Answer:
Follows are the solution to the given question:
Step-by-step explanation:
Dry Soil weight = solid soil weight =

solid soil volume =

saturated mass soil =

The weight of the soil after drainage is =

Water weight for soil saturation =

Water volume required for soil saturation =

Sample volume of water:
![= \frac{\text{water density}}{\text{water density input}}]()

Soil water retained volume = (draining field weight - dry soil weight)



(Its saturated water volume is equal to the volume of voids)



