🔌 Electrical Admittance & Solution Conductivity
Electrical Conductance Converter
Convert electrical conductance ($G = 1/R = I/V$) between Siemens ($\text{S}$), Mhos ($\mho$), Millisiemens ($\text{mS}$), and Microsiemens ($\mu\text{S}$).
💧 Deionized Water (0.055 µS)
🚰 Tap Water (350 µS)
🌊 Seawater (50 mS)
⚡ 10 mΩ Shunt (100 S)
Input Conductance
Standard Siemens (S)
0.0500 S
Mhos (℧)
0.0500 ℧
Microsiemens (µS)
50,000 µS
Resistance ($R$)
20.00 Ω
💡 Conductance & Resistance Relationship:
$$G = \frac{1}{R} \implies 1\text{ Siemens (S)} = 1\text{ Mho (\mho)} = 1\text{ }\Omega^{-1} = 1,000\text{ mS}$$
Understanding Electrical Conductance
Conductance ($G$) measures how easily an electric current flows through an element:
- Definition: $$G = \frac{1}{R} = \frac{I}{V}$$
- SI Unit: Siemens ($\text{S}$), named after Werner von Siemens ($1\text{ S} = 1\text{ A/V}$).
- Electrolyte Water Analysis: Conductivity meters report electrical conductance per unit length ($\mu\text{S/cm}$ or $\text{mS/m}$) to monitor Total Dissolved Solids (TDS).