Hall Coefficient Calculator

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Electrons give a negative Hall coefficient; holes give a positive one. The magnitude is the same either way.
Choose which quantity to solve for; all other fields are treated as inputs.
The transverse voltage measured across the sample width.
mV
Thickness of the Hall bar in the direction parallel to the magnetic field.
mm
The longitudinal current driven through the sample.
mA
The magnetic flux density applied perpendicular to the sample plane.
T
Hall coefficientModerately doped semiconductor
0.000156m3/C

RH = VH * t / (I * B)

Signed RH-0.000156m3/C
Carrier concentration39,945,658,076,548,890cm-3
Hall coefficient |RH| (m3/C)0.000156
Hall angle (deg)-

Hall coefficient: 1.563e-4 m3/C (electrons (n-type))

  • Carrier concentration is approximately 3.995e+16 cm-3, consistent with a moderately doped semiconductor.
  • The dominant charge carriers are electrons (n-type): the negative Hall coefficient sign confirms this.

Next stepAdd the electrical conductivity to unlock mobility, resistivity, and Hall angle in the mobility solve mode.

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