Microsiemens to Quantized Hall Conductance Conversion

Convert between Microsiemens and Quantized Hall Conductance quickly and accurately.

µS
e²/h

How to Convert Microsiemens to Quantized Hall Conductance

Conversion Formula

1 µS = 0.026 e²/h
1 e²/h = 38.741 µS

Example

Convert 15 µS to e²/h:

15 µS = 15 × 0.026 e²/h = 0.387 e²/h

Unit Information

Learn about the electric conductance units you're converting between

Microsiemens

µS

Definition

A metric unit of electric conductance equal to one millionth of a siemens. Used for measuring low conductance values in electronics, water quality testing, and semiconductor applications.

History/Origin

Derived from the siemens unit with the micro prefix, representing 10^-6 siemens. Widely used in electronics, water quality analysis, and semiconductor research for measuring low conductance values.

Current Use

Extensively used in water quality testing, electronics, and semiconductor manufacturing for measuring low conductance values. Essential for characterizing semiconductor materials and water conductivity measurements.

Multiplier

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Offset

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Quantized Hall Conductance

e²/h

Definition

A fundamental unit of electric conductance based on quantum mechanics, equal to approximately 3.87405E-5 siemens. Used in quantum Hall effect measurements and fundamental physics research.

History/Origin

Derived from the quantum Hall effect discovered by Klaus von Klitzing in 1980. The quantized Hall conductance represents a fundamental constant in quantum mechanics and is used in precision electrical measurements.

Current Use

Used in fundamental physics research, quantum Hall effect studies, and precision electrical measurements. Essential for defining the ohm in terms of fundamental physical constants and quantum mechanical principles.

Multiplier

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Offset

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Microsiemens to Quantized Hall Conductance Conversion Table

Microsiemens [µS] Quantized Hall Conductance [e²/h]
1 µS 0.025813 e²/h
10 µS 0.258128 e²/h
25 µS 0.645319 e²/h
50 µS 1.290639 e²/h
100 µS 2.581278 e²/h
0 µS 0E+0 e²/h
-10 µS -0.258128 e²/h
-40 µS -1.032511 e²/h