Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- 5. Use the method of components to determine the resultant force acting on the system below. State the magnitude, direction, and sense of the resultant force. F₂ = 450 N 45° y F₁ = 300 N 5 4 3 F3 = 600 Narrow_forwardDIRECTION: Solve and analyze the following problems in neat and orderly manner АСTIVITY 1 - СOMPONENTS OF A FORCE 1. Determine the component of the force (X and Y) , the magnitude and the inclination with the x-axis of the following in the given figure. Y Y 3. 4. X 30° 45° 400 lb 200 lbarrow_forward1. Two forces are applied to a structure. F1 has a magnitude of 950 N and its direction makes angles of 45° with respect to the x-axis, 120° with respect to the y-axis, and 30° with respect to the z-axis. F2 is given as (10i -50j + 50k) N. Find the resultant vector R=F +F, in terms of its rectangular components, find the magnitude of R, and determine the unit vector in the direction of R (AR ).arrow_forward
- Identify the Degree of Hyperestaticity and define the Main System, indicating the State of Displacement and the State of Virtual Load.arrow_forwardTwo pull cables are used to support the telephone pole, as shows the figure below. Express the FA and FB forces as Cartesian vectors and show the angle between the two forces.arrow_forwardproblem 9arrow_forward
- Please solve with clear step by step solutionsarrow_forwardProblem 4.39 Consider the system shown in (Figure 1). Figure 1 of 1 45° 7 ft F= 80 lb 3 ft B 1.5 ft < 5 ft 401 1.5 ft D x1 Part A Determine the moment of the force F about the door hinge at B. Express the result as a Cartesian vector. Express your answer in terms of the unit vectors i, j, and k. Use the 'vec' button to denote vectors in your answers. Express your answer using three significant figures. Π ΑΣΦ ↓↑ vec MB = Submit My Answers Give Up Incorrect; Try Again; 3 attempts remaining ? N.m Provide Feedback Continuearrow_forwardThe beam shown in the figure is supported at roller A and pinned at B and has a uniformly distributed loading w= 53 kN/m over 1.5 m from the left-hand end and moment loading M = 53 kNm at 1.5 m from end B. Determine the shear force at a section from the left-hand end of the beam X = 3.0 m. Input your answer as a value only in kN to one decimal place and without +/- sign. w kN/m M kNm B X -1.5 m- A- -1.5 m -1.5 m-arrow_forward
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