Stability and Tipping - Examples & Applications
Example
A rigid block weighs and has a rectangular base width . A horizontal force acts at a height above the base. Determine the base-reaction eccentricity and whether the full base can remain in compression.
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Example
A machine weighs on a -wide base. The coefficient of friction at the interface is . A horizontal force is applied above the base. Determine whether sliding or tipping occurs first as the horizontal force is increased.
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Example
A simplified retaining-wall section has a total stabilizing vertical load of whose resultant acts from the toe. The lateral earth-pressure resultant is acting above the base. Determine the overturning moment ratio about the toe.
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Key Takeaways
- Eccentricity follows directly from moment equilibrium: .
- The middle-third check concerns full compression; it is not the same as complete overturning.
- Sliding and tipping thresholds must be evaluated independently.
- Stability calculations are equilibrium checks, not substitutes for structural or geotechnical design.