Knowing that P =75 N and Q=195 N, determine graphically the magnitude and direction of their resultant using the triangle rule.
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Please use triangle rule. I am having trouble with that method
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- Cable ABC of length 5 m supports the force W at B. Determine (a) the angles 1 and 2; and (b) the force in each cable segment in terms of W.Find the magnitude of the resultant of the concurrent forces if θ = 13.42° , β = 26.42°, F = 135.16, Q = 194.56, and P = 101.76. Round off only on the final answer expressed in 3 decimalsA trolley that moves along a horizontal beam is acted upon by two forces as shown. Determine by trigonometry the magnitude and direction of the force P so that the resultant is a vertical force of 2500 N.
- Using a suitable figure show that the resultant of two co-plainer, concurrent forces 'P' & 'Q' having '0' angle between them, can be written in the form of, R = square root of P^2+ Q^2 + 2PQ cos theta. Hence derive an expression for the resultant force if the angle between the forces is 90°.The process of finding the resultant force for a system of forces acting on body is called Select one: A) Resultant of forces B) Resolution of forces C) Siding Forces D) Composition of forcesSuppose that w = 220 kN/m. Determine the magnitude of the resultant force.
- 3. A force of 50N is acting horizontally, and then another force of 60 N is acting upward to the right. If the resultant of these two forces is 90 N. Compute the horizontal component of this resultant. (A) None of the above (B) 71 N (C) 73 N (D) 70 N (E) 72 NUsing the Component method, determine the magnitude and direction of the resultant and the equilibrant of the given forces. Force A = 316lb / 20° E of S Force B = 518lb / 15° N of E Force C = 111lb / W 05° SSITUATION 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)
- Q3: Determine the (magnitude and direction) of the resultant (R) of two forces by the use of (a) cosine and sine laws? (b) The resultant form?Please answer this NEATLY, COMPLETELY, and CORRECTLY for an UPVOTE. *I already have the answers, I just need a neat and complete solution for this. [ANSWERS]-F= 2842.7406 lb-θR= 32.5094° N of E-FV= 2312.7721 lb, 49.4086° wrt y-axis Determine the value of the force F shown, if the resultant of the five forces acting on particle O has a magnitude of 2.8 kips. What is the direction R of the resultant force? If the resultant force is to be resolved into its components along the positive x-axis and a certain v-axis, the component along the x-axis is 605 lb. What is the magnitude of the other component? Also determine the angle the v-axis makes with the y-axis?SITUATION 4: Three cables are used to tether a balloon as shown in the figure. Knowing that the balloon exerts a 1000 N vertical force, and the wind exerts a 100 N force along positive x-direction both acting at point A. Which of the following most nearly gives the force at cable AB, in N? (Answer: 436.35) Which of the following most nearly gives the force at cable AD, in N? (Answer: 247.67) Which of the following most nearly gives the force at cable AC, in N? (Answer: 458.97)