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In Terzaghi’s Theory of one dimensional consolidation, soil particles are ____________ and water is ______________
  • a)
    compressible, incompressible
  • b)
    both are compressible
  • c)
    both are incompressible
  • d)
    incompressible, compressible
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
In Terzaghi’s Theory of one dimensional consolidation, soil part...
Explanation:

Soil Particles:
- Soil particles are considered to be incompressible in Terzaghi's Theory of one-dimensional consolidation.
- This means that the volume of soil particles remains constant during the consolidation process.
- The assumption of incompressibility simplifies the calculations and analysis of consolidation settlement in soils.

Water:
- In contrast to soil particles, water is considered to be compressible in Terzaghi's Theory.
- This means that water can be squeezed out of the void spaces between soil particles during the consolidation process.
- The compressibility of water plays a crucial role in the consolidation behavior of soils, as it allows for the dissipation of excess pore water pressure.

Conclusion:
- In summary, in Terzaghi's Theory of one-dimensional consolidation, soil particles are assumed to be incompressible, while water is considered to be compressible.
- These assumptions help in simplifying the analysis of consolidation settlement in soils and understanding the role of water in the process.
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In Terzaghi’s Theory of one dimensional consolidation, soil part...
In Terzaghi’s Theory of one dimensional consolidation, soil particles and water is considered to be incompressible. Water is slightly compressible. We often treat it as incompressible when doing fluid flow calculations because the pressure changes involved are too small to make an appreciable change to the density.
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In Terzaghi’s Theory of one dimensional consolidation, soil particles are ____________ and water is ______________a)compressible, incompressibleb)both are compressiblec)both are incompressibled)incompressible, compressibleCorrect answer is option 'C'. Can you explain this answer?
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