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Upward Force in Seepage Analysis in Seepage Analysis Formulas
Upward Force in Seepage Analysis is due to seepage water. And is denoted by F
u
. Upward Force in Seepage Analysis is usually measured using the Kilonewton per Square Meter for Pressure. Note that the value of Upward Force in Seepage Analysis is always positive.
Formulas to find Upward Force in Seepage Analysis in Seepage Analysis
f
x
Upward Force due to Seepage Water
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f
x
Upward Force due to Seepage Water given Effective Normal Stress
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f
x
Upward Force due to Seepage Water given Submerged Unit Weight
Go
Seepage Analysis formulas that make use of Upward Force in Seepage Analysis
f
x
Unit Weight of Water given Upward Force due to Seepage Water
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f
x
Effective Normal Stress given Upward Force due to Seepage Water
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f
x
Normal Stress Component given Effective Normal Stress
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f
x
Normal Stress Component given Submerged Unit Weight and Depth of Prism
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f
x
Submerged Unit Weight given Upward Force
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f
x
Depth of Prism given Upward Force due to Seepage Water
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f
x
Depth of Prism given Upward Force
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List of variables in Seepage Analysis formulas
f
x
Unit Weight of Water
Go
f
x
Depth of Prism
Go
f
x
Angle of Inclination to Horizontal in Soil
Go
f
x
Normal Stress in Soil Mechanics
Go
f
x
Effective Normal Stress in Soil Mechanics
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f
x
Submerged Unit Weight in KN per Cubic Meter
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FAQ
What is the Upward Force in Seepage Analysis?
Upward Force in Seepage Analysis is due to seepage water. Upward Force in Seepage Analysis is usually measured using the Kilonewton per Square Meter for Pressure. Note that the value of Upward Force in Seepage Analysis is always positive.
Can the Upward Force in Seepage Analysis be negative?
No, the Upward Force in Seepage Analysis, measured in Pressure cannot be negative.
What unit is used to measure Upward Force in Seepage Analysis?
Upward Force in Seepage Analysis is usually measured using the Kilonewton per Square Meter[kN/m²] for Pressure. Pascal[kN/m²], Kilopascal[kN/m²], Bar[kN/m²] are the few other units in which Upward Force in Seepage Analysis can be measured.
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