Principles of Foundation Engineering, SI Edition
Principles of Foundation Engineering, SI Edition
8th Edition
ISBN: 9781305446298
Author: Braja M. Das
Publisher: Cengage Learning US
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Chapter 2, Problem 2.1P

(a)

To determine

Find the void ratio of soil specimen.

(a)

Expert Solution
Check Mark

Answer to Problem 2.1P

The void ratio of soil is 0.76.

Explanation of Solution

Given information:

The mass (m) of the soil is 87.5kg.

The volume (v) of the soil is 0.05m3.

The moisture content (w) is 15%.

The specific gravity (Gs) of soil solids is 2.68.

Calculation:

Consider the unit weight of water (γw) is 9.81kN/m3.

Calculate the moist unit weight of the soil (γ) using the relation.

γ=WV=mgV=87.5kg×9.81m/s20.05m3×1kN1,000N=17.17kN/m3

Calculate the dry unit weight of the soil (γd) using the relation.

γd=γ1+w=17.171+15100=14.93kN/m3

Calculate the void ratio (e) using the relation as shown below:

γd=Gsγw1+e14.93=(2.68×9.81)1+e14.93+14.93e=26.29e=0.76

Hence, the void ratio of soil is 0.76.

(b)

To determine

Calculate the porosity of soil.

(b)

Expert Solution
Check Mark

Answer to Problem 2.1P

The porosity of soil is 0.43_.

Explanation of Solution

Calculation:

Refer to part (a).

The void ratio of soil is 0.76.

Calculate the void ratio (e) using the relation.

n=e1+e

Substitute 0.76 for e.

n=0.761+0.76=0.43

Hence, the porosity of soil is 0.43_.

(c)

To determine

Calculate the dry unit weight of soil.

(c)

Expert Solution
Check Mark

Answer to Problem 2.1P

The dry unit weight of soil is 14.93kN/m3_.

Explanation of Solution

Calculation:

Calculate the dry unit weight of the soil (γd) using the relation.

Refer to part (a).

Base on result, the dry unit weight of the soil is 14.93kN/m3.

Thus, the dry unit weight of soil is 14.93kN/m3_.

(d)

To determine

Calculate the moist unit weight of soil.

(d)

Expert Solution
Check Mark

Answer to Problem 2.1P

The moist unit weight of soil is 17.17kN/m3_.

Explanation of Solution

Calculation:

Calculate the moist unit weight of the soil (γ) using the relation.

Refer to part (a).

Base on result, the dry unit weight of the soil is 17.17kN/m3.

Thus, the moist unit weight of soil is 17.17kN/m3_.

(e)

To determine

Calculate the degree of saturation.

(e)

Expert Solution
Check Mark

Answer to Problem 2.1P

The degree of saturation is 53%_.

Explanation of Solution

Calculation:

Refer to part (a).

The void ratio of soil is 0.76.

Calculate the degree of saturation (S) using the relation.

S=wGse=15100×2.710.76=0.534×100%=53%

Hence, the degree of saturation is 53%_.

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Students have asked these similar questions
A soil specimen has a volume of 0.06 m3 and a mass of 89.5 kg. Given: w=16%, Gs = 2.64. Determinea. Void ratio b. Porosity c. Dry unit weight d. Moist unit weight e. Degree of saturation
The data of soil specimen are given below; Y(pcf) = 128.9, S% = 48.7 Y(pcf) = 131.4, S% = 78.8 a. Solve for the void ratio of soil specimen. b. Calculate the specific gravity of the soil solids. c. Find the porosity of the soil specimen.
PROBLEM No. 4 A sample of dry sand having a unit weight of 17.50 kN/m³ and a specific gravity of 2.69 is placed in the rain. During the rain, the volume of the sample remains constant but the degree of saturation increases to 45%. Determine the following: The void ratio of the sample in percent. b. The unit weight of the sample after being in the rain. The water content of the sample after being in the rain. a. С.
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