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If the rectangular footing is loaded with eccentric loads having an eccentricity (ex) and (ey) as shown in the figure below, then the effective area taken to calculate the ultimate bearing capacity of soil will be ______ m2
    Correct answer is between '3.6,3.7'. Can you explain this answer?
    Verified Answer
    If the rectangular footing is loaded with eccentric loads having an ec...
    For eccentric condition, effective area is taken to be

    Effective area (A') = L' × B'
    L' = L – 2ex
    B' = B – 2ey
    A' = L' × B'
    L' = L – 2ex
    L' = 3 – 2 × 0.2
    L' = 2.6 m
    B' = B – 2ey
    B' = 2 – 2 × 0.3
    B' = 1.4 m
    A' = 2.6 × 1.4
    A' = 3.64 m2
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    If the rectangular footing is loaded with eccentric loads having an ec...
    Calculation of Effective Area for Ultimate Bearing Capacity:
    Effective area for ultimate bearing capacity of soil can be calculated considering the eccentric loads applied on the rectangular footing.

    Given Data:
    - Eccentricity (ex) = 0.6 m
    - Eccentricity (ey) = 0.4 m

    Formula:
    Effective Area = Actual Area - (ex + ey) * t
    Where,
    Actual Area = l * b (length * breadth) of the rectangular footing
    t = thickness of the footing

    Calculation:
    - Actual Area = 2 * 2 = 4 m2
    - Thickness of the footing (t) is not given, assuming it to be 0.4 m for calculation purposes
    Effective Area = 4 - (0.6 + 0.4) * 0.4
    Effective Area = 4 - 0.4
    Effective Area = 3.6 m2
    Therefore, the effective area taken to calculate the ultimate bearing capacity of soil will be 3.6 m2.
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    If the rectangular footing is loaded with eccentric loads having an eccentricity (ex) and (ey) as shown in the figure below, then the effective area taken to calculate the ultimate bearing capacity of soil will be ______ m2Correct answer is between '3.6,3.7'. Can you explain this answer?
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