Q.What is magnetic susceptibility?
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Magnetic Susceptibility: The Material's Response to a Magnetic Field
Imagine you place a bar of iron near a magnet. The iron gets magnetized — it becomes a magnet itself. Now imagine you place a piece of wood or copper near the same magnet. Nothing noticeable happens. But something is happening at the atomic level, just much more weakly. Magnetic susceptibility is the number that tells you how much a material magnetizes when you put it in a magnetic field.
The Intuition: A Material's "Magnetic Willingness"
Think of a magnetic field as a push. Some materials push back, some barely respond, and some eagerly align with the push. Susceptibility χ (chi) is the measure of that eagerness.
If you apply a magnetic field H (the "push"), the material develops a magnetization M (the "response"). The relationship is simple:
M=χH
So χ=M/H. A large χ means a small field produces a large magnetization. A zero χ means the material ignores the field entirely. A negative χ means the material magnetizes opposite to the field.
The Precise Definition
Magnetic susceptibility is the dimensionless proportionality constant that relates the magnetization M (magnetic dipole moment per unit volume) to the applied magnetic field intensity H:
χ=HM
- M is measured in A/m (amperes per meter)
- H is also in A/m
- So χ has no units — it's a pure number
This is the volume susceptibility. There is also mass susceptibility (χm=χ/ρ, where ρ is density) and molar susceptibility (χmol=χMmol/ρ), but the core idea is the same.
What the Sign and Size Tell You
The value of χ divides all materials into three broad families:
| Type | χ value | Example | What happens inside |
|---|---|---|---|
| Diamagnetic | Small and negative (≈−10−5) | Copper, water, bismuth | Induced currents oppose the field; magnetization is opposite to H |
| Paramagnetic | Small and positive (≈10−3 to 10−5) | Aluminum, oxygen gas | Atomic magnetic moments partially align with H |
| Ferromagnetic | Large and positive (≈103 to 105) | Iron, nickel, cobalt | Domains of aligned moments lock into the field direction |
For ferromagnets, the simple M=χH relation breaks down — χ is not constant. It depends on H and on the history of the material (hysteresis). The definition χ=M/H still holds, but it's a local slope, not a fixed property.
Why Diamagnets Are Negative
Every atom has orbiting electrons. When you apply a magnetic field, those orbits change slightly to produce a tiny magnetic moment that opposes the applied field (Lenz's law at the atomic scale). This happens in all materials, but in diamagnets it's the only effect because the atoms have no permanent magnetic moment. The result is a small negative χ.
Why Paramagnets Are Positive …
Magnetic susceptibility is the ratio of intensity of magnetisation to the magnetising field that produced it -- a measure of how easily a material …
Step 1. Magnetic susceptibility measures how strongly a material responds to an applied magnetising field. …
- Confusing susceptibility (dimensionless) with permeability (whi …
- CBSE 2025Set ANNUAL1 markMCQQ.If a material having intensity of magnetisation 500 Am−1 is placed in a magnetising field of 1000 Am−1, then the susceptibility of the material is :(a) 0.2(b) 0.8(c) 0.7(d) 0.5
›Reveal solutionSolution
Susceptibility is the ratio of intensity of magnetisation to the magnetising field, χm=I/H=500/1000=0.5.
Working
Magnetic susceptibility is defined as
χm=HI
where I is the intensity of magnetisation induced and H is the applied magnetising field.
…
- CBSE 2024Set ANNUAL1 markMCQQ.The relation between magnetic susceptibility χ and relative permeability μr of a magnetic material is :(a) μr = 1 + χ(b) μr = 1 + χ²(c) μr = 1 / χ(d) μr = 1 – χ²
›Reveal solutionSolution
Relative permeability and magnetic susceptibility are related by the simple additive formula μr = 1 + χ.
When a magnetic material is placed in an external field H, the resulting magnetisation is M = χH (χ = magnetic susceptibility).
…
- CBSE 2021Set A1 markMCQQ.The value of magnetic susceptibility of vacuum is (A) equal to 0.5 (B) infinite (C) equal to one (D) zero
›Reveal solutionSolution
Magnetic susceptibility of vacuum χ = 0.
Magnetic susceptibility χ measures how much a material becomes magnetised (M) in response to a magnetising field (H): M = χH. A vacuum contains no magnetic dipoles to align, so it cannot be magnetised and M = 0, givin …
- CBSE 2019Set ANNUAL1 markQ.What is magnetic susceptibility?
›Reveal solutionSolution
Magnetic susceptibility χ=M/H tells how strongly a material gets magnetised in response to an applied magnetising field.
Concept. When a magnetic material is placed in a magnetising field of intensity H, it develops an intensity of magnetisation M.
Definition.
χ=HM …
- CBSE 2018Set ANNUAL1 markMCQQ.Magnetic susceptibility of platinum is 0.0001. Its relative permeability is.(a) 1.0000(b) 0.9999(c) 1.0001(d) 0.
›Reveal solutionSolution
Relative permeability and magnetic susceptibility are related by mu_r = 1 + chi; platinum, being paramagnetic, has chi slightly positive.
For a magnetic material, the magnetic susceptibility chi measures how strongly it magnetises in response to an applied field (M = chi * H), and the relative permeability mu_r tells us how much the material enhances the field compared to vacuum (B = mu_r * mu0 * H). The two are related by:
mu_r = 1 + chi.
…
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