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  1. Diamagnetism - magnetic moment of filled shells of atoms. Induced moment opposes applied field. Paramagnetism - unfilled shells have a finite magnetic moment (orbital angular momentum) which aligns along the magnetic field direction.

  2. Calculation of Magnetic Moments. The resultant magnetic moment of any magnetic material (including free transition metal ions or their complexes) arises due to the orbital and spin motions of electrons and how these electrons interact with one another.

  3. The formula used to calculate the spin-only magnetic moment can be written in two forms; the first based on the number of unpaired electrons, n, and the second based on the electron spin quantum number, \(S\).

  4. We begin by answering the first question: the magnetic moment creates magnetic field lines (to The magnitude of the generated magnetic field B. is proportional to the size of the magnetic charge1. The direction of the magnetic moment determines the direction of the field lines.

  5. magnetic field the quantisation of angular momentum ensures that the component of the magnetic moment in the direction of the field may only take the values 1 zN2 μ=± μg. Calculate the energy of the proton in these two states if the field strength is 9.396 T.

  6. align its magnetic moment: (i) normal to the field direction, (ii) opposite to the field direction? (b) What is the torque on the magnet in cases (i) and (ii)?

  7. Magnetism: science of cooperative effects of orbital and spin moments in matter. Wide subject expanding over physics, chemistry, geophysics, life science. At fundamental level: Inspiring or verifying lots of model systems, especially in theory of phase transition and concept of symmetry breaking (ex. Ising model) Large variety of. behaviors:

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