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Outer Radius Disc is the radius of the larger of the two concentric circles that form its boundary. Check FAQs
router=8σrρ(ω2)(3+𝛎)
router - Outer Radius Disc?σr - Radial Stress?ρ - Density Of Disc?ω - Angular Velocity?𝛎 - Poisson's Ratio?

Outer radius of disc given Radial stress at center of solid disc Example

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With units
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Here is how the Outer radius of disc given Radial stress at center of solid disc equation looks like with Values.

Here is how the Outer radius of disc given Radial stress at center of solid disc equation looks like with Units.

Here is how the Outer radius of disc given Radial stress at center of solid disc equation looks like.

983.0034Edit=8100Edit2Edit(11.2Edit2)(3+0.3Edit)
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Outer radius of disc given Radial stress at center of solid disc Solution

Follow our step by step solution on how to calculate Outer radius of disc given Radial stress at center of solid disc?

FIRST Step Consider the formula
router=8σrρ(ω2)(3+𝛎)
Next Step Substitute values of Variables
router=8100N/m²2kg/m³(11.2rad/s2)(3+0.3)
Next Step Convert Units
router=8100Pa2kg/m³(11.2rad/s2)(3+0.3)
Next Step Prepare to Evaluate
router=81002(11.22)(3+0.3)
Next Step Evaluate
router=0.983003361719965m
Next Step Convert to Output's Unit
router=983.003361719965mm
LAST Step Rounding Answer
router=983.0034mm

Outer radius of disc given Radial stress at center of solid disc Formula Elements

Variables
Functions
Outer Radius Disc
Outer Radius Disc is the radius of the larger of the two concentric circles that form its boundary.
Symbol: router
Measurement: LengthUnit: mm
Note: Value can be positive or negative.
Radial Stress
Radial Stress induced by a bending moment in a member of constant cross section.
Symbol: σr
Measurement: PressureUnit: N/m²
Note: Value should be greater than 0.
Density Of Disc
Density Of Disc shows the denseness of disc in a specific given area. This is taken as mass per unit volume of a given disc.
Symbol: ρ
Measurement: DensityUnit: kg/m³
Note: Value should be greater than 0.
Angular Velocity
The Angular Velocity refers to how fast an object rotates or revolves relative to another point, i.e. how fast the angular position or orientation of an object changes with time.
Symbol: ω
Measurement: Angular VelocityUnit: rad/s
Note: Value should be greater than 0.
Poisson's Ratio
Poisson's Ratio is defined as the ratio of the lateral and axial strain. For many metals and alloys, values of Poisson’s ratio range between 0.1 and 0.5.
Symbol: 𝛎
Measurement: NAUnit: Unitless
Note: Value should be between -1 to 10.
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 Radius Disc

​Go Disc outer radius given Radial stress in solid disc
router=(8σrρ(ω2)(3+𝛎))+(r2)
​Go Outer radius of disc given Circumferential stress
router=8σc(ρ(ω2))((1+(3𝛎)r2))3+𝛎
​Go Outer radius of disc given Constant at boundary condition for circular disc
router=8C1ρ(ω2)(3+𝛎)
​Go Outer radius of disc given max circumferential stress in solid disc
router=8σcρ(ω2)(3+𝛎)

Other formulas in Radius of Disc category

​Go Radius of disc given Circumferential stress in solid disc
rdisc=((C12)-σc)8ρ(ω2)((3𝛎)+1)
​Go Radius of Circular disc given Radial stress in solid disc
rdisc=((C12)-σr)8ρ(ω2)(3+𝛎)

How to Evaluate Outer radius of disc given Radial stress at center of solid disc?

Outer radius of disc given Radial stress at center of solid disc evaluator uses Outer Radius Disc = sqrt((8*Radial Stress)/(Density Of Disc*(Angular Velocity^2)*(3+Poisson's Ratio))) to evaluate the Outer Radius Disc, The Outer radius of disc given Radial stress at center of solid disc formula is defined as a line segment extending from the center of a circle or sphere to the circumference or bounding surface. Outer Radius Disc is denoted by router symbol.

How to evaluate Outer radius of disc given Radial stress at center of solid disc using this online evaluator? To use this online evaluator for Outer radius of disc given Radial stress at center of solid disc, enter Radial Stress r), Density Of Disc (ρ), Angular Velocity (ω) & Poisson's Ratio (𝛎) and hit the calculate button.

FAQs on Outer radius of disc given Radial stress at center of solid disc

What is the formula to find Outer radius of disc given Radial stress at center of solid disc?
The formula of Outer radius of disc given Radial stress at center of solid disc is expressed as Outer Radius Disc = sqrt((8*Radial Stress)/(Density Of Disc*(Angular Velocity^2)*(3+Poisson's Ratio))). Here is an example- 983003.4 = sqrt((8*100)/(2*(11.2^2)*(3+0.3))).
How to calculate Outer radius of disc given Radial stress at center of solid disc?
With Radial Stress r), Density Of Disc (ρ), Angular Velocity (ω) & Poisson's Ratio (𝛎) we can find Outer radius of disc given Radial stress at center of solid disc using the formula - Outer Radius Disc = sqrt((8*Radial Stress)/(Density Of Disc*(Angular Velocity^2)*(3+Poisson's Ratio))). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Outer Radius Disc?
Here are the different ways to Calculate Outer Radius Disc-
  • Outer Radius Disc=sqrt(((8*Radial Stress)/(Density Of Disc*(Angular Velocity^2)*(3+Poisson's Ratio)))+(Radius of Element^2))OpenImg
  • Outer Radius Disc=sqrt(((8*Circumferential Stress)/((Density Of Disc*(Angular Velocity^2))*((1+(3*Poisson's Ratio)*Radius of Element^2))))/(3+Poisson's Ratio))OpenImg
  • Outer Radius Disc=sqrt((8*Constant at boundary condition)/(Density Of Disc*(Angular Velocity^2)*(3+Poisson's Ratio)))OpenImg
Can the Outer radius of disc given Radial stress at center of solid disc be negative?
Yes, the Outer radius of disc given Radial stress at center of solid disc, measured in Length can be negative.
Which unit is used to measure Outer radius of disc given Radial stress at center of solid disc?
Outer radius of disc given Radial stress at center of solid disc is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Outer radius of disc given Radial stress at center of solid disc can be measured.
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