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Strength of Materials
Normal Stress on Oblique Plane in Strength of Materials Formulas
Normal Stress on Oblique Plane is the stress acting normally to its oblique plane. And is denoted by σ
θ
. Normal Stress on Oblique Plane is usually measured using the Megapascal for Stress. Note that the value of Normal Stress on Oblique Plane is always negative.
Formulas to find Normal Stress on Oblique Plane in Strength of Materials
f
x
Normal Stress when Complementary Shear Stresses Induced
Go
f
x
Normal Stress Induced in Oblique Plane due to Biaxial Loading
Go
f
x
Normal Stress when Member Subjected to Axial Load
Go
Strength of Materials formulas that make use of Normal Stress on Oblique Plane
f
x
Shear Stress due to Induced Complementary Shear Stresses and Normal Stress on Oblique Plane
Go
f
x
Angle of Oblique Plane using Normal Stress when Complementary Shear Stresses Induced
Go
f
x
Stress along Y-direction when Member Subjected to Axial Load
Go
f
x
Angle of Oblique plane when Member Subjected to Axial Loading
Go
List of variables in Strength of Materials formulas
f
x
Shear Stress
Go
f
x
Theta
Go
f
x
Stress along x Direction
Go
f
x
Stress along y Direction
Go
f
x
Shear Stress xy
Go
FAQ
What is the Normal Stress on Oblique Plane?
Normal Stress on Oblique Plane is the stress acting normally to its oblique plane. Normal Stress on Oblique Plane is usually measured using the Megapascal for Stress. Note that the value of Normal Stress on Oblique Plane is always negative.
Can the Normal Stress on Oblique Plane be negative?
Yes, the Normal Stress on Oblique Plane, measured in Stress can be negative.
What unit is used to measure Normal Stress on Oblique Plane?
Normal Stress on Oblique Plane is usually measured using the Megapascal[MPa] for Stress. Pascal[MPa], Newton per Square Meter[MPa], Newton per Square Millimeter[MPa] are the few other units in which Normal Stress on Oblique Plane can be measured.
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