Ultimate Bearing Capacity provided Angle of Inclination from Horizontal Solution

STEP 0: Pre-Calculation Summary
Formula Used
Net Ultimate Bearing Capacity = Unit Weight of Soil*Depth of Footing*(tan(Angle of Inclination to Horizontal in Soil))^4
qnf = γ*D*(tan(i))^4
This formula uses 1 Functions, 4 Variables
Functions Used
tan - The tangent of an angle is a trigonometric ratio of the length of the side opposite an angle to the length of the side adjacent to an angle in a right triangle., tan(Angle)
Variables Used
Net Ultimate Bearing Capacity - (Measured in Pascal) - Net Ultimate Bearing Capacity is the minimum net pressure intensity causing shear failure.
Unit Weight of Soil - (Measured in Kilonewton per Cubic Meter) - Unit Weight of Soil mass is the ratio of the total weight of soil to the total volume of soil.
Depth of Footing - (Measured in Meter) - Depth of Footing is the longer dimension of the footing.
Angle of Inclination to Horizontal in Soil - (Measured in Radian) - Angle of Inclination to Horizontal in Soil is defined as the angle measured from the horizontal surface of the wall or any object.
STEP 1: Convert Input(s) to Base Unit
Unit Weight of Soil: 18 Kilonewton per Cubic Meter --> 18 Kilonewton per Cubic Meter No Conversion Required
Depth of Footing: 15.2 Meter --> 15.2 Meter No Conversion Required
Angle of Inclination to Horizontal in Soil: 64 Degree --> 1.11701072127616 Radian (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
qnf = γ*D*(tan(i))^4 --> 18*15.2*(tan(1.11701072127616))^4
Evaluating ... ...
qnf = 4834.91668470855
STEP 3: Convert Result to Output's Unit
4834.91668470855 Pascal -->4.83491668470855 Kilonewton per Square Meter (Check conversion ​here)
FINAL ANSWER
4.83491668470855 4.834917 Kilonewton per Square Meter <-- Net Ultimate Bearing Capacity
(Calculation completed in 00.004 seconds)

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Birsa Institute of Technology (BIT), Sindri
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Minimum Depth of Foundation by Rankine's Analysis Calculators

Major Stress during Shear Failure by Rankine Analysis
​ LaTeX ​ Go Major Principal Stress in Soil = Minor Principal Stress in Soil*(tan((Angle of Inclination to Horizontal in Soil*180)/pi))^2+(2*Cohesion of Soil*tan((Angle of Inclination to Horizontal in Soil*180)/pi))
Minor Normal Stress during Shear Failure by Rankine Analysis
​ LaTeX ​ Go Minor Principal Stress in Soil = (Major Principal Stress in Soil-(2*Cohesion of Soil*tan((Angle of Inclination to Horizontal in Soil))))/(tan((Angle of Inclination to Horizontal in Soil)))^2
Minor Normal Stress given Unit Weight of Soil
​ LaTeX ​ Go Minor Principal Stress in Soil = Unit Weight of Soil*Depth of Footing
Unit Weight of Soil given Minor Normal Stress
​ LaTeX ​ Go Unit Weight of Soil = Minor Principal Stress in Soil/Depth of Footing

Ultimate Bearing Capacity provided Angle of Inclination from Horizontal Formula

​LaTeX ​Go
Net Ultimate Bearing Capacity = Unit Weight of Soil*Depth of Footing*(tan(Angle of Inclination to Horizontal in Soil))^4
qnf = γ*D*(tan(i))^4

What is Ultimate Bearing Capacity?

The ultimate bearing capacity of a foundation denotes the maximum load that foundation soils can withstand, and its reasonable determination is one of the pivotal parts in foundation designs. Numerous studies about the ultimate bearing capacity of strip foundations are focused on saturated soils.

How to Calculate Ultimate Bearing Capacity provided Angle of Inclination from Horizontal?

Ultimate Bearing Capacity provided Angle of Inclination from Horizontal calculator uses Net Ultimate Bearing Capacity = Unit Weight of Soil*Depth of Footing*(tan(Angle of Inclination to Horizontal in Soil))^4 to calculate the Net Ultimate Bearing Capacity, The Ultimate Bearing Capacity provided Angle of Inclination from Horizontal is defined as the maximum vertical pressure that can be applied to ground surface, at which point shear failure mechanism develops in supporting soil. Net Ultimate Bearing Capacity is denoted by qnf symbol.

How to calculate Ultimate Bearing Capacity provided Angle of Inclination from Horizontal using this online calculator? To use this online calculator for Ultimate Bearing Capacity provided Angle of Inclination from Horizontal, enter Unit Weight of Soil (γ), Depth of Footing (D) & Angle of Inclination to Horizontal in Soil (i) and hit the calculate button. Here is how the Ultimate Bearing Capacity provided Angle of Inclination from Horizontal calculation can be explained with given input values -> 283.0356 = 18000*15.2*(tan(1.11701072127616))^4.

FAQ

What is Ultimate Bearing Capacity provided Angle of Inclination from Horizontal?
The Ultimate Bearing Capacity provided Angle of Inclination from Horizontal is defined as the maximum vertical pressure that can be applied to ground surface, at which point shear failure mechanism develops in supporting soil and is represented as qnf = γ*D*(tan(i))^4 or Net Ultimate Bearing Capacity = Unit Weight of Soil*Depth of Footing*(tan(Angle of Inclination to Horizontal in Soil))^4. Unit Weight of Soil mass is the ratio of the total weight of soil to the total volume of soil, Depth of Footing is the longer dimension of the footing & Angle of Inclination to Horizontal in Soil is defined as the angle measured from the horizontal surface of the wall or any object.
How to calculate Ultimate Bearing Capacity provided Angle of Inclination from Horizontal?
The Ultimate Bearing Capacity provided Angle of Inclination from Horizontal is defined as the maximum vertical pressure that can be applied to ground surface, at which point shear failure mechanism develops in supporting soil is calculated using Net Ultimate Bearing Capacity = Unit Weight of Soil*Depth of Footing*(tan(Angle of Inclination to Horizontal in Soil))^4. To calculate Ultimate Bearing Capacity provided Angle of Inclination from Horizontal, you need Unit Weight of Soil (γ), Depth of Footing (D) & Angle of Inclination to Horizontal in Soil (i). With our tool, you need to enter the respective value for Unit Weight of Soil, Depth of Footing & Angle of Inclination to Horizontal in Soil and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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