Toshiyuki Takagi mainly focuses on Condensed matter physics, Ferromagnetism, Martensite, Eddy-current testing and Magnetization. His Condensed matter physics study combines topics from a wide range of disciplines, such as Diffusionless transformation, Austenite and Magnetic refrigeration. As part of the same scientific family, Toshiyuki Takagi usually focuses on Ferromagnetism, concentrating on Paramagnetism and intersecting with Tetragonal crystal system.
His work deals with themes such as Phase and Shape-memory alloy, which intersect with Martensite. His Eddy-current testing study integrates concerns from other disciplines, such as Acoustics, Signal and Boiler. The various areas that he examines in his Magnetization study include Electrical resistivity and conductivity and Magnetic moment.
His scientific interests lie mostly in Composite material, Eddy-current testing, Condensed matter physics, Shape-memory alloy and Metallurgy. Composite material is closely attributed to Nondestructive testing in his study. The Eddy-current testing study combines topics in areas such as Acoustics, Computer simulation, Electronic engineering and Finite element method.
His study of Electromagnetic acoustic transducer is a part of Acoustics. Toshiyuki Takagi has researched Condensed matter physics in several fields, including Martensite, Diffusionless transformation and Magnetization. His Shape-memory alloy study frequently intersects with other fields, such as SMA*.
Toshiyuki Takagi focuses on Composite material, Nondestructive testing, Eddy-current testing, Acoustics and Eddy current. Toshiyuki Takagi has included themes like Consolidation and Ferromagnetism in his Composite material study. His studies deal with areas such as Adhesive, Creep, Metallurgy, Composite number and Electromagnetic pulse as well as Nondestructive testing.
His Eddy-current testing study incorporates themes from Structural engineering, Fibre-reinforced plastic, Wall thinning, Characterization and Electronic engineering. His research in Eddy current intersects with topics in Finite element method and Electromagnetic coil. His work carried out in the field of Electromagnetic acoustic transducer brings together such families of science as Magnet and Magnetostriction.
His primary areas of study are Composite material, Eddy-current testing, Nondestructive testing, Acoustics and Yeast. His work in the fields of Composite material, such as Creep and Microstructure, overlaps with other areas such as Conductivity. Eddy-current testing is a subfield of Eddy current that Toshiyuki Takagi investigates.
His Nondestructive testing research includes themes of Magnetization and Hysteresis. His studies in Acoustics integrate themes in fields like Rayleigh wave and Square wave. His research integrates issues of Magnetic domain, Barkhausen effect and Ferromagnetism in his study of Jiles-Atherton model.
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Visfatin: a protein secreted by visceral fat that mimics the effects of insulin.
Atsunori Fukuhara;Morihiro Matsuda;Masako Nishizawa;Katsumori Segawa.
Science (2005)
Structural and magnetic phase transitions in shape-memory alloys Ni 2 + x Mn 1 − x Ga
A. N. Vasil’ev;A. D. Bozhko;V. V. Khovailo;I. E. Dikshtein.
Physical Review B (1999)
The atypical M2 segment of the beta subunit confers picrotoxinin resistance to inhibitory glycine receptor channels.
I. Pribilla;T. Takagi;D. Langosch;J. Bormann.
The EMBO Journal (1992)
Shape memory ferromagnets
Aleksandr N Vasil'ev;Vasilii D Buchel'nikov;T Takagi;Vladimir V Khovailo.
Physics-Uspekhi (2003)
The structure of arthropod hemocyanins.
B. Linzen;N. M. Soeter;A. F. Riggs;H. J. Schneider.
Science (1985)
Intelligent Material Systems: Application of Functional Materials
Junji Tani;Toshiyuki Takagi;Jinhao Qiu.
Applied Mechanics Reviews (1998)
Role of ions in ion-based film formation
T. Takagi.
Thin Solid Films (1982)
Phase transitions in Ni2+xMn1-xGa with a high Ni excess
V. V. Khovaylo;V. D. Buchelnikov;R. Kainuma;V. V. Koledov.
Physical Review B (2005)
In situ control of cell adhesion using photoresponsive culture surface.
Jun Ichi Edahiro;Kimio Sumaru;Yuichi Tada;Katsuhide Ohi.
Biomacromolecules (2005)
Shape memory effect due to magnetic field-induced thermoelastic martensitic transformation in polycrystalline Ni–Mn–Fe–Ga alloy
A.A. Cherechukin;I.E. Dikshtein;D.I. Ermakov;A.V. Glebov.
Physics Letters A (2001)
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