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Titlebook: Magnetic Microhydrodynamics; An Emerging Research Bernard Doudin,Michael Coey,Andrejs Cēbers Book‘‘‘‘‘‘‘‘ 2024 The Editor(s) (if applicable

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Magnetic Action at a Distance: Fields, Gradients and Currents in Fluids densities, the Kelvin force in a magnetic field gradient and the Lorentz force in magnetohydrodynamics is discussed. The focus lies on incompressible fluids that are enclosed by solid walls such as are prevalent in microfluidic systems. These are only influenced by rotational body forces.
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Phenomenological Models of Magnetizable Fluidss for the energy of the magnetic field and the fluid medium, the momentum and the mass of the fluid medium. A particular choice of the electromagnetic energy flux and stress due to the magnetic field together with the Gibbs relation for the internal energy yields an unambiguous relation for the entr
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The Synchronous to Exchange Transition in Magnetically Driven Colloidal Dimerslates. The particles are subjected to an external precessing field and, depending on the field frequency and cell thickness, they can assemble into rotating dimers, up and down binary crystals or dynamic states characterized by particle exchange between nearest dimers. We characterize the transition
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Influence of Magnetic Field on Water and Aqueous Solutions levitation require a large magnetic field gradient force, and very large inhomogeneous fields. The weak effects on surface tension are best observed in compensated zero-susceptibility solutions of paramagnetic ions. Much larger effects of magnetic field on evaporation rate, in the range 10–100% may
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Influence of Large Magnetic Field Gradients at the Electrochemical Interfaceternal applied field and the stray field generated by a Co/Pt multilayer thin film stack with preferred perpendicular magnetization. The Lorentz force, proportional to ., creates gentle bath stirring. The magnetic field gradient force, proportional to grad ., is enhanced by the size reduction provid
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