2.11 A point Q moves from A to B along link 3 while linke 2 rotates from 0 = 30 deg to O' = 120 deg. Fine the absolute displacement of Q. %3D %3D Where RAO, = RBO, = 3" and RBA = RO2O4 = 6". %3D %3D YA
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- Find the x-component a force, 100N, acting 60 degrees below the x-axis,For the system below, EI is constant. If x = 6.73 m from point B, determine the value of EI(Δ) ? If x = 2.49 m from point B, determine the value of EI(θ) ? If x = 7.57 m from point B, determine the value of EI(Δ) ? If x = 4.79 m from point B, determine the value of EI(θ) ?The triangular plate is fixed at its base, and its apex A is given a horizontal displacement of 5 mm. Suppose that a= 640 mm
- Force F = - 4.4Ni + 6.4Nj acts on a small rock with a position vector r = 3.1mi + 8.5m j relative to the origin. In unit vector notation, what is the resulting torque on the rock about the point ( 2.4,4.7,9.9)m^ prime ?Given the image below, if Tcg = 52.1N, what is the moment of tension in the cord cg about the x axis?A loading condition is shown below. Using Castigliano's theorem and by applying a fictitious force Q with a magnitude of 0 at point C, determine: a) The horizontal displacement of point C. a) The vertical displacement of point C.
- Need some assistance figuring this one out! , d1 = 3.3m , d2 = 1.7m , d3 = 2.9m , d4 = 4.2m , h = 6.5m 4. What is Express cable AC as a position vector ? (rACx, rACy, rACz) 5. What is the length of cable AC ( |rAC| ) 6. What is cable AC as a unit vector ? ( uACx, uACy, uACz ) 7.What is the tension on cable AC ( TAC)1) A cylindrical rod of constant shear modulus, G is of length L and located between z=0 and z=L. It has a polar moment of inertia given by J=(Jo)/(1-Z/L) and t=-sin(πZ/2L)where Jo is a constant.The boundary conditions are dΦ(o)/dz =0 AND Φ(L)=0 Find Φ(z) and graph (1/GJo)Φ(Z), and (1/GJo)(dΦ(Z)/dz) ?Consider a pulley system shown below. The coordinate x is the displacement of G. Assume there is no slip between the cord and the pulley, and disk and the ground. What is the potential energy of the system in terms of x?
- use the value w=2, x=0, y=2, z=8As shown, a member is fixed at the origin, point O, and has two applied forces, F1 and F2 , applied at the free end, point B. (Figure 3) The forces are given by F1=115 N i−150 N j+65 N k and F2 has magnitude 185 N and direction angles \alpha =142.0∘ , \beta =70.0∘ , and \gamma =59.2∘ . The dimensions are x1 = 1.40 m , y1 = 1.85 m , and z1 = 1.10 m . What is the moment about the origin due to the applied forces? Express the individual components of the Cartesian vector to three significant figures, separated by commas.Find the equivalent spring constant spring constant of the system.