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Geotechnical Engineering
Angle of Internal Friction in Geotechnical Engineering Formulas
Angle of Internal Friction is the angle measured between the normal force and resultant force . And is denoted by φ. Angle of Internal Friction is usually measured using the Degree for Angle. Note that the value of Angle of Internal Friction is always positive.
Formulas to find Angle of Internal Friction in Geotechnical Engineering
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Triaxial Angle of Shearing Resistance by Meyerhof's Analysis
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f
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Angle of Internal Friction given Bearing Capacity Factors
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f
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Angle of Internal Friction for Soil
Go
Geotechnical Engineering formulas that make use of Angle of Internal Friction
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x
Plane Strain Angle of Shearing Resistance by Meyerhof's Analysis
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f
x
Width of Footing given Angle of Shearing Resistance by Meyerhof's Analysis
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f
x
Length of Footing given Angle of Shearing Resistance by Meyerhof's Analysis
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f
x
Bearing Capacity Factor Dependent on Surcharge given Angle of Internal Friction
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f
x
Bearing Capacity Factor Dependent on Unit Weight Given Angle of Internal Friction
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f
x
Bearing Capacity Factor Dependent on Surcharge given Unit Weight Bearing Capacity Factor
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f
x
Total Thrust from Soil that are Free to Move
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f
x
Unit Weight of Soil given Total Thrust from Soil that are Free to Move
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f
x
Total Height of Wall given Total Thrust from Soil that are Free to move
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f
x
Coefficient of Active Pressure given Angle of Internal Friction of Soil
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f
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Total Thrust from Soil that are Completely Restrained
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f
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Unit Weight of Soil given Total Thrust from Soil that are Completely Restrained
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f
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Total Height of Wall given Total Thrust from Soil that are Completely Restrained
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f
x
Coefficient of Passive Pressure given Angle of Internal Friction of Soil
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f
x
Shear Strength along Slip Plane
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f
x
Slope Angle given Shear Strength along Slip Plane
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f
x
Cohesion of Soil given Angle of Inclination and Slope angle
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f
x
Height from Toe of Wedge to Top of Wedge given Factor of Safety
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f
x
Length of Slip Plane given Shear Strength along Slip Plane
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f
x
Factor of Safety given Length of Slip Plane
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f
x
Factor of Safety given Effective Normal Stress
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f
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Shear Strength given Submerged Unit Weight
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f
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Shear Stress given Submerged Unit Weight
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f
x
Factor of Safety for Cohesive Soil given Saturated Unit Weight
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f
x
Cohesion of Soil given Saturated Unit Weight
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f
x
Critical Depth given Saturated Unit Weight
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f
x
Cohesion of Soil for Steady Seepage along Slope
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f
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Saturated Unit Weight given Critical Depth
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f
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Angle of Inclination given Shear Strength and Submerged Unit Weight
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f
x
Factor of Safety for Cohesive Soil given Depth of Prism
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f
x
Cohesion given Submerged Unit Weight
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f
x
Submerged Unit Weight given Factor of Safety for Cohesive Soil
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f
x
Depth of Prism for Cohesive Soil given Submerged Slope
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f
x
Critical Depth given Submerged Unit Weight
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f
x
Submerged Unit Weight given Critical Depth
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f
x
Cohesion of Soil given Submerged Unit Weight
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f
x
Cohesion given Factor of Safety for Cohesive Soil
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f
x
Unit Weight of Soil given Factor of Safety for Cohesive Soil
Go
List of variables in Geotechnical Engineering formulas
f
x
Angle of Internal Friction For Plain Strain
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f
x
Width of Footing
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f
x
Length of Footing
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f
x
Bearing Capacity Factor dependent on Unit Weight
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f
x
Bearing Capacity Factor dependent on Surcharge
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f
x
Shear Force on Soil
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f
x
Normal Force on Soil
Go
FAQ
What is the Angle of Internal Friction?
Angle of Internal Friction is the angle measured between the normal force and resultant force . Angle of Internal Friction is usually measured using the Degree for Angle. Note that the value of Angle of Internal Friction is always positive.
Can the Angle of Internal Friction be negative?
No, the Angle of Internal Friction, measured in Angle cannot be negative.
What unit is used to measure Angle of Internal Friction?
Angle of Internal Friction is usually measured using the Degree[°] for Angle. Radian[°], Minute[°], Second[°] are the few other units in which Angle of Internal Friction can be measured.
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