Shear given Horizontal Shear Flow Formula

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Shear Force is the force which causes shear deformation to occur in the shear plane. Check FAQs
V=IτyA
V - Shear Force?I - Area Moment of Inertia?τ - Shear Stress?y - Distance from Neutral Axis?A - Cross Sectional Area?

Shear given Horizontal Shear Flow Example

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With units
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Here is how the Shear given Horizontal Shear Flow equation looks like with Values.

Here is how the Shear given Horizontal Shear Flow equation looks like with Units.

Here is how the Shear given Horizontal Shear Flow equation looks like.

24.75Edit=3.6E+7Edit55Edit25Edit3.2Edit
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Shear given Horizontal Shear Flow Solution

Follow our step by step solution on how to calculate Shear given Horizontal Shear Flow?

FIRST Step Consider the formula
V=IτyA
Next Step Substitute values of Variables
V=3.6E+7mm⁴55MPa25mm3.2
Next Step Convert Units
V=3.6E-5m⁴5.5E+7Pa0.025m3.2
Next Step Prepare to Evaluate
V=3.6E-55.5E+70.0253.2
Next Step Evaluate
V=24750N
LAST Step Convert to Output's Unit
V=24.75kN

Shear given Horizontal Shear Flow Formula Elements

Variables
Shear Force
Shear Force is the force which causes shear deformation to occur in the shear plane.
Symbol: V
Measurement: ForceUnit: kN
Note: Value should be greater than 0.
Area Moment of Inertia
Area Moment of Inertia is a moment about the centroidal axis without considering mass.
Symbol: I
Measurement: Second Moment of AreaUnit: mm⁴
Note: Value should be greater than 0.
Shear Stress
Shear Stress, force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress.
Symbol: τ
Measurement: StressUnit: MPa
Note: Value should be greater than 0.
Distance from Neutral Axis
Distance from Neutral Axis is measured between N.A. and the extreme point.
Symbol: y
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Cross Sectional Area
The cross sectional area is the breadth times the depth of the structure.
Symbol: A
Measurement: AreaUnit:
Note: Value should be greater than 0.

Other formulas in Horizontal Shear Flow category

​Go Moment of Inertia given Horizontal Shear Flow
I=VAyτ
​Go Distance from Centroid given Horizontal Shear Flow
y=IτVA
​Go Area given Horizontal Shear Flow
A=IτVy
​Go Horizontal Shear Flow
τ=VAyI

How to Evaluate Shear given Horizontal Shear Flow?

Shear given Horizontal Shear Flow evaluator uses Shear Force = (Area Moment of Inertia*Shear Stress)/(Distance from Neutral Axis*Cross Sectional Area) to evaluate the Shear Force, The Shear given Horizontal Shear Flow formula is defined as a shearing force acting on the cross-section undergoing shear. Shear Force is denoted by V symbol.

How to evaluate Shear given Horizontal Shear Flow using this online evaluator? To use this online evaluator for Shear given Horizontal Shear Flow, enter Area Moment of Inertia (I), Shear Stress (τ), Distance from Neutral Axis (y) & Cross Sectional Area (A) and hit the calculate button.

FAQs on Shear given Horizontal Shear Flow

What is the formula to find Shear given Horizontal Shear Flow?
The formula of Shear given Horizontal Shear Flow is expressed as Shear Force = (Area Moment of Inertia*Shear Stress)/(Distance from Neutral Axis*Cross Sectional Area). Here is an example- 0.02475 = (3.6E-05*55000000)/(0.025*3.2).
How to calculate Shear given Horizontal Shear Flow?
With Area Moment of Inertia (I), Shear Stress (τ), Distance from Neutral Axis (y) & Cross Sectional Area (A) we can find Shear given Horizontal Shear Flow using the formula - Shear Force = (Area Moment of Inertia*Shear Stress)/(Distance from Neutral Axis*Cross Sectional Area).
Can the Shear given Horizontal Shear Flow be negative?
No, the Shear given Horizontal Shear Flow, measured in Force cannot be negative.
Which unit is used to measure Shear given Horizontal Shear Flow?
Shear given Horizontal Shear Flow is usually measured using the Kilonewton[kN] for Force. Newton[kN], Exanewton[kN], Meganewton[kN] are the few other units in which Shear given Horizontal Shear Flow can be measured.
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