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Relative Weight can be described as the weight on second steel upon the first steel. Check FAQs
W2/W1=Fy1Fy2
W2/W1 - Relative Weight?Fy1 - Yield Stress 1?Fy2 - Yield Stress 2?

Relative Weight for Designing Fabricated Plate Girders Example

With values
With units
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Here is how the Relative Weight for Designing Fabricated Plate Girders equation looks like with Values.

Here is how the Relative Weight for Designing Fabricated Plate Girders equation looks like with Units.

Here is how the Relative Weight for Designing Fabricated Plate Girders equation looks like.

0.9121Edit=104Edit125Edit
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Relative Weight for Designing Fabricated Plate Girders Solution

Follow our step by step solution on how to calculate Relative Weight for Designing Fabricated Plate Girders?

FIRST Step Consider the formula
W2/W1=Fy1Fy2
Next Step Substitute values of Variables
W2/W1=104N/m²125N/m²
Next Step Convert Units
W2/W1=104Pa125Pa
Next Step Prepare to Evaluate
W2/W1=104125
Next Step Evaluate
W2/W1=0.91214034007931
LAST Step Rounding Answer
W2/W1=0.9121

Relative Weight for Designing Fabricated Plate Girders Formula Elements

Variables
Functions
Relative Weight
Relative Weight can be described as the weight on second steel upon the first steel.
Symbol: W2/W1
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Yield Stress 1
Yield Stress 1 is a crucial material property that marks the transition from elastic behavior to plastic behavior.
Symbol: Fy1
Measurement: PressureUnit: N/m²
Note: Value can be positive or negative.
Yield Stress 2
Yield Stress 2 is a crucial material property that marks the transition from elastic behavior to plastic behavior.
Symbol: Fy2
Measurement: PressureUnit: N/m²
Note: Value can be positive or negative.
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 Relative Weight

​Go Relative Weight given Yield Stresses
W2/W1=(Fy1Fy2)23

Other formulas in Economical Structural Steel category

​Go Material Cost Ratio
C2/C1=(A2A1)(P2P1)
​Go Cross-Sectional Area1 given Material Cost Ratio
A1=A2P2C2/C1P1
​Go Cross-Sectional Area2 given Material Cost Ratio
A2=C2/C1A1P1P2
​Go Material Price p1 given Material Cost Ratio
P1=A2P2C2/C1A1

How to Evaluate Relative Weight for Designing Fabricated Plate Girders?

Relative Weight for Designing Fabricated Plate Girders evaluator uses Relative Weight = sqrt(Yield Stress 1/Yield Stress 2) to evaluate the Relative Weight, The Relative Weight for Designing Fabricated Plate Girders formula is defined as a numeric value that reflects the relative resource consumption and it is represented as W2/W1. Relative Weight is denoted by W2/W1 symbol.

How to evaluate Relative Weight for Designing Fabricated Plate Girders using this online evaluator? To use this online evaluator for Relative Weight for Designing Fabricated Plate Girders, enter Yield Stress 1 (Fy1) & Yield Stress 2 (Fy2) and hit the calculate button.

FAQs on Relative Weight for Designing Fabricated Plate Girders

What is the formula to find Relative Weight for Designing Fabricated Plate Girders?
The formula of Relative Weight for Designing Fabricated Plate Girders is expressed as Relative Weight = sqrt(Yield Stress 1/Yield Stress 2). Here is an example- 0.91214 = sqrt(104/125).
How to calculate Relative Weight for Designing Fabricated Plate Girders?
With Yield Stress 1 (Fy1) & Yield Stress 2 (Fy2) we can find Relative Weight for Designing Fabricated Plate Girders using the formula - Relative Weight = sqrt(Yield Stress 1/Yield Stress 2). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Relative Weight?
Here are the different ways to Calculate Relative Weight-
  • Relative Weight=(Yield Stress 1/Yield Stress 2)^(2/3)OpenImg
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