Determine the resultant of the forces sho 60 lb
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A: Given Data :
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Q: e maximum shear stress developed
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A: Given Data :
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Q: A ame etenmant is gabjecfed fo the foleing biraxial of strex: Ox-75 mpa - 15 mpa %3D てx35m sheap sfz...
A: Given:σx=75 MPaσy=15 MPaζxy=35 MPaζ=95 MPa
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Q: A folloing og strer: oR=75 mpa, Oy = 15 mpa てx-355mia amle elemónt is geuljeefed fo the binanial 11
A: Givenσx=75MPaσy=15Mpaτxy=35MPaallowable shear stress τa=95MPa
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Q: Force applied=7 N Displacement=3 m Determine work done
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Q: FOS-?
A: Given; A machine element is subjected to the following bi-axial stress: σx=75 MPa σy=15 MPa ζxy=35 ...
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- The cable AB supports a uniformly distributed load of 12 lb/ft. Determine the angles A and B, and the cable tension at A.The intensity of the line loading acting on a quarter circle is w=w0(2/). Use intergration to determine the resultant of the loading and its line of action.Determine the resultant of the following concurrent forces: 8 N, 60o N of E and 40N, 45o N of W using: a. law of sine and cosine, andb. parallelogram method For b use the scale: 2N =1 cm.
- Using 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° SDetermine the internal forces at point J, with alpha = 0°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°.
- Determine the position of the resultant along the x-axis of the system of concurrent forces having the following magnitudes and passing through the origin and the indicated points: P=520 lb (+8,-6,+5), T=270 lb (-3,-4, +10), F=280 lb (+5,-3,-6). a.) 131.38° b.) None of the above c.) 48.62° d.) 49.61° e.) 67.73°Determine P and θ so that the three forces shown are equivalent to the single force R =85i + 20j kN.The hook is acted on by the three forces. Determine P and the angle theta, given that the resultant is 90i kN
- For the distributed loading shown, find the equivalent resultant force and specify its location measured from point A, along AB, given: W1 = 260 lb/ft, W2 = 100 lb/ft, L1 = 9 ft, L2= 6 ft The magnitude of resultant force, FR is: (enter a positive number) FR = lbs The distance from point A in the positive X-direction is: d = ftIf several forces are acting at a point, their resultant will be inclined at an angle 'θ' with the horizontal such that____________ a. tanθ = √(ΣV + ΣH) b. tanθ = ΣH/ΣV c. tanθ = ΣH * ΣV d. tanθ = ΣV/ΣHFind the magnitude of the resultant force, R, of the following forces using Law of Sine/Cosine. F1=81N 26ᴼ S of W and F2=62N 67ᴼ E of N.