Rudrani Tidke
Cummins College of Engineering for Women (CCEW), Pune
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Kethavath Srinath
Osmania University (OU), Hyderabad
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11 Other formulas that you can solve using the same Inputs

Surface Area of a Rectangular Prism
Surface Area=2*(Length*Width+Length*Height+Width*Height) GO
Perimeter of a rectangle when diagonal and length are given
Perimeter=2*(Length+sqrt((Diagonal)^2-(Length)^2)) GO
Magnetic Flux
Magnetic Flux=Magnetic Field*Length*Breadth*cos(θ) GO
Diagonal of a Rectangle when length and area are given
Diagonal=sqrt(((Area)^2/(Length)^2)+(Length)^2) GO
Area of a Rectangle when length and diagonal are given
Area=Length*(sqrt((Diagonal)^2-(Length)^2)) GO
Diagonal of a Rectangle when length and breadth are given
Diagonal=sqrt(Length^2+Breadth^2) GO
Strain
Strain=Change In Length/Length GO
Surface Tension
Surface Tension=Force/Length GO
Perimeter of a rectangle when length and width are given
Perimeter=2*Length+2*Width GO
Volume of a Rectangular Prism
Volume=Width*Height*Length GO
Area of a Rectangle when length and breadth are given
Area=Length*Breadth GO

2 Other formulas that calculate the same Output

Ultimate Load per Area for Cast Iron Columns
Ultimate stress=34000-88*(Length/Radius of gyration) GO
Ultimate Load per Area for Aluminium Columns
Ultimate stress=34000-88*(Length/Radius of gyration) GO

Ultimate Load per Area for Aluminium Columns Formula

Ultimate stress=34000-88*(Length/Radius of gyration)
U=34000-88*(l/k<sub>G</sub>)
More formulas
Critical Slenderness Ratio for Cast Iron Columns GO
Ultimate Load per Area for Cast Iron Columns GO
Ultimate Load per Area for Aluminium Columns GO
Critical Slenderness Ratio for Aluminium Columns GO

What is the difference between ultimate load and allowable load?

Under the Allowable Stress Design (ASD) method, the allowable load is based on the application of a safety factor to the mean result of laboratory testing to failure (ultimate load), regardless of the controlling failure mode observed in the tests.

How to Calculate Ultimate Load per Area for Aluminium Columns?

Ultimate Load per Area for Aluminium Columns calculator uses Ultimate stress=34000-88*(Length/Radius of gyration) to calculate the Ultimate stress, The Ultimate Load per Area for Aluminium Columns formula is defined as the Limit Load multiplied by a prescribed Safety Factor per unit cross sectional area for Aluminium Columns. Ultimate stress and is denoted by U symbol.

How to calculate Ultimate Load per Area for Aluminium Columns using this online calculator? To use this online calculator for Ultimate Load per Area for Aluminium Columns, enter Length (l) and Radius of gyration (kG) and hit the calculate button. Here is how the Ultimate Load per Area for Aluminium Columns calculation can be explained with given input values -> 3458.062 = 34000-88*(3/3).

FAQ

What is Ultimate Load per Area for Aluminium Columns?
The Ultimate Load per Area for Aluminium Columns formula is defined as the Limit Load multiplied by a prescribed Safety Factor per unit cross sectional area for Aluminium Columns and is represented as U=34000-88*(l/kG) or Ultimate stress=34000-88*(Length/Radius of gyration). Length is the measurement or extent of something from end to end and Radius of gyration or gyradius of a body about an axis of rotation is defined as the radial distance to a point which would have a moment of inertia the same as the body's actual distribution of mass, if the total mass of the body were concentrated there.
How to calculate Ultimate Load per Area for Aluminium Columns?
The Ultimate Load per Area for Aluminium Columns formula is defined as the Limit Load multiplied by a prescribed Safety Factor per unit cross sectional area for Aluminium Columns is calculated using Ultimate stress=34000-88*(Length/Radius of gyration). To calculate Ultimate Load per Area for Aluminium Columns, you need Length (l) and Radius of gyration (kG). With our tool, you need to enter the respective value for Length and Radius of gyration and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Ultimate stress?
In this formula, Ultimate stress uses Length and Radius of gyration. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Ultimate stress=34000-88*(Length/Radius of gyration)
  • Ultimate stress=34000-88*(Length/Radius of gyration)
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