Permeability (electromagnetism)

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In electromagnetism, permeability is the degree of magnetisation of a material that responds linearly to a magnetic field. Magnetic permeability is represented by the symbol μ. In September of 1885, Oliver Heaviside coined this term.

In SI units, permeability is measured in henrys per metre. The constant value <math>\mu_0 \,<math> is known as the magnetic constant, or by the older term permeability of a vacuum (absolute permeability below).

Permeability in linear materials owes its existence to the approximation:
<math> \mathbf{M}=\chi_m\mathbf{H}<math>
Where <math>\chi_m \,<math> is a dimensionless scalar called the magnetic susceptibility.
According to the definition of the auxiliary field, <math>\mathbf{H}<math>

<math>\mathbf{B}=\mu_0 (\mathbf{H}+\mathbf{M})=\mu_0 (1 + \chi_m)\mathbf{H}<math>

<math>\mu=\mu_0(1+ \chi_m) \,<math>
Thus <math>\mu = \frac {B} {H} \,<math>

where

μ is the permeability, measured in henrys per metre

B is the magnetic flux density (also called the magnetic induction) in the material, measured in teslas

H is the magnetic field strength, measured in amperes per metre


Contents

Absolute permeability

Absolute permeability (the magnetic constant) is represented by the symbol μ0 and is the permeability of the vacuum, where μ0 = 4π×10−7 N A−2 (exactly).

The permittivity of free space (the electric constant) and the magnetic constant are related to the speed of light (c) by the formula <math>\varepsilon_0\mu_0 = \frac{1}{c^2}<math>

Relative permeability

Relative permeability, sometimes denoted by the symbol μr, is the ratio of the permeability of a specific medium to the permeability of free space μ0:

<math>\mu_{r} = \frac{\mu}{\mu_{0}} <math>

Magnetic susceptability

Magnetic susceptibility is defined as:

<math>\chi_m = \mu_r - 1 \,<math>

(see magnetic susceptibility)

Some values for magnetic permeability and magnetic susceptability

Magnetic permeability & susceptibility for some materials
Medium <math>\chi_m = \mu_r - 1 \,<math> <math> \mu \,<math>
Hydrogen 0.008 × 10-6 1.2566371 µN/A2
Copper −6.4 × 10-6 1.2566290 µN/A2
Water −8.0 × 10-6 1.2566270 µN/A2
Aluminum 22.2 × 10-6 1.2566650 µN/A2
Platinum 265 × 10-6 1.2569701 µN/A2

SI magnetism units

SI electromagnetism units

edit  (http://wikipedia.cas.ilstu.edu/index.php?title=Template:SI_electromagnetism_units&action=edit)

Name Symbol Dimensions Quantity
ampere (SI base unit) A A Current
coulomb C A新 Electric charge, Quantity of electricity
volt V J/C = kg搶2−3−1 Potential difference
ohm Ω V/A = kg搶2−3−2 Resistance, Impedance, Reactance
ohm metre Ω搶 kg搶3−3−2 Resistivity
watt W V嫂 = kg搶2−3 Electrical power
farad F C/V = kg−1−224 Capacitance
farad per metre F/m kg−1−324 Permittivity
reciprocal farad F−1 kg12−2−4 Elastance
siemens S Ω−1 = kg−1−232 Conductance, Admittance, Susceptance
siemens per metre S/m kg−1−332 Conductivity
weber Wb V新 = kg搶2−2−1 Magnetic flux
tesla T Wb/m2 = kg新−2−1 Magnetic flux density
ampere per metre A/m m−1 magnetic induction
ampere-turns per weber A/Wb kg−1−222 Reluctance
henry H Wb/A = V新/A = kg搶2−2−2 Inductance
henry per metre H/m kg搶−2−2 Permeability
(dimensionless) χ - Magnetic susceptibility
ca:Permeabilitat

de:Permeabilit酹 (Magnetismus) nl:Magnetische permeabiliteit ja:透磁率 pl:Przenikalność magnetyczna sl:Magnetna permeabilnost

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