Question

In: Civil Engineering

Find the ultimate bearing capacity using Terzaghi for the given foundation located at 4.8m below ground....

Find the ultimate bearing capacity using Terzaghi for the given foundation located at 4.8m below ground. Water table at 2.2m below ground.

Soil A has H= 1.8m ɣ=15KN/m3, C=35 KN/m2, ɸ= 25, and e= 0.42.

Soil B has H= 3.0m ɣ=16KN/m3, C=45 KN/m2, ɸ= 35, and e= 0.49.

Before the foundation was laid compaction was done on both soils where results were

Soil A has ɣmax=18KN/m3, optimum water content 11% and e=0.26.

Soil B has ɣmax=20KN/m3, optimum water content 13% and e=0.29.

The foundation is 2.8x2.8m and its loosest void ratio for both soils are 0.90 and 0.82, respectively

Solutions

Expert Solution

comment for any doubt about this solution thank you
Don't forget to upvote if you got your answer


Related Solutions

Find the ultimate bearing capacity using Terzaghi for the given foundation located at 4.8m below ground....
Find the ultimate bearing capacity using Terzaghi for the given foundation located at 4.8m below ground. Water table at 2.2m below ground. Soil A has H= 1.8m ɣ=15KN/m3, C=35 KN/m2, ɸ= 25, and e= 0.42. Soil B has H= 3.0m ɣ=16KN/m3, C=45 KN/m2, ɸ= 35, and e= 0.49. Before the foundation was laid compaction was done on both soils where results were Soil A has ɣmax=18KN/m3, optimum water content 11% and e=0.26. Soil B has ɣmax=20KN/m3, optimum water content 13%...
The design of shallow foundation is governed by the bearing capacity of soil. The bearing capacity...
The design of shallow foundation is governed by the bearing capacity of soil. The bearing capacity of soil is the maximum average contact pressure between the foundation and the soil which should not produce shear failure in the soil. However, some cases at site, the suitable bearing capacity only can be found at 3 m depth from the surface or more. Based on your understanding, discuss this situation and how to resolve the issue in perspective as a consultant engineer
The bearing capacity, ?, of soil under a square foundation of size 9 ft^2 is determined...
The bearing capacity, ?, of soil under a square foundation of size 9 ft^2 is determined to be a random variable with a mean of 3 ksf and a standard deviation of 0.3 ksf. The applied axial load, ?, acting on the foundation is also a random variable with a mean of 16 kip and a standard deviation of 2 kip. Assume ? and ? are statistically independent normal variables. Using the limit state function of the form ?() =...
Determine the Terzaghi’s Bearing Capacity of a square footing 2.25x2.25m located at a depth of 1.24...
Determine the Terzaghi’s Bearing Capacity of a square footing 2.25x2.25m located at a depth of 1.24 m in a sandrock for which c = 0 and Ф = 360. The unit weight of the sandrock above the water table is 17.17 kN/m³; the saturated unit weight is 19.37 kN/m³. Terzaghi’s Bearing Capacity Factors—Nc=63.53 , Nq=47.16 ,   and Ny= 54.36 3.1.The water table is at the surface 3.2.The water table is at 1.10m from the surface 3.3.The water table is at...
1. Bearing capacity of strip foundation is independent of water table location (True/False) 2. Density of...
1. Bearing capacity of strip foundation is independent of water table location (True/False) 2. Density of sand significantly affects the bearing capacity factor Nq (True/False) 3. The bearing capacity of square footing (Length x Width = 39 x 39 m) is higher than strip footing (Width 39 m) under similar conditions (True/False) 4. Bending moment of 39 kNm increases the ultimate bearing capacity of strip footing having a width of 39 m (True/False) 5. Shape factors for square footing with...
A strip wall footing 1.5 m wide is located 1.1 m below the ground surface. Supporting...
A strip wall footing 1.5 m wide is located 1.1 m below the ground surface. Supporting soil has a unit weight of 19.60 kN/m3 . The results of laboratory tests on the soil samples indicated that the supporting soil has the following properties: c’ = 57.5 kN/m2 and I’ = 25°Groundwater surface was not encountered during the subsurface exploration. Determine the allowable bearing capacity of the soil using a factor of safety of 2.5.
Using the atomic weights of selected elements given below, find the formula weights for the following...
Using the atomic weights of selected elements given below, find the formula weights for the following compounds:   Atomic weights of selected elements Ca = 40 g moL-1, C = 12 g moL-1, O = 16 g moL-1, H = 1 g moL-1, P = 31 g moL-1, K = 39 g moL-1                   Si = 28 g moL-1, Al = 27 g moL-1, S = 32 g moL-1, N = 14 g moL-1 Example: (NH4)2SO4 Element no. of moles Atomic...
Question: Using the data obtained from the uniaxial compressive strength test given below: a. Find the...
Question: Using the data obtained from the uniaxial compressive strength test given below: a. Find the average uniaxial compressive strength (UCS) and standard deviation. b. Make UCS classification (ISRM, 1978). Specimen Diameter (mm) Specimen Height (mm) Failure Load (kN) 54,0 140 252,5 53,2 135 275,5 53,7 140 232,5 53,5 130 225,5 53,1 135 217,5 53,2 140 225,5
Find the area of the part given in the diagram below
Find the area of the part given in the diagram below  
Using the Below​ Data:                                                                                                              ​A: Prepare an Income Statement using the information given below. Make sure...
Using the Below​ Data:                                                                                                              ​A: Prepare an Income Statement using the information given below. Make sure to identify Gross​ Pofit, Operating​ Income, and Net Income. ​B: Calculate the​ P/E Ratio Inventories ​$ 50,000 Cost of Goods Sold ​$ 250,000 Administrative Expenses ​$ 50,000 Accumulated Depreciation ​$ 150,000 Sales ​$ 600,000 Depreciation Expense                 ​$ 25,000 Selling Expense ​$ 150,000 Common Stoock Dividends ​$ 8,000 Interest Expense ​$ 8,000 Corporate Tax Rate ​40% Cmmon Stock Shares ​100,000 Current Stock Market Price ​$...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT