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FE Civil Geotechnical Engineering Practice Test 2027 Edition | Updated 2026–2027 Questions with Correct Answers & Detailed Rationales

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Prepare for the FE Civil Exam 2026–2027 with this updated Geotechnical Engineering Practice Test 2027 Edition. Designed for comprehensive FE Civil preparation, this resource covers essential geotechnical engineering concepts including soil classification, phase relationships, index properties, compaction, permeability, seepage, effective stress, consolidation, shear strength, lateral earth pressure, bearing capacity, slope stability, and shallow and deep foundations. Each practice question includes the correct answer and detailed rationale to help reinforce technical concepts, improve problem-solving accuracy, and identify areas requiring additional study. Ideal for self-assessment, focused review, mock-test preparation, and final preparation for the 2027 FE Civil examination.

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FE Civil Geotechnical Engineering
Practice Test 2027 Edition | Updated
2026–27 Questions, Answers &
Rationales

1. A soil has a liquid limit of 62% and a plastic limit of 28%. What is its
plasticity index?

A. 28%
B. 34%
C. 62%
D. 90%

Answer: 34%

Rationale: The plasticity index is PI = LL − PL = 62 − 28 = 34%.



2. A saturated soil has a total unit weight of 120 pcf. If the water unit weight is
62.4 pcf, what is its submerged unit weight?

A. 42.4 pcf
B. 57.6 pcf

,C. 62.4 pcf
D. 120 pcf

Answer: 57.6 pcf

Rationale: The submerged unit weight is γ′ = γsat − γw = 120 − 62.4 = 57.6 pcf.



3. A soil has a void ratio of 0.75 and a specific gravity of solids of 2.70. What is
its dry unit weight?

A. 85.1 pcf
B. 95.4 pcf
C. 110.1 pcf
D. 168.5 pcf

Answer: 95.4 pcf

Rationale: γd = Gsγw/(1 + e) = (2.70)(62.4)/(1.75) ≈ 96.3 pcf; using standard
rounding gives approximately 96 pcf. Therefore, among the choices, 95.4 pcf is
the closest.



4. A soil has a water content of 18%, a specific gravity of 2.65, and a void ratio
of 0.70. What is its degree of saturation?

A. 42%
B. 68%
C. 82%
D. 100%

Answer: 68%

Rationale: S = wGs/e = (0.18)(2.65)/0.70 ≈ 0.681, or approximately 68%.

, 5. Which soil type generally exhibits the greatest permeability?

A. Clay
B. Silt
C. Fine sand
D. Gravel

Answer: Gravel

Rationale: Hydraulic conductivity generally increases dramatically as particle
size increases. Gravel typically has much larger interconnected voids than fine-
grained soils.



6. According to Darcy's law, the rate of groundwater flow through a soil is
directly proportional to:

A. Hydraulic gradient and cross-sectional area
B. Effective stress only
C. Soil plasticity index
D. Degree of compaction only

Answer: Hydraulic gradient and cross-sectional area

Rationale: Darcy's law is Q = kiA, where k is hydraulic conductivity, i is hydraulic
gradient, and A is cross-sectional area.



7. A constant-head permeability test has k = 2 × 10⁻³ cm/s, cross-sectional
area = 50 cm², hydraulic head loss = 30 cm, and specimen length = 15 cm.
What is the approximate discharge rate?

A. 0.002 cm³/s
B. 0.01 cm³/s
C. 0.20 cm³/s
D. 2.0 cm³/s

, Answer: 0.20 cm³/s

Rationale: Q = kiA = (0.002)(30/15)(50) = 0.20 cm³/s.



8. Which laboratory test is primarily used to determine the shear strength
parameters c and φ for a soil?

A. Atterberg limits test
B. Direct shear test
C. Hydrometer test
D. Specific gravity test

Answer: Direct shear test

Rationale: The direct shear test evaluates shear stress at failure under controlled
normal stress and can be used to determine cohesion and friction angle.



9. For a normally consolidated clay, the coefficient of earth pressure at rest is
approximately:

A. sin φ
B. 1 − sin φ
C. 1 + sin φ
D. tan φ

Answer: 1 − sin φ

Rationale: For normally consolidated soils, Jaky's relationship is K₀ ≈ 1 − sin φ′.



10.A soil has an effective friction angle of 30°. What is its approximate
coefficient of active earth pressure using Rankine theory?

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