Hall voltage across a conductor: V_H = IB / (n_e e d), where n_e is carrier density and d is thickness.
| Constant | Symbol | Value |
|---|---|---|
| Speed of light | c | 2.99792458×10⁸ |
| Planck's constant | h | 6.62607015×10⁻³‴ |
| Boltzmann constant | kʙ | 1.380649×10⁻²³ |
| Avogadro's number | Nₐ | 6.02214076×10²³ |
| Gravitational constant | G | 6.6743×10⁻¹¹ |
| Gas constant | R | 8.31446 |
| Elementary charge | e | 1.602176634×10⁻¹⁹ |
| Electron mass | mₑ | 9.1093837015×10⁻³¹ |
| Proton mass | mₚ | 1.67262192369×10⁻²⁷ |
| Fine-structure constant | α | 7.2973525693×10⁻³ |
Hall voltage across a conductor: V_H = IB / (n_e e d), where n_e is carrier density and d is thickness
Each component has a specific meaning:
Note: Interpret the hall voltage result against the clinical thresholds and context described above.
Enter the conductor: V_H = IB /, where n_e is carrier density, d is thickness for the patient or scenario you are assessing. Hall voltage across a conductor: V_H = IB / (n_e e d), where n_e is carrier density and d is thickness. Use the hall voltage result to inform your clinical assessment.