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19: Refer to the figure. With complete fbd.
1. Total reaction at A.
2. Total reaction at B and E.
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- I tried this problem but I have no idea on how else I am sapposed to get the distance s than the method I tried so I'm at a loss can you show me how I can get this distance please?arlan 50 50 O 50 - -25- frome 50 Ø20 25 MisntBuild the following part and report the volume in units cubed. A = 48 B = 51 R20 R10 B 30 50 2X R10 R20 Ø20 A 10 TYP DESIGN ERICS DRAWING TITLE
- What is the magnitude of the resultant of the applied forces Fr in kN. What is the angle between the resultant force Fr and the negative x axis( measured anti-clockwise from the negative x axis) in degrees.A differential equation encountered in the vibration of beams is d4ydx4=2D where x = distance measured along the beam; [x]=[L] y = displacement of the beam; [y]=[L] = circular frequency of vibration; []=[T1] = mass of the beam per unit length; []=[ML1] D = bending rigidity of beam; [D]=[FL2] Show that the equation is dimensionally homogeneous. Note that [F]=[MLT2] see Eq. (1.21:).A mechanic is trying to tighten a giant bolt using a wrench. Forces are applied at points A and B. d₁ 0₁ 160 N 570 N 15 degrees 15 degrees 40 degrees 0.35 m 0.19 m F₁ clockwise N-m Which direction is Mo rotating? counter-clockwise d2 A 0₂ Values for the figure are given in the following table. Note the figure may not be to scale. Variable Value F₁ 03 X F₂ 0₁ 0₂ 03 d₁ d₂ a. Using Varignon's Theorem, determine the magnitude of the moment about the origin, Mo. Round your final answers to 3 significant digits/figures. Mo= F2