Assertion (A): All atoms have a net magnetic moment.
Reason (R): A current loop does not always behave as a magnetic dipole.
Assertion (A): All atoms have a net magnetic moment.
Reason (R): A current loop does not always behave as a magnetic dipole.
Options
Correct option: (D) — Both Assertion (A) and Reason (R) are false.
Why A is false: Not every atom has a net magnetic moment. In diamagnetic atoms (e.g. He, Ne, N₂, Cu⁺) the electrons are paired so their orbital and spin magnetic moments cancel, giving a zero net atomic moment.
Why R is false: A current loop always behaves as a magnetic dipole of moment ; the field of a small loop at distant points is exactly that of a magnetic dipole.
Marking Scheme
- 11 mark: correct option (D).
- 2Full credit requires only the letter; reasoning not demanded for a 1-mark A-R item but both statements must be judged false.
Hint
Think diamagnetic atoms (paired electrons → zero moment) and recall for any loop.
Quick Oral Answer
Both statements are false: diamagnetic atoms have zero net moment because their electron moments pair off, and a current loop always acts as a magnetic dipole with moment m equal to N times I times A.
Analysis & Explanation
Concept:
An atom's magnetism arises from electron orbital motion and electron spin. Whether an atom has a net moment depends on how these individual moments add up.
Assertion analysis:
- In diamagnetic substances the electronic moments are fully paired and cancel, so the net atomic moment is zero.
- Only paramagnetic and ferromagnetic atoms carry a permanent net moment.
- Hence "all atoms have a net magnetic moment" is false.
Reason analysis:
- A planar current loop is the fundamental magnetic dipole; its dipole moment is and its far-field is a pure dipole field.
- So "a current loop does not always behave as a magnetic dipole" is also false.
Exam trap:
Students often mark A true because "electrons revolve, so there must be a moment." Revolution creates moments, but paired electrons make them cancel.
Real-world:
Diamagnetism (net-zero atomic moment) is why water and graphite are weakly repelled by strong magnets — the basis of frog-levitation demonstrations.
Common Mistakes
- 1Assuming every atom is magnetic because electrons orbit — paired electrons cancel, giving zero net moment in diamagnetic atoms.
- 2Believing a current loop only 'sometimes' acts as a dipole; a small current loop is the archetypal magnetic dipole with .
- 3Choosing option (C) by treating the assertion as true.
Interesting Facts
A single Bohr magneton, , is the natural unit of atomic magnetic moment.
Diamagnetism is universal — present in every material — but is so weak it is masked whenever para- or ferromagnetism exists.
In 1997 physicists at Nijmegen levitated a live frog in a 16 T field purely because of the diamagnetism of its body water.
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Frequently Asked Questions
Why don't diamagnetic atoms have a net magnetic moment?
Their electrons occupy fully filled orbitals in spin-paired pairs, so every orbital and spin magnetic moment is cancelled by an equal and opposite one, leaving zero net atomic moment.
Does a current loop always behave as a magnetic dipole?
Yes. A current-carrying loop has a magnetic dipole moment , and at points far from the loop its magnetic field is exactly that of a dipole, so the Reason statement is false.
Why is the answer D and not C?
Option C would require the Assertion to be true, but it is false because diamagnetic atoms carry no net moment; since both statements are false, D is correct.