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- The residual magnetization of the core can be removed by degaussing.
- As the temperature increases, more and more spins deviate randomly from the alignment, increasing the internal energy and reducing the net magnetization.
- He instead looked for the opposite effect, that is, that spinning a ferromagnet could change its magnetization.
- When this point is reached, the magnetization cannot increase as there are no more moments to align.
- This means that the whole system is such a cluster, and there is no global magnetization.
- The anisotropy energy favors magnetic configurations where the magnetization is everywhere aligned along an easy axis.
- It can be compared to magnetization, which is the measure of the corresponding response of a material to a magnetic field in magnetism.
- In this material a light induced magnetization melting was also demonstrate.
- At finite temperature, there is a finite probability for the magnetization to flip and reverse its direction.
- Changing the direction of the external magnetic field deflects the magnetization in the sensing layer.
- In a more careful treatment, the average magnetization is zero.
- In the sensing layer, magnetization can be reoriented by the external magnetic field; it is typically made of NiFe or cobalt alloys.
- To this end we need to calculate the first order correction to the magnetization due to the fluctuations.
- The exchange energy tends to favor configurations where the magnetization varies only slowly across the sample.
- A narrower gap would give a higher frequency limit but also weaker magnetization.
- Iron can have a magnetization of around a million amperes per meter.
- This degaussing field is strong enough to remove shadow mask magnetization in most cases, maintaining color purity.
- This compensation point is a crucial point for achieving high speed magnetization reversal in magnetic memory devices.