2020
DOI: 10.1007/s11431-020-1550-1
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Magnetic levitation using diamagnetism: Mechanism, applications and prospects

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Cited by 22 publications
(8 citation statements)
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“…Moreover, the wide spacing of nanostructures is conducive to the C state. [119,138] Tuvshindorj et al [139] compared the compressive stability of single-scale and Cavities filled with water are marked with a star (★) (bottom). Reproduced with permission.…”
Section: Structure Levelmentioning
confidence: 99%
“…Moreover, the wide spacing of nanostructures is conducive to the C state. [119,138] Tuvshindorj et al [139] compared the compressive stability of single-scale and Cavities filled with water are marked with a star (★) (bottom). Reproduced with permission.…”
Section: Structure Levelmentioning
confidence: 99%
“…A strong magnetic field can be produced with different types of electromagnets such as superconducting, bitter, or hybrid [89,90]. Instead of using a ferromagnetic material coil to pass electric current, a superconducting magnet with coil cooled with liquid helium and almost zero electric resistance.…”
Section: Diamagnetic Levitationmentioning
confidence: 99%
“…A strong magnetic field can be produced with different types of electromagnets such as superconducting, bitter, or hybrid [ 90 , 91 ]. In a superconducting magnet, instead of using a ferromagnetic material coil to pass electric current, coil is cooled with liquid helium and has almost zero electric resistance.…”
Section: Lab-on-a-chip Technologies In Conventional Simulated Microgr...mentioning
confidence: 99%