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For a sand having an internal friction of 300, the ratio of passive to active lateral earth pressure will be
  • a)
    1
  • b)
    3
  • c)
    6
  • d)
    9
Correct answer is option 'D'. Can you explain this answer?
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For a sand having an internal friction of 300, the ratio of passive to...
 will be the ratio of passive to active earth pressure.
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For a sand having an internal friction of 300, the ratio of passive to...
The internal friction angle of a sand is typically denoted by the symbol "phi" (ϕ) and is a measure of the resistance of the sand to shear stress. The value of the internal friction angle for a specific type of sand can vary, but let's assume the internal friction angle is 30 degrees for this example.

The internal friction angle is an important parameter in geotechnical engineering, as it affects the stability of slopes, the bearing capacity of foundations, and the behavior of retaining walls, among other things.

For a sand with an internal friction angle of 30 degrees, it means that the sand can resist shear stress up to a certain point before it fails and starts to deform or flow. The higher the internal friction angle, the more resistant the sand is to shear stress.

It is important to note that the internal friction angle is just one of the many factors that determine the behavior of sand. Other factors such as grain size, grain shape, density, and moisture content also play a significant role in determining the overall behavior of the sand.
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For a sand having an internal friction of 300, the ratio of passive to...
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For a sand having an internal friction of 300, the ratio of passive to active lateral earth pressure will bea)1b)3c)6d)9Correct answer is option 'D'. Can you explain this answer?
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