Concept explainers
Calculate the elastic settlement due to the net applied pressure on the foundation.
Answer to Problem 11.1P
The elastic settlement due to the net applied pressure
Explanation of Solution
Given information:
The vertical column load
The length of the foundation
The breadth of the foundation
The depth of foundation
The average modulus of elasticity
The Poisson’s ratio
The depth below the foundation
Calculation:
Calculate the elastic settlement for the perfectly flexible foundation
Here,
Calculate the net applied pressure
Substitute
For the center of the foundation:
The factor
Calculate
Substitute
Calculate the ratio
Substitute
Calculate the ratio
Substitute
Calculate the shape factor
Here,
Calculate the factor
Refer Table 11.1 “Variation of
Take the value of
Calculate the factor
Refer Table 11.2 “Variation of
Take the value of
Calculate the shape factor
Substitute
Calculate the ratio
Substitute
Calculate the ratio
Substitute
Calculate the depth factor
Refer Table 11.3 “Variation of
Take the value of
Calculate the elastic settlement for the perfectly flexible foundation
Substitute
Calculate the elastic settlement for the rigid foundation
Substitute
Therefore, the elastic settlement due to the net applied pressure
Want to see more full solutions like this?
Chapter 11 Solutions
MindTap Engineering for Das/Sobhan's Principles of Geotechnical Engineering, SI Edition, 9th Edition, [Instant Access], 2 terms (12 months)
- Determine the internal normal force, shear force, and moments at points E and D of the compound beam.arrow_forward6. Draw the shear and moment diagrams for the beam. 10 kN 10 kN/m 1 m 2 m. Aarrow_forward3. Identify and label the key components that make up the low-slope roofing system in the diagram below. (5 points)arrow_forward
- ASSIGNMENT. 1. The following figure is a billboard sketch, design the members. Hint, the billboard is usually designed against wind loads and its own self weight. For the dimensions, you can visit existing billboards to see usual dimensions. 3D Viewarrow_forwardIn order to solve the frame given below with the Force Method, remove restraints from joints A and G and draw only the bending moment diagrams Mo, M₁, M2 and M3 for this case. (25 Pts.) Note: Only bending moment diagrams that are used for the solution are required. There is no need to do any further calculations. 4 kN B I E D 2 kN/m H 3 m 3 m 4 m + 2 m 4marrow_forwardplease show complete solution with formulaarrow_forward
- please show complete solution, thank youarrow_forwardplease show complete solution, step by step, thanksarrow_forward1. What is the weight of each block shown below in pounds? A) 2’x2’x10’ Steel Bar w=490lb/ft^3 B) 5’x4’x3’ Concrete Block w=150lb/ft^3 A) 3’x10’x2’ Wood block w=50lb/ft^3 2.The 6” thick, 20’x25’ concrete slab weights 150lbs/ft^3 and has an area load of 50lbs/ft^2 (psf). What is the total load of the floor?arrow_forward
- Lab Assignment #2 Loads: UDL and Concentrated Name: TA 1. Use the provided beam models to solve for the equivalent concentrated load of each beam configuration. Draw the loading conditions showing the equivalent concentrated load(s). a) w = 30lbs/ft 6ft 6ft c) w = 50lbs/ft 12ft w = 70lbs/ft b) 4ft w = 20lbs/ft w = 40lbs/ft d) 9ft 2. Find the equivalent concentrated load(s) for the bags of cement stacked on the dock as shown here. Each bag weighs 100 lbs and is 12 inches long. Draw the loading conditions for each showing the equivalent concentrated load(s). 1 bag = 100lbs L= 12 ft L= 6ft L= 8ftarrow_forwardplease show the complete solution, step by step process, thanksarrow_forwardThe rectangular gate shown in figure rotates about an axis through N. If a=3.3 ft,b=1.3 ft, d=2 ft, and the width perpendicular to the plane of the figure is 3 ft, what torque(applied to the shaft through N) is required to hold the gate closed?arrow_forward
- Principles of Geotechnical Engineering (MindTap C...Civil EngineeringISBN:9781305970939Author:Braja M. Das, Khaled SobhanPublisher:Cengage LearningFundamentals of Geotechnical Engineering (MindTap...Civil EngineeringISBN:9781305635180Author:Braja M. Das, Nagaratnam SivakuganPublisher:Cengage LearningPrinciples of Foundation Engineering (MindTap Cou...Civil EngineeringISBN:9781305081550Author:Braja M. DasPublisher:Cengage Learning
- Principles of Foundation Engineering (MindTap Cou...Civil EngineeringISBN:9781337705028Author:Braja M. Das, Nagaratnam SivakuganPublisher:Cengage Learning