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We believe that the knowledge of two important elements: (1) the magnetic field interplay between the radiative zone and the convective zone and (2) the role of the gravity waves, would allow to understand the origin of the grand minima and maxima observed during the last millennium.
The subtle interplay between magnetic and magnetoresistive properties, and structural features is found to be crucial to tailor the magnetic and transport properties of such CNWs.
Researchers working on a NASA mission to understand the interplay of magnetic fields and charged particles blown outward from the Sun have identified the trigger for the colorful electrical storms in the polar regions.
PAGE A14 WHY THE NORTHERN LIGHTS DANCE Researchers working on a NASA mission to understand the interplay of magnetic fields and charged particles blown outward from the sun have identified the trigger for the colorful electrical storms in the polar regions.
Comparing samples with strong (Ku ≈ 30 J/m3) and weak (Ku ≈ 3 J/m3) induced anisotropy Ku, we find significant differences in the magnetic microstructure, reflecting the interplay of the uniform, field induced and the random magneto-crystalline anisotropy.
Most of the literature is devoted to the interplay between magnetic and transport properties [1, 2].
As mentioned in Monteux et al. (2015), the presence of impact-induced molten material is key in recording the impact-influenced magnetic field, and the interplay between the cooling time of this material and the transient dynamo properties will ultimately dictate the nature of remnant magnetism.
Possible microstructural mechanisms, considering the interplay between stress and magnetic field favored martensite variants, magnetic domains and magnetization rotation, are proposed.
After increasing the input frequency to be higher than 3 Hz, the drag torque increases and its interplay with the magnetic torque results in wobbling regime.
In the process of spin-plasmon scattering on some configurations of electric or magnetic fields, we can expect interplay between spatial structure of these fields and that of the spin-plasmon.
Recent interest has focused more on Mn3+ because of the large magnetoresistive properties of materials such as (La,Sr MnO3 that result from an interplay between the magnetic and structural properties of Mn3+ and Mn4+.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com