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The net ultimate bearing capacity of a purely cohesive soil
  • a)
    Depends on the width of the footing and is independent of the depth of the footing
  • b)
    Depends on the width as well as the depth of the footing
  • c)
    Depends on the depth, but is independent of the width, of the footing
  • d)
    Is independent of both the width and the depth of the footing
Correct answer is option 'D'. Can you explain this answer?
Verified Answer
The net ultimate bearing capacity of a purely cohesive soila)Depends o...
As per Terzaghi's bearing capacity equation,

For a purely cohesive soil,
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The net ultimate bearing capacity of a purely cohesive soila)Depends o...
Ultimate Bearing Capacity of Purely Cohesive Soil

Definition: The ultimate bearing capacity of a soil is defined as the maximum gross pressure intensity that the soil can carry without failure.

Factors affecting the ultimate bearing capacity of a purely cohesive soil:

1. Shear strength of soil: The ultimate bearing capacity of a soil is directly proportional to the shear strength of the soil.

2. Depth of the footing: The ultimate bearing capacity of a soil increases as the depth of the footing increases.

3. Width of the footing: The ultimate bearing capacity of a soil increases as the width of the footing increases.

Answer Explanation:

Option 'D' is the correct answer because the ultimate bearing capacity of a purely cohesive soil is independent of both the width and the depth of the footing. This is because the ultimate bearing capacity of a cohesive soil is governed by the shear strength of the soil, which is not affected by the size of the footing. Therefore, the ultimate bearing capacity of a cohesive soil is a constant value regardless of the size of the footing.
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The net ultimate bearing capacity of a purely cohesive soila)Depends on the width of the footing and is independent of the depth of the footingb)Depends on the width as well as the depth of the footingc)Depends on the depth, but is independent of the width, of the footingd)Is independent of both the width and the depth of the footingCorrect answer is option 'D'. Can you explain this answer?
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