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The Outer Depth of I section is a measure of distance, the distance between the outer bars of the I-section. Check FAQs
D=8IFs𝜏beam+d2
D - Outer Depth of I section?I - Moment of Inertia of Area of Section?Fs - Shear Force on Beam?𝜏beam - Shear Stress in Beam?d - Inner Depth of I Section?

Outer Depth of I section given Shear Stress in Lower Edge of Flange Example

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Here is how the Outer Depth of I section given Shear Stress in Lower Edge of Flange equation looks like with Values.

Here is how the Outer Depth of I section given Shear Stress in Lower Edge of Flange equation looks like with Units.

Here is how the Outer Depth of I section given Shear Stress in Lower Edge of Flange equation looks like.

4123.4088Edit=80.0017Edit4.8Edit6Edit+450Edit2
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Outer Depth of I section given Shear Stress in Lower Edge of Flange Solution

Follow our step by step solution on how to calculate Outer Depth of I section given Shear Stress in Lower Edge of Flange?

FIRST Step Consider the formula
D=8IFs𝜏beam+d2
Next Step Substitute values of Variables
D=80.0017m⁴4.8kN6MPa+450mm2
Next Step Convert Units
D=80.0017m⁴4800N6E+6Pa+0.45m2
Next Step Prepare to Evaluate
D=80.001748006E+6+0.452
Next Step Evaluate
D=4.12340878400384m
Next Step Convert to Output's Unit
D=4123.40878400384mm
LAST Step Rounding Answer
D=4123.4088mm

Outer Depth of I section given Shear Stress in Lower Edge of Flange Formula Elements

Variables
Functions
Outer Depth of I section
The Outer Depth of I section is a measure of distance, the distance between the outer bars of the I-section.
Symbol: D
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Moment of Inertia of Area of Section
Moment of Inertia of Area of Section is the second moment of the area of the section about the neutral axis.
Symbol: I
Measurement: Second Moment of AreaUnit: m⁴
Note: Value should be greater than 0.
Shear Force on Beam
Shear Force on Beam is the force which causes shear deformation to occur in the shear plane.
Symbol: Fs
Measurement: ForceUnit: kN
Note: Value can be positive or negative.
Shear Stress in Beam
Shear Stress in Beam is force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress.
Symbol: 𝜏beam
Measurement: PressureUnit: MPa
Note: Value should be greater than 0.
Inner Depth of I Section
Inner Depth of I Section is a measure of distance, the distance between the inner bars of the I-section.
Symbol: d
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Outer Depth of I section

​Go Outer Depth of I-section given Shear Stress in Flange
D=42IFs𝜏beam+y2

Other formulas in Shear Stress Distribution in Flange category

​Go Inner Depth of I-section given Shear Stress in Lower Edge of Flange
d=D2-8IFs𝜏beam
​Go Moment of Inertia of I section given Shear Stress in Lower Edge of Flange
I=Fs8𝜏beam(D2-d2)
​Go Shear Force in Lower Edge of Flange in I-section
Fs=8I𝜏beamD2-d2
​Go Shear Stress in Lower Edge of Flange of I-section
𝜏beam=Fs8I(D2-d2)

How to Evaluate Outer Depth of I section given Shear Stress in Lower Edge of Flange?

Outer Depth of I section given Shear Stress in Lower Edge of Flange evaluator uses Outer Depth of I section = sqrt((8*Moment of Inertia of Area of Section)/Shear Force on Beam*Shear Stress in Beam+Inner Depth of I Section^2) to evaluate the Outer Depth of I section, The Outer Depth of I section given Shear Stress in Lower Edge of Flange formula is defined as the maximum vertical distance from the outermost point of the I-section beam to its central axis, which is a critical parameter in structural engineering to ensure the beam's stability and resistance to shear stress. Outer Depth of I section is denoted by D symbol.

How to evaluate Outer Depth of I section given Shear Stress in Lower Edge of Flange using this online evaluator? To use this online evaluator for Outer Depth of I section given Shear Stress in Lower Edge of Flange, enter Moment of Inertia of Area of Section (I), Shear Force on Beam (Fs), Shear Stress in Beam (𝜏beam) & Inner Depth of I Section (d) and hit the calculate button.

FAQs on Outer Depth of I section given Shear Stress in Lower Edge of Flange

What is the formula to find Outer Depth of I section given Shear Stress in Lower Edge of Flange?
The formula of Outer Depth of I section given Shear Stress in Lower Edge of Flange is expressed as Outer Depth of I section = sqrt((8*Moment of Inertia of Area of Section)/Shear Force on Beam*Shear Stress in Beam+Inner Depth of I Section^2). Here is an example- 4.1E+6 = sqrt((8*0.00168)/4800*6000000+0.45^2).
How to calculate Outer Depth of I section given Shear Stress in Lower Edge of Flange?
With Moment of Inertia of Area of Section (I), Shear Force on Beam (Fs), Shear Stress in Beam (𝜏beam) & Inner Depth of I Section (d) we can find Outer Depth of I section given Shear Stress in Lower Edge of Flange using the formula - Outer Depth of I section = sqrt((8*Moment of Inertia of Area of Section)/Shear Force on Beam*Shear Stress in Beam+Inner Depth of I Section^2). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Outer Depth of I section?
Here are the different ways to Calculate Outer Depth of I section-
  • Outer Depth of I section=4*sqrt((2*Moment of Inertia of Area of Section)/Shear Force on Beam*Shear Stress in Beam+Distance from Neutral Axis^2)OpenImg
Can the Outer Depth of I section given Shear Stress in Lower Edge of Flange be negative?
No, the Outer Depth of I section given Shear Stress in Lower Edge of Flange, measured in Length cannot be negative.
Which unit is used to measure Outer Depth of I section given Shear Stress in Lower Edge of Flange?
Outer Depth of I section given Shear Stress in Lower Edge of Flange is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Outer Depth of I section given Shear Stress in Lower Edge of Flange can be measured.
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