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Magnetic property of ordinary materials
Look up diamagnetism in Wiktionary, the free dictionary. Diamagnetism is a form of magnetic response in materials that describes the property being repelled
Diamagnetism
Expulsion of a magnetic field from a superconductor
perfect diamagnetism. Unlike normal diamagnetism, which stems from electron orbital motion in the bulk of the material, superconducting diamagnetism arises
Meissner_effect
English chemist and physicist (1791–1867)
discoveries include the principles underlying electromagnetic induction, diamagnetism, and electrolysis. Although Faraday received little formal education
Michael_Faraday
Class of physical phenomena
motion makes it more difficult for the electrons to maintain alignment. Diamagnetism appears in all materials and is the tendency of a material to oppose
Magnetism
Degree to which a material becomes magnetized in an applied magnetic field
called paramagnetism, or an alignment against the field, χ < 0, called diamagnetism. Magnetic susceptibility indicates whether a material is attracted into
Magnetic_susceptibility
Chemical compound of hydrogen and oxygen
2020. Retrieved 23 April 2020. Chen Z (21 April 2010). "Measurement of Diamagnetism in Water". hdl:11299/90865. Archived from the original on 8 January 2022
Water
Soviet theoretical physicist (1908–1968)
mechanics (alongside John von Neumann), the quantum mechanical theory of diamagnetism, the theory of superfluidity, the theory of second-order phase transitions
Lev_Landau
Ability of magnetization
external field. Diamagnets are materials with a magnetic permeability less than μ0 (a relative permeability less than 1). Consequently, diamagnetism is a form
Permeability (electromagnetism)
Permeability_(electromagnetism)
Proposed superconducting material
to as "partial levitation" over a magnet. This is a sign of regular diamagnetism or ferromagnetism, however it was misinterpreted by some as a sign of
LK-99
Irish physicist (1820–1893)
physicist. His scientific fame arose in the 1850s from his study of diamagnetism. Later he made discoveries in the realms of infrared radiation and the
John_Tyndall
Chemical element with atomic number 47 (Ag)
Immergut (1992). Encyclopedia of applied physics. Vol. 4: Combustion to Diamagnetism. VCH Publishers. pp. 267–72. ISBN 978-3-527-28126-8. Retrieved 2 May
Silver
Magnetic property
(Curie's law) and diamagnetism, Van Vleck discovered an additional paramagnetic contribution of the same order as Langevin's diamagnetism. Van Vleck contribution
Van_Vleck_paramagnetism
Mechanism by which materials form into and are attracted to magnets
to magnetic fields by three other types of magnetism—paramagnetism, diamagnetism, and antiferromagnetism—but the forces are usually so weak that they
Ferromagnetism
Study of magnetic properties in rocks
temperature. A substance whose only magnetic response is diamagnetism is called a diamagnet. Paramagnetism is a weak positive response to a magnetic field
Rock_magnetism
Suspension of objects by magnetic force
magnetic levitation: permanent magnets, electromagnets, ferromagnetism, diamagnetism, superconducting magnets, and magnetism due to induced currents in conductors
Magnetic_levitation
French physicist (1872–1946)
his death in 1946. Langevin is noted for his work on paramagnetism and diamagnetism, and devised the modern interpretation of this phenomenon in terms of
Paul_Langevin
Motion of charged particles
are quantized into discrete Landau levels, which contribute to Landau diamagnetism and lead to oscillatory electronic phenomena like the De Haas–Van Alphen
Cyclotron_motion
Weak, attractive magnetism possessed by most elements and some compounds
unpaired. The Bohr–Van Leeuwen theorem proves that there cannot be any diamagnetism or paramagnetism in a purely classical system. The paramagnetic response
Paramagnetism
Study of magnetic properties of chemical compounds
electron has a magnetic moment. There are two types of interaction. Diamagnetism. When placed in a magnetic field the atom becomes magnetically polarized
Magnetochemistry
Cells can be assembled without using magnetic nanoparticles by employing diamagnetism. Some materials are more strongly attracted, or susceptible, to magnets
Magnetic_3D_bioprinting
Theorem on magnetism
interior of an element of plasma, and result in zero net diamagnetism for the plasma element." Diamagnetism of a purely classical nature occurs in plasmas but
Bohr–Van_Leeuwen_theorem
Topics referred to by the same term
of genetic linkage Repulsion in physics, Coulomb's law Repulsion in diamagnetism, which pushes two bodies away from each other Repulsion theory, in botany
Repulsion
Quantization of cyclotron orbits
contributes towards magnetic susceptibility of metals, known as Landau diamagnetism. Under strong magnetic fields, Landau quantization leads to oscillations
Landau_levels
Iron (II) disulfide mineral
Turan; Leighton, Chris (1 July 2020). "Voltage-induced ferromagnetism in a diamagnet". Science Advances. 6 (31) eabb7721. Bibcode:2020SciA....6.7721W. doi:10
Pyrite
Relation of magnetization to applied magnetic field and temperature
Curie constant is null, other magnetic effects dominate, like Langevin diamagnetism or Van Vleck paramagnetism. A simple model of a paramagnet concentrates
Curie's_law
Chemical element with atomic number 29 (Cu)
Edmund H. (1992). Encyclopedia of Applied Physics. Vol. 4: Combustion to Diamagnetism. VCH. pp. 267–272. ISBN 978-3-527-28126-8. Retrieved 2 May 2011. Smith
Copper
German-born British physicist (1907–1995)
introduced the Peierls substitution, and derived a general expression for diamagnetism in metals at low temperatures. This provided an explanation of the hitherto
Rudolf_Peierls
Fluid which flows without losing kinetic energy
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Superfluidity
Description of physical properties at the atomic and subatomic scale
Johanna van Leeuwen's proof that classical physics cannot account for diamagnetism, and Arnold Sommerfeld's extension of the Bohr model to include special-relativistic
Quantum_mechanics
Property of space that quantifies the magnetic influence at a given location
magnetic behavior have been observed in different materials, including: Diamagnetism produces a magnetization that opposes the magnetic field. Paramagnetism
Magnetic_field
Metalloprotein that binds with oxygen
attracted to magnetic fields. In contrast, oxygenated hemoglobin exhibits diamagnetism, a weak repulsion from a magnetic field. When oxygen binds to the iron
Hemoglobin
List of Greek and Latin roots in English starting with the letter M
μάγνητος (mágnēs, mágnētos) bioelectromagnetism, biomagnetism, diamagnetic, diamagnetism, electromagnet, geomagnetic, magnesium, magnet, magnetic, magnetism,
List of Greek and Latin roots in English/M
List_of_Greek_and_Latin_roots_in_English/M
Concept in the physics of electromagnetism
create the magnetic fields (such as the atomic orbits) which causes diamagnetism. Any system possessing a net magnetic dipole moment m will produce a
Magnetic_moment
Piezoelectric constants Pyroelectricity Seebeck coefficient Curie temperature Diamagnetism Hall coefficient Hysteresis Magnetostriction Magnetocaloric coefficient
List_of_materials_properties
Dutch physicist
tension to make them float and magnets to move them. He discovered the diamagnetism of bismuth. Tentamina philosophica de materia magnetica eiusque actione
Anton_Brugmans
Model of magnetic susceptibility under certain conditions
In magnetism, the Curie–Weiss law describes the magnetic susceptibility χ of a ferromagnet in the paramagnetic region above the Curie temperature: χ =
Curie–Weiss_law
Physical quantity, density of magnetic moment per volume
is the magnetic force on the paramagnet (or diamagnet) per unit volume (i.e. force density). In diamagnets ( χ < 0 {\displaystyle \chi <0} ) and paramagnets
Magnetization
Interpretation of quantum mechanics
Johanna van Leeuwen's proof that classical physics cannot account for diamagnetism, Bohr's model of the hydrogen atom and Arnold Sommerfeld's extension
Copenhagen_interpretation
Study of magnetic properties of minerals
type of magnetic order or disorder. Magnetically disordered minerals (diamagnets and paramagnets) contribute a weak magnetism and have no remanence. The
Magnetic_mineralogy
Electrical conductivity with exactly zero resistance
of 100 nm. The Meissner effect is sometimes confused with the kind of diamagnetism one would expect in a perfect electrical conductor: according to Lenz's
Superconductivity
State of matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Bose–Einstein_condensate
Model of electrical conduction
(according to Bohr–Van Leeuwen theorem) that Drude model could not explain diamagnetism in metals. This led him to formulate his Bohr model of the atom. The
Drude_model
Forms which matter can take
from its interior, a phenomenon known as the Meissner effect or perfect diamagnetism. Superconducting magnets are used as electromagnets in magnetic resonance
State_of_matter
Regular pattern of magnetic moment ordering
Mechanism by which materials form into and are attracted to magnets Diamagnetism – Magnetic property of ordinary materials Blundell, Stephen (2014). "5
Antiferromagnetism
Material similar to graphite
against the cleavage plane, exhibiting the greatest diamagnetism (by weight) of any room-temperature diamagnet. In comparison[dubious – discuss], pyrolytic graphite
Pyrolytic_carbon
Physical process of transition between basic states of matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Phase_transition
Dutch theoretical physicist (1885–1973)
Induction Phenomena: The forgotten work of Berta de Haas-Lorentz on diamagnetism in superconductors". Physica C: Superconductivity and Its Applications
Geertruida_de_Haas-Lorentz
State of matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Solid
Quantum mechanical magnetic effect
An equivalent phenomenon at low magnetic fields is known as Landau diamagnetism. The differential magnetic susceptibility of a material is defined as
De_Haas–Van_Alphen_effect
Device that measures magnetism
with smaller contributions from nuclear magnetic moments, Langevin diamagnetism, among others. Ordering of magnetic moments are primarily classified
Magnetometer
French physicist and chemist (1859–1906)
workers in that area. He studied ferromagnetism, paramagnetism, and diamagnetism for his doctoral thesis, and discovered the effect of temperature on
Pierre_Curie
Pierre Curie, known for his work on radioactivity as well as on ferromagnetism, paramagnetism, and diamagnetism; notably Curie's law and Curie point
History_of_chemistry
materials diamagnetism is a weak effect which can only be detected by sensitive laboratory instruments, but a superconductor acts as a strong diamagnet because
Glossary_of_engineering:_A–L
physics at the Royal Institution of Great Britain known for his study of diamagnetism William Unwin Chair of hydraulic and mechanical engineering at the Royal
List_of_Savile_Club_members
Theoretical model in physics
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Fermi_liquid_theory
State of matter with properties of both conventional liquids and crystals
parameter can be measured experimentally in a number of ways; for instance, diamagnetism, birefringence, Raman scattering, NMR and EPR can be used to determine
Liquid_crystal
Chemical compound
cobalt is 3+. Its low-spin d6 configuration confers kinetic stability and diamagnetism. The compound is prepared by combining cobalt(II) and nitrite salts in
Potassium hexanitritocobaltate(III)
Potassium_hexanitritocobaltate(III)
2010 television documentary series
discoveries include the principles underlying electromagnetic induction, diamagnetism and electrolysis. Subject: Alfred Russel Wallace Presenter: Richard Dawkins
Genius_of_Britain
Branch of physics
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Condensed_matter_physics
German physicist (1820–1895)
experimental demonstrations about the nature of diamagnetism. Knoblauch's student and collaborator on the diamagnetism work was John Tyndall. Tyndall and Knoblauch
Hermann_Knoblauch
Statement on equilibrium in electromagnetism
they are flexible and conducting, provided they are not diamagnetic, as diamagnetism constitutes a (small) repulsive force, but no attraction. There are,
Earnshaw's_theorem
Classic textbook in by Charles Kittel
Superconductivity superconductivity, BCS theory, superconductors 11 Diamagnetism and Paramagnetism diamagnetism and paramagnetism 12 Ferromagnetism and Antiferromagnetism
Introduction to Solid State Physics
Introduction_to_Solid_State_Physics
Derivatives are a fundamental tool of calculus. destructive interference diamagnetism dielectric An electrical insulator that can be polarized by an applied
Glossary_of_physics
Chemical compound
[4n + 2] systems, which is also consistent with a reduction of ring current diamagnetism. The electronic structure of biphenylene in the gas phase has the HOMO
Biphenylene
German physicist (1804–1891)
Translated into English. Volume 3: Measurement of Weber's Constant c, Diamagnetism, the Telegraph Equation and the Propagation of Electric Waves at Light
Wilhelm_Eduard_Weber
Mixture of an insoluble substance microscopically dispersed throughout another substance
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Colloid
Quasiparticle of charge oscillations in condensed matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Plasmon
Superseded theory of electromagnetism
Translated into English. Volume III: Measurement of Weber's Constant c, Diamagnetism, the Telegraph Equation and the Propagation of Electric Waves at Light
Weber_electrodynamics
Cast of American media franchise
Nightwing. Zebra-Man – A striped villain in a mohawk with power over diamagnetism. Zodiac Master – A zodiac-themed villain who creates predictions for
List of characters in The Lego Movie franchise
List_of_characters_in_The_Lego_Movie_franchise
Hexagonal lattice made of carbon atoms
the material exhibits large quantum oscillations and large nonlinear diamagnetism. Three of the four outer-shell electrons of each atom in a graphene sheet
Graphene
Chemical compound
distances correspond to Nb-Nb bonds, which result in the compound's diamagnetism. Its structure is very similar to that of tungsten(IV) chloride. Other
Niobium(IV)_chloride
Concept in non-equilibrium physics
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Keldysh_formalism
Method of storing energy
superconductors can work well stabilizing the load is because they are perfect diamagnets. If the rotor tries to drift off-center, a restoring force due to flux
Flywheel_energy_storage
Structure formed by diffuse material in orbital motion around a massive central body
jet is launched. Magnetic buoyancy, turbulent pumping and turbulent diamagnetism exemplify such physical phenomena invoked to explain such efficient concentration
Accretion_disk
(Lat. compare). The two quantum effects used in a CCC are the ideal diamagnetism of the superconductor, caused by the Meissner effect, and the macroscopic
Cryogenic_current_comparator
Chemical bond involving eight electrons
short Re–Re distance was noted. This short distance (and the salt's diamagnetism) indicated Re–Re bonding. These researchers, however, misformulated the
Quadruple_bond
Chemical compound
structure accommodates a Rh-Rh bond, the existence of which explains the diamagnetism of this Rh(II) species. The Rh-Rh distance is 238 pm. The anhydrous complex
Rhodium(II)_trifluoroacetate
Norwegian physicist and politician
Among others, he measured diamagnetism in bismuth. He also studied in Paris under Henri Victor Regnault. The work on diamagnetism in bismuth was his only
Hartvig Caspar Christie (physicist)
Hartvig_Caspar_Christie_(physicist)
Ligand with unclear oxidation state
better described as a Ni2+ derivative of the radical anion S2C2Ph2•−. The diamagnetism of this complex arises from anti-ferromagnetic coupling between the unpaired
Non-innocent_ligand
Walther Meissner and Robert Ochsenfeld discover perfect superconducting diamagnetism 1933 – Walter Baade and Fritz Zwicky propose the existence of neutron
Timeline of states of matter and phase transitions
Timeline_of_states_of_matter_and_phase_transitions
State of matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Supersolid
Structure that repeats in time; a novel type or phase of non-equilibrium matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Time_crystal
Subdiscipline of condensed matter physics
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Mesoscopic_physics
μάγνητος (mágnēs, mágnētos) bioelectromagnetism, biomagnetism, diamagnetic, diamagnetism, electromagnet, geomagnetic, magnesium, magnet, magnetic, magnetism,
List of Greek and Latin roots in English/H–O
List_of_Greek_and_Latin_roots_in_English/H–O
Scientist Stephen Gray discovers the electrical conduction of metals. 1778 – Diamagnetism was first discovered when Anton Brugmans observed in 1778 that bismuth
Timeline of condensed matter physics
Timeline_of_condensed_matter_physics
Chemical compound
incompatible with the crystal structure, and also at variance with the observed diamagnetism as a Cu(II) compound would have a d9 configuration and be expected to
Copper_monosulfide
Electromagnetic waves that travel along an interface
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Surface_plasmon_polariton
American physicist (1906–1937)
Vleck, J.H.; Frank, Amelia (1929). "The Mean Square Angular Momentum and Diamagnetism of the Normal Hydrogen Molecule". Proceedings of the National Academy
Amelia_Frank
Variation of classical electrodynamics
are free of criticism at the time of writing: The Van der Waals force Diamagnetism The Unruh effect The following SED-based calculations and SED-related
Stochastic_electrodynamics
the body. Faraday also, by experiment, discovered paramagnetism and diamagnetism, namely, that all solids and liquids are either attracted or repelled
History of electromagnetic theory
History_of_electromagnetic_theory
Australian chemist (1903–1980)
1524/ZKRI.1939.101.1.160. Dwyer, F. P.; Mellor, D.P. (January 1941). "The Diamagnetism of Nickel Triazene Complexes". Journal of the American Chemical Society
David_Paver_Mellor
Model of electrons within a metallic solid
dissertation Niels Bohr pointed out that Drude model could not predict the diamagnetism of metals. In the same way, Karl Baedeker pointed out that all galvanomagnetic
Free_electron_model
Form of magnetism
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Superparamagnetism
State of matter of many bosons
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Bose_gas
History of crystallography to 1895
were called paramagnetic. Between 1850 and 1856 John Tyndall studied diamagnetism in crystals. By the end of the 19th century the three types of crystal—ferromagnetic
History of crystallography before X-rays
History_of_crystallography_before_X-rays
Method to include magnetic fields in tight-binding models
approximation Hofstadter's butterfly Peierls, R (1933). "On the theory of diamagnetism of conduction electrons". Z. Phys. 80 (11–12): 763–791. Bibcode:1933ZPhy
Peierls_substitution
Type of order at absolute zero
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Topological_order
Quasiparticle which is a bound state of an electron and an electron hole
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Exciton
State of matter
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Fermionic_condensate
Electrical insulators that are conventionally expected to be conductors
phenomena Quantum Hall effect Spin Hall effect Kondo effect Magnetic phases Diamagnet Superdiamagnet Paramagnet Superparamagnet Ferromagnet Antiferromagnet
Mott_insulator
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