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| 003 | ES-MaUEC | ||
| 005 | 20230213133531.0 | ||
| 006 | m o d | ||
| 007 | cr ||||||||||| | ||
| 008 | 150319s2015 nju sb 001 0 eng | ||
| 020 | _a9781118989913 | ||
| 040 |
_aDLC _beng _e _epn _cDLC _dYDX _dN$T _dIDEBK _dDG1 _dEBLCP _dOCLCF _dCDX _dYDXCP _dCOO _dDEBSZ _dOCLCQ _dDEBBG _dOCLCQ _dKSU _dRECBK _dDG1 _dLIP _dOCLCQ _dMERUC _dOCLCQ _dWYU _dU3W _dOCLCQ _dUKAHL _dOCLCQ |
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| 050 | 4 |
_aTA418.9.N35 _bO94 2015 EB |
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| 100 | 1 |
_aOwens, Frank J. _941689 _eautor |
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| 245 | 1 | 0 |
_aPhysics of Magnetic Nanostructures _cFrank J. Owens |
| 264 | 1 |
_aHoboken, New Jersey _bWiley _c2015 |
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| 300 | _a1 recurso en línea (172 páginas) | ||
| 336 |
_2rdacontent _aTexto _btxt |
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| 337 |
_2rdamedia _aelectrónico _bc |
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| 338 |
_2rdacarrier _arecurso electrónico _bcr |
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| 490 | 0 | _aWiley ebooks | |
| 504 | _aIncluye referencias bibliográficas e índice | ||
| 505 | 0 | _a1 Properties Of Nanostructures; 1.1 Cohesive Energy; 1.2 Electronic Properties; 1.3 Quantum Dots; 1.4 Vibrational Properties; 1.5 Summary; Exercises; References; 2 The Physics Of Magnetism; 2.1 Kinds Of Magnetism; 2.2 Paramagnetism; 2.3 Ferromagnetism; 2.4 Antiferromagnetism; Exercises; References; 3 Properties Of Magnetic Nanoparticles; 3.1 Superparamagnetism; 3.2 Effect Of Particle Size On Magnetization; 3.3 Dynamical Behavior Of Magnetic Nanoparticles; 3.4 Magnetic Field-Aligned Particles In Frozen Fluids | |
| 505 | 8 | _a3.5 Magnetism Induced By Nanosizing3.6 Antiferromagnetic Nanoparticles; 3.7 Magnetoresistive Materials; Exercises; References; 4 Bulk Nanostructured Magnetic Materials; 4.1 Ferromagnetic Solids With Nanosized Grains; 4.2 Low-Dimensional Magnetic Nanostructures; 4.3 Magnetoresistance In Bulk Nanostructured Materials; Exercises; References; 5 Magnetism In Carbon And Boron Nitride Nanostructures; 5.1 Carbon Nanostructures; 5.2 Experimental Observations Of Magnetism In Carbon And Boron Nitride Nanostructures; Exercises; References; 6 Nanostructured Magnetic Semiconductors | |
| 505 | 8 | _a6.1 Electron-Hole Junctions 6.2 Mosfet; 6.3 Nanosized Mosfets; 6.4 Dilute Magnetic Semiconductors; 6.5 Nanostructuring In Magnetic Semiconductors; 6.6 Dms Quantum Wells; 6.7 Dms Quantum Dots; 6.8 Storage Devices Based On Magnetic Semiconductors; 6.9 Theoretical Predictions Of Nanostructured Magnetic Semiconductors; Exercises; References; 7 Applications Of Magnetic Nanostructures; 7.1 Ferrofluids; 7.2 Magnetic Storage (Hard Drives); 7.3 Electric Field Control Of Magnetism; 7.4 Magnetic Photonic Crystals; 7.5 Magnetic Nanoparticles As Catalysts | |
| 505 | 8 | _a7.6 Magnetic Nanoparticle Labeling Of Hazardous Materialsexercises; References; 8 Medical Applications Of Magnetic Nanostructures; 8.1 Targeted Drug Delivery; 8.2 Magnetic Hyperthermia; 8.3 Magnetic Separation; 8.4 Magnetic Nanoparticles For Enhanced Contrast In Magnetic Resonance Imaging; 8.5 Detection Of Bacteria; 8.6 Analysis Of Stored Blood; Exercises; References; 9 Fabrication Of Magnetic Nanostructures; 9.1 Magnetic Nanoparticles; 9.2 Magnetic Quantum Wells; 9.3 Magnetic Nanowires; 9.4 Magnetic Quantum Dots; Exercises; References | |
| 505 | 8 | _aAppendix A A Table Of Number Of Atoms Versus Size In Face Centered Cubic Nanoparticlesappendix B Definition Of A Magnetic Field; Appendix C Density Functional Theory; Appendix D Tight Binding Model Of Electronic Structure Of Metals; Appendix E Periodic Boundary Conditions; Index; End User License Agreement | |
| 520 | _aA comprehensive coverage of the physical properties and real-world applications of magnetic nanostructures This book discusses how the important properties of materials such as the cohesive energy, and the electronic and vibrational structures are affected when materials have at least one length in the nanometer range. The author uses relatively simple models of the solid state to explain why these changes in the size and dimension in the nanometer regime occur. The text also reviews the physics of magnetism and experimental methods of measuring magnetic properties necessary to understanding how nanosizing affects magnetism. Various kinds of magnetic structures are presented by the author in order to explain how nanosizing influences their magnetic properties. The book also presents potential and actual applications of nanomaterials in the fields of medicine and computer data storage. Physics of Magnetic Nanostructures: -Covers the magnetism in carbon and born nitride nanostructures, bulk nanostructured magnetic materials, nanostructured magnetic semiconductors, and the fabrication of magnetic nanostructures -Discusses emerging applications of nanomaterials such as targeted delivery of drugs, enhancement of images in MRI, ferrofluids, and magnetic computer data storage -Includes end-of-chapter exercises and five appendices Physics of Magnetic Nanostructures is written for senior undergraduate and graduate students in physics and nanotechnology, material scientists, chemists, and physicists | ||
| 538 | _aForma de acceso: World Wide Web | ||
| 650 | 7 |
_2embne _9162199 _aNanoestructuras |
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| 650 | 7 |
_2embne _9151896 _aMateriales magnéticos |
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| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://onlinelibrary.wiley.com/doi/book/10.1002/9781118989913 _yAcceso a este recurso digital (usuarios Universidad Europea de Madrid) |
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_2lcc _cLE |
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| 998 |
_b02/2023 _dz _eu _zSI |
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