2. (03) The splined ends and gears attached to the A992 steel shaft are subjected to the torques shown. The shaft diameter is 50 mm. L₁ = 500 mm; L2 = 400 mm; L3 = 300 mm T₁ = 200 N.m; T2 = 600 N.m; T3 = 950 N.m; T4 = 150 N.m 2(a) (b) Determine the internal torques in regions AC, CD and DB. 2(b) () Draw the Torque Diagram for this application. 2(c) (49) Plot the shear stress distribution and the shear strain distribution along a radial line within the region CD. T₁ A 2(d) (2) Determine the angle of twist, in degrees, of end B with respect to end A. CLEARLY APPLY FORMULAS, UNITS AND FBDS TO YOUR SOLUTIONS.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Please help with Part C-D draw FBD too thank you.
2.(0) The splined ends and gears attached to the A992 steel shaft
are subjected to the torques shown. The shaft diameter is 50 mm.
L₁ = 500 mm; L₂ = 400 mm; L3 = 300 mm
T₁= 200 N.m; T₂ = 600 N.m; T3 = 950 N.m; T4 = 150 N.m
2(a) (b) Determine the internal torques in regions AC, CD and DB.
2(b) () Draw the Torque Diagram for this application.
2(c) (49) Plot the shear stress distribution and the shear strain
distribution along a radial line within the region CD.
T1
2(d) () Determine the angle of twist, in degrees, of end B with
respect to end A. CLEARLY APPLY FORMULAS, UNITS AND FBDS TO YOUR SOLUTIONS.
T4
Transcribed Image Text:2.(0) The splined ends and gears attached to the A992 steel shaft are subjected to the torques shown. The shaft diameter is 50 mm. L₁ = 500 mm; L₂ = 400 mm; L3 = 300 mm T₁= 200 N.m; T₂ = 600 N.m; T3 = 950 N.m; T4 = 150 N.m 2(a) (b) Determine the internal torques in regions AC, CD and DB. 2(b) () Draw the Torque Diagram for this application. 2(c) (49) Plot the shear stress distribution and the shear strain distribution along a radial line within the region CD. T1 2(d) () Determine the angle of twist, in degrees, of end B with respect to end A. CLEARLY APPLY FORMULAS, UNITS AND FBDS TO YOUR SOLUTIONS. T4
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