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Conductance is defined as the degree to which an object conducts electricity, calculated as the ratio of the current which flows to the potential difference present. Check FAQs
G=Alρ
G - Conductance?A - Area of Conductor?l - Length of Conductor?ρ - Resistivity?

Conductance given Resistivity Example

With values
With units
Only example

Here is how the Conductance given Resistivity equation looks like with Values.

Here is how the Conductance given Resistivity equation looks like with Units.

Here is how the Conductance given Resistivity equation looks like.

0.0334Edit=91Edit15.55Edit0.0002Edit
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Conductance given Resistivity Solution

Follow our step by step solution on how to calculate Conductance given Resistivity?

FIRST Step Consider the formula
G=Alρ
Next Step Substitute values of Variables
G=91mm²15.55m0.0002Ω*m
Next Step Convert Units
G=9.1E-515.55m0.0002Ω*m
Next Step Prepare to Evaluate
G=9.1E-515.550.0002
Next Step Evaluate
G=0.0334405144694534S
LAST Step Rounding Answer
G=0.0334S

Conductance given Resistivity Formula Elements

Variables
Conductance
Conductance is defined as the degree to which an object conducts electricity, calculated as the ratio of the current which flows to the potential difference present.
Symbol: G
Measurement: Electric ConductanceUnit: S
Note: Value should be greater than 0.
Area of Conductor
Area of Conductor is the total cross-sectional area of the conductor carrying current.
Symbol: A
Measurement: AreaUnit: mm²
Note: Value should be greater than 0.
Length of Conductor
Length of Conductor is the total length of the conductor carrying current.
Symbol: l
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Resistivity
Resistivity is defined as a measure of the resisting power of a specified material to the flow of an electric current.
Symbol: ρ
Measurement: Electric ResistivityUnit: Ω*m
Note: Value should be greater than 0.

Other Formulas to find Conductance

​Go Conductance given Current
G=IV
​Go Conductance in DC Circuit
G=1R

Other formulas in DC Circuits category

​Go Voltage in DC Circuit
V=IR
​Go Maximum Power Transfer
Pm=Vth2RL(RL+Rth)2
​Go Star to Delta Transformation
Z1=ZA+ZB+(ZAZBZC)
​Go Delta to Star Transformation
ZA=Z1Z3Z1+Z2+Z3

How to Evaluate Conductance given Resistivity?

Conductance given Resistivity evaluator uses Conductance = Area of Conductor/(Length of Conductor*Resistivity) to evaluate the Conductance, The Conductance given Resistivity formula is defined as the degree to which an object conducts electricity, calculated as the ratio of the current which flows to the potential difference present. This is the reciprocal of the resistance, and is measured in siemens or mhos. Conductance is denoted by G symbol.

How to evaluate Conductance given Resistivity using this online evaluator? To use this online evaluator for Conductance given Resistivity, enter Area of Conductor (A), Length of Conductor (l) & Resistivity (ρ) and hit the calculate button.

FAQs on Conductance given Resistivity

What is the formula to find Conductance given Resistivity?
The formula of Conductance given Resistivity is expressed as Conductance = Area of Conductor/(Length of Conductor*Resistivity). Here is an example- 0.033441 = 9.1E-05/(15.55*0.000175).
How to calculate Conductance given Resistivity?
With Area of Conductor (A), Length of Conductor (l) & Resistivity (ρ) we can find Conductance given Resistivity using the formula - Conductance = Area of Conductor/(Length of Conductor*Resistivity).
What are the other ways to Calculate Conductance?
Here are the different ways to Calculate Conductance-
  • Conductance=Current/VoltageOpenImg
  • Conductance=1/ResistanceOpenImg
Can the Conductance given Resistivity be negative?
No, the Conductance given Resistivity, measured in Electric Conductance cannot be negative.
Which unit is used to measure Conductance given Resistivity?
Conductance given Resistivity is usually measured using the Siemens[S] for Electric Conductance. Megasiemens[S], Millisiemens[S], Mho[S] are the few other units in which Conductance given Resistivity can be measured.
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