500 N c) Determine the moment of the resultant force about the axis BC.Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part Ropes AB and BC are two of the ropes used to support a tent. The two ropes are attached to a stake at B and the tension in rope AB is 625 N. 3m A 3 m 1.5m 0.38 m 0.08 in 0.16 m z Detail of the stake at B Determine the smallest angle between rope AB and the stake. (You must provide an answer before moving to the next part.) The smallest angle is
- The bucket of the excavator at a construction site is subjected to F = 1530 lb and F, = 790 lb digging forces at its tip. Determine the magnitude and direction of their resultant. Use the vector algebra and vector polygon methods. Compare the answers with the two methods to verify the accuracy of your work. (Express your answers using four and three significant figures, respectively. Report the direction as an angle between 0 and 180°, clockwise or counterclockwise.) R = lb v from i SelectThe eyebolt in figure is subjected to three (3) forces, F1, F2, and F3. Determine the direction (degrees) of the resultant force acting on the eyebolt measured clockwise from the positive x-axis. Given: F1 = 600 N; F2 = 500 N; F3 = 450 N; Angle phi = 30°; Theta = 60°. Answer: C. 44.6QI: Determine the resultant of the force system shown in Figure below and locate it with respect to point A. 180 100 12' 880 5' 80 90 in
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