1. Replace the loading by an equivalent resultant force and specify where its line of action intersects member BC, measured from C.
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Q: CH.4 Q.2: Replace the loading system by an equivalent resultant force and specify wher the…
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Q: Replace the loading system by an equivalent resultant force and specify where the resultant's line…
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Q: Q2/ The flanged steel cantilever beam with riveted bracket is subjected to the couple and two forces…
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Q: Determine the x and y components of each of the forces shown.
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A: Given: Resultant of the forces passes through Point A. Then determine the unknown tension T2.
Q: Q4 Delermine the resultaut of the forces shown, and locate it with respect to point (A) 130 KN 2m 3…
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Q: b) Replace the loading on the frame by a single resultant force. Specify where its line of action…
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Q: Q1): The cable stays AB and AD help support pole AC. Knowing that the tension is 120 Ib in AB and 40…
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Q: Replace the system of forces acting on the frame by a resultant R at B and a couple acting…
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Q: Replace the force and couple system acting on the frame with an equivalent resultant force and…
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Q: Replace the loading on the frame by a single resultant force. Specify where it’s line of action…
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Q: Suppose that F = 570 kN Specify where resultant force acts on the beam measured from AA.
A: Given data: The force F is, F=570 kN. Draw the schematic diagram of the beam.
Q: Specify where the resultant's line of action intersects the beam, measured from O
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Q: 1. Replace the loading by an equivalent resultant force and specify where its line of action…
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Q: Q2. Replace the force and couple system acting on the frame by an equivalent resultant force and…
A: The net vertical force on the system is The net horizontal force on the system is
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Q: Q.1/The top view of a revolving entrance door is shown. Two persons simultaneously approach the door…
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Q: 2. Determine the resultant force and specify where it acts on the beam measured from A. Also…
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Q: 3. Replace the loading by a single resultant force, and specify the location of the force measured…
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Q: Replace the loading on the frame by a single resultant force. Specify where its line of action…
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Q: Replace the two forces with a single force at point A and
A: To fin d:- Force and moment about A
Q: B) For the simply supported beam shown, replace the distributed load by an equivalent resultant…
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Q: CH.4 Q.2: Replace the loading system by an equivalent resultant force and specify where the…
A: Note: As per policy, we can solve only first three parts.
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- The beam is supporting a distributed load of w=660 lb/ft. Determine the magnitudes of the resultant internal loadings acting on section b–b through the centroid C on the beam. Show all work and any FBDs that apply.The blade of the hacksaw is subjected to a pretension force of F = 100 N. Determine the resultant internal loadings acting on section b–b that passes through point D.Suppose P = 2500 lb. From the frame below, determine the magnitude and direction of (1) Ax and Ay (2) Dx and Dy (3) the vertical and horizontal component of the force at C as it acts on member BCD
- The 3200-1b weight is supported by two cables. Knowing that the resultant of the cable tensions T1 and T2 is a vertical 3200-lb force, determine T1 and T2.The frame shown is subjected to a horizontal force F = {300j} N. Determine the magnitudes of the components of this force parallel and perpendicular to member AB.The blade of the hacksaw is subjected to a pretension force of F = 100 N. Determine the resultant internal loadings acting on section a–a that passes through point D.
- The control lever is subjected to a clockwise couple of 81 N·m exerted by its shaft at A and is designed to operate with a 230-N pull as shown. If the resultant of the couple and the force passes through A, determine the proper dimension x of the lever.Assume F = 230 N, a = 165 mm, θ= 22°.A 5-m long simply supported timber beam carries two concentrated loads as shown. If L = 16 KN and M = 54 kN, determine the magnitude of the vertical force acting at support D.Determine P and θ so that the three forces shown are equivalent to the single force R = (85i + 20j)kN.
- Determine P and θ so that the three forces shown are equivalent to the single force R =85i + 20j kN.Determine the internal forces at point J when a= = 0.An 8-m long cantilever beam is loaded with vertical forces A = 60 kN and B = 108 kN, separated by a distance d = 5.6 m, as shown. Replace the two forces with a single equivalent force R and determine the distance x-bar (x¯) from the left end of the beam to the line of action of R.