7-17. If the beam is subjected to a shear of V = 15 kN, determine the web's shear stress at A and B. Indicate the shear-stress components on a volume element located at these points. Set w = 125 mm. Show that the neutral axis is located at y = 0.1747 m from the bottom and INA 02182(10-³) m².
7-17. If the beam is subjected to a shear of V = 15 kN, determine the web's shear stress at A and B. Indicate the shear-stress components on a volume element located at these points. Set w = 125 mm. Show that the neutral axis is located at y = 0.1747 m from the bottom and INA 02182(10-³) m².
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Problem 1.1MA
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
Transcribed Image Text:**Problem 7-17:**
If a beam is subjected to a shear force of \( V = 15 \, \text{kN} \), determine the shear stress in the web at points A and B. Indicate the shear-stress components on a volume element located at these points. Use \( z = 125 \, \text{mm} \). Verify that the neutral axis is located at \( y = 0.1747 \, \text{m} \) from the bottom, and the moment of inertia \( I_{NA} = 0.2182 \times 10^{-3} \, \text{m}^4 \).
**Diagram Explanation:**
The image shows a cross-sectional view of a beam with specified dimensions:
1. **Top Flange:**
- Width: 200 mm
- Height: 30 mm
2. **Web:**
- Height: 250 mm
- Thickness: 30 mm
3. **Bottom Flange:**
- Width: 200 mm
- Height: 30 mm
Points A and B are marked on the web at specific vertical locations. The figure illustrates the structure subjected to shear, visually indicating where the stresses need to be analyzed.
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