For the design of a shallow foundation, given the following: Soil: ' = 20° c=57 kN/m² Unit weight, y=18 kN/m³ Modulus of elasticity, E, = 1400 kN/m² Poisson's ratio, μs = 0.35 Foundation: L=2m B=1m D₁ =1m Calculate the ultimate bearing capacity. Use the equation: 1 qu= c'Ne Fes Fed Fec +qNqFqs FqdFqc + - BNF √s F√d F 2 For d'=20°, N = 14.83, N = 6.4, and N., = 5.39. (Enter your answer to three significant figures.) qu kN/m²

Principles of Foundation Engineering (MindTap Course List)
8th Edition
ISBN:9781305081550
Author:Braja M. Das
Publisher:Braja M. Das
Chapter5: Ultimate Bearing Capacity Of Shallow Foundations: Special Cases
Section: Chapter Questions
Problem 5.5P
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For the design of a shallow foundation, given the following:
Soil: ' = 20°
c=57 kN/m²
Unit weight, y=18 kN/m³
Modulus of elasticity, E, = 1400 kN/m²
Poisson's ratio, μs = 0.35
Foundation: L=2m
B=1m
D₁ =1m
Calculate the ultimate bearing capacity. Use the equation:
1
qu= c'Ne Fes Fed Fec +qNqFqs FqdFqc + - BNF √s F√d F
2
For d'=20°, N = 14.83, N = 6.4, and N., = 5.39.
(Enter your answer to three significant figures.)
qu
kN/m²
Transcribed Image Text:For the design of a shallow foundation, given the following: Soil: ' = 20° c=57 kN/m² Unit weight, y=18 kN/m³ Modulus of elasticity, E, = 1400 kN/m² Poisson's ratio, μs = 0.35 Foundation: L=2m B=1m D₁ =1m Calculate the ultimate bearing capacity. Use the equation: 1 qu= c'Ne Fes Fed Fec +qNqFqs FqdFqc + - BNF √s F√d F 2 For d'=20°, N = 14.83, N = 6.4, and N., = 5.39. (Enter your answer to three significant figures.) qu kN/m²
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