gage-invariant - meaning and definition. What is gage-invariant
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What (who) is gage-invariant - definition

UNIT IN PHYSICS
Gage factor; Gage Factor

Invariant (physics)         
IN MATHEMATICS AND THEORETICAL PHYSICS, PROPERTY OF A SYSTEM WHICH REMAINS UNCHANGED UNDER SOME TRANSFORMATION
Invariance (physics); Invariant quantity
In theoretical physics, an invariant is an observable of a physical system which remains unchanged under some transformation. Invariance, as a broader term, also applies to the no change of form of physical laws under a transformation, and is closer in scope to the mathematical definition.
Invariant (mathematics)         
  • operation]] denoted by <math>\circ</math> is the [[function composition]].
PROPERTY OF MATHEMATICAL OBJECTS THAT REMAINS UNCHANGED FOR TRANSFORMATIONS APPLIED TO THE OBJECTS
Invariant (computer science); Invariance (mathematics); Coordinate system invariant; Invariant set; Coordinate invariance; Coordinate system invariance; Programming invariant
In mathematics, an invariant is a property of a mathematical object (or a class of mathematical objects) which remains unchanged after operations or transformations of a certain type are applied to the objects. The particular class of objects and type of transformations are usually indicated by the context in which the term is used.
Gage, New Mexico         
AMERICAN GHOST TOWN
Gage (New Mexico)
Gage is a former town in western Luna County, New Mexico, United States. It is found on Interstate 10/U.

Wikipedia

Gauge factor

Gauge factor (GF) or strain factor of a strain gauge is the ratio of relative change in electrical resistance R, to the mechanical strain ε. The gauge factor is defined as:

G F = Δ R / R Δ L / L = Δ R / R ε = 1 + 2 ν + Δ ρ / ρ ε {\displaystyle GF={\frac {\Delta R/R}{\Delta L/L}}={\frac {\Delta R/R}{\varepsilon }}=1+2\nu +{\frac {\Delta \rho /\rho }{\varepsilon }}}

where

  • ε = strain = Δ L / L 0 {\displaystyle \Delta L/L_{0}}
    • Δ L {\displaystyle \Delta L} = absolute change in length
    • L 0 {\displaystyle L_{0}} = original length
  • ν = Poisson's ratio
  • ρ = resistivity
  • ΔR = change in strain gauge resistance due axial strain and lateral strain
  • R = unstrained resistance of strain gauge