Answer:
Step 1:
Measure and record the resistance of the material by using an ohm-meter.
Step 2:
Measure and record the length of the material.
Step 3:
Measure and record the area of the material.
Step 4:
Calculate the conductivity of the material by using the formula given below
![$ \sigma = (l)/(R \cdot A) $](https://img.qammunity.org/2021/formulas/engineering/college/md0o8ufq08d9if4uvr6hfdlz8gie592th0.png)
Step-by-step explanation:
Electrical Conductivity:
Electrical conductivity is a measure of how well a material can carry current.
For example:
Copper material has high conductivity whereas plastic has poor conductivity.
The opposite property of conductivity is called resistivity.
Electrical Conductivity Test:
The electrical conductivity of a material can be found by
![$ \sigma = (l)/(R \cdot A) $](https://img.qammunity.org/2021/formulas/engineering/college/md0o8ufq08d9if4uvr6hfdlz8gie592th0.png)
Where R is the resistance of the material, A is the area of material and l is the length of material to be tested.
Step 1:
Measure and record the resistance of the material by using an ohm-meter.
An ohm-meter measure the resistance according to the Ohm's law
![$ R = (V)/(I) $](https://img.qammunity.org/2021/formulas/engineering/college/e5g52s02em4bogb2tbbcjuk5lbgb9ojnse.png)
Step 2:
Measure and record the length of the material.
Step 3:
Measure and record the area of the material.
Step 4:
Calculate the conductivity of the material by using the formula given below
![$ \sigma = (l)/(R \cdot A) $](https://img.qammunity.org/2021/formulas/engineering/college/md0o8ufq08d9if4uvr6hfdlz8gie592th0.png)
Therefore, this is how we can find the conductivity of the material.