Determine the coordinate direction angle B of the resultant force. Express your answer using three significant figures. ? να ΑΣφ If | vec B = Submit Request Answer Part F Determine the coordinate direction angle y of the resultant force. Express your answer using three significant figures.
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- he region of safety in maximum shear stress theory contains which of the given shape *Determine the shear force acting at each of the following locations:(a) x = 0+ ft (i.e., just to the right of support A)(b) x = 9 ft(c) x = 12.333333333333 ftWhen entering your answers, use the shear force sign convention.Answer:(a) V = kips.(b) V = kips.(c) V = kips. The shear-force diagram crosses the V = 0 axis between points A and B. Determine the location x where V = 0 kips.Answer: x = Enter your answer in accordance to the question statement ft. Determine the maximum bending moment that acts anywhere in the beam. When entering your answer, use the bending moment sign convention.Answer: Mmax = Enter your answer in accordance to the question statement kip-ft. Use the graphical method to determine the bending moment acting at each of the following locations:(a) x = 3.3 ft(b) x = 9 ft(c) x = 12.6 ftWhen entering your answers, use the bending moment sign convention.Answers:(a) M = kip-ft.(b) M = kip-ft.(c) M = kip-ft.The shaft is supported at its ends by two bearings AA and BB and is subjected to the forces applied to the pulleys fixed to the shaft. (Figure 1) The T1=T1= 585-NN forces act in the -zz direction and the 200-NN and 80-NN forces act in the +yy direction. The journal bearings at AA and BB exert only yy and zz components of force on the shaft. Part A Determine the resultant normal force on the cross section at CC. Express your answer to three significant figures and include appropriate units. NC= values ? NC= units? Determine the resultant shear force in the yy direction on the cross section at CC . Express your answer to three significant figures and include appropriate units. (VC)y Values ? (VC)y units ?
- The motorcycle weighs 151 kg and the driver weighs 64 kg. Dimensions: l1 = 0,31 m and l2 = 0,23 m Determine the support force on the rear tire. ( DISCLEIMER: I have allready tried to solve this question before and I have been getting 1307.10N as answer. Seems like this answer is not right.)The 1900-NN load is applied along the centroidal axis of the member. (Figure 1) Determine the magnitude of the resultant internal normal force in the member section a-a. Express your answer to three significant figures and include the appropriate units. 2) Determine the magnitude of the resultant internal shear force in the member section a-a. Express your answer to three significant figures and include the appropriate units.1) Determine the normal force at point E Express your answer to three significant figures and include the appropriate units. 2) Determine the shear force at point E. Express your answer to three significant figures and include the appropriate units. 3) Determine the moment at point E. Express your answer to three significant figures and include the appropriate units.
- Determine the horizontal and vertical components of force at the pin AA. Express your answers using three significant figures separated by a comma. Assume that the positive xx and yy axes are directed to the right and upward, respectively. Ax,Ay = ???? N Determine the force in cable CBCB. Express your answer to three significant figures and include the appropriate units. F_(BC) = ??? unit1) Determine the normal force acting at point C(Nc) Express your answer to three significant figures and include the appropriate units. 2) Determine the shear force acting at point C (Vc). Express your answer to three significant figures and include the appropriate units. 3) Determine the moment acting at point C(Mc) Express your answer to three significant figures and include the appropriate units.The assembly consists of three titanium (Ti-6A1-4V) rods and a rigid bar AC. The image shows the cross-sectional area of the assembly .If a force P= 66 kNkN is applied to the ring F, what isthe angle of tilt of bar AC measured counterclockwise from the negative y axis.
- A hollow steel crank has an outside diameter of 26 mm and an inside diameter of 21 mm. The load magnitudes are Py = 690 N and Pz = 270 N, and the length dimensions are a = 145 mm, b = 399 mm, and c = 261 mm. Determine the magnitudes of the equivalent forces and the equivalent moments that act at the section that contains point K. (a) Axial force in x direction Px (N (b) Shear force in y direction Vy (N (c) Shear force in z direction Vz (N (d) Torque around x axis Tx (N·m) (e) Bending moment around y axis My (N·m) (f) Bending moment around z axis Mz (N·m) Calculate the section properties for the hollow crank at K. (g) Area A (mm2) (h) Polar moment of inertia J (mm4) (i) Area moment of inertia Iy (and Iz) (mm4) (j) QK (for shear force in y-direction) (mm3) Using the sign conventions, determine the normal and shear stresses that act at K and show these stresses on a stress element. (k) Normal stress in x direction σx(MPa) (l) Normal stress in y direction σy(MPa) (m) Shear stress in x-y…Solve Prob. 7.29 if =0.Determine the algebraic sum of the moments of forces relative to a point in F = 10.0 N; m =9.0 Nm, q =8.0 N/m