1.5 mm + 2.0 mm 2.0 mm 3.0 mm A shear force, S, is applied. This results in shear flow, shown with red arrows, which has the following values: Shear flow in part 13, just before point 3- 38 N/mm Shear flow in part 23, just before point 3- 44 N/mm Shear flow in part 43, just before point 3- 44 N/mm What is the shear stress in part 35, just below point 3?

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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mmetri
Each part has a constant thickness with values indicated.
2.0 mm
1.5 mm
3.0 mm
2.0 mm
A shear force, S₂ is applied. This results in shear flow, shown with red arrows, which has the following values:
• Shear flow in part 13, just before point 3 - 38 N/mm
Shear flow in part 23, just before point 3 = 44 N/mm
Shear flow in part 43, just before point 3- 44 N/mm
What is the shear stress in part 35, just below point 3?
Express your answer in MPa, to 2 decimal places but without the units included. You have a 3% margin of error.
Transcribed Image Text:mmetri Each part has a constant thickness with values indicated. 2.0 mm 1.5 mm 3.0 mm 2.0 mm A shear force, S₂ is applied. This results in shear flow, shown with red arrows, which has the following values: • Shear flow in part 13, just before point 3 - 38 N/mm Shear flow in part 23, just before point 3 = 44 N/mm Shear flow in part 43, just before point 3- 44 N/mm What is the shear stress in part 35, just below point 3? Express your answer in MPa, to 2 decimal places but without the units included. You have a 3% margin of error.
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