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| Artikel-Nr.: 5667A-9783642105708 Herst.-Nr.: 9783642105708 EAN/GTIN: 9783642105708 |
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 | Thermoelectric power under large magnetic field in quantum confined materials.- Thermoelectric Power in Quantum Dots Under Large Magnetic Field.- Thermoelectric Power in Ultrathin Films and Quantum Wires Under Large Magnetic Field.- Thermoelectric Power in Quantum Dot Superlattices Under Large Magnetic Field.- Thermoelectric Power in Quantum Wire Superlattices Under Large Magnetic Field.- Thermoelectric power under magnetic quantization in macro and micro electronic materials.- Thermoelectric Power in Macroelectronic Materials Under Magnetic Quantization.- Thermoelectric Power in Superlattices Under Magnetic Quantization.- Thermoelectric Power in Ultrathin Films Under Magnetic Quantization.- Thermoelectric power under large magnetic field in quantum confined optoelectronic materials in the presence of light waves.- Optothermoelectric Power in Ultrathin Films and Quantum Wires of Optoelectronic Materials Under Large Magnetic Field.- Optothermoelectric Power in Quantum Dots of Optoelectronic Materials Under Large Magnetic Field.- Optothermoelectric Power in Quantum-Confined Semiconductor Superlattices of Optoelectronic Materials Under Large Magnetic Field.- Thermoelectric power under magnetic quantization in macro and micro optoelectronic materials in the presence of light waves.- Optothermoelectric Power in Macro-Optoelectronic Materials Under Magnetic Quantization.- Optothermoelectric Power in Ultrathin Films of Optoelectronic Materials Under Magnetic Quantization.- Optothermoelectric Power in Superlattices of Optoelectronic Materials Under Magnetic Quantization.- Applications and Brief Review of Experimental Results.- Conclusion and Future Research. Weitere Informationen:  |  | Author: | Kamakhya Prasad Ghatak; Sitangshu Bhattacharya | Verlag: | Springer Berlin | Sprache: | eng |
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 | Weitere Suchbegriffe: chemische technik - englischsprachig, Magnet (physikalisch) - Magnetismus, Nanotechnologie, Technologie / Nanotechnologie, Nanostructured Materials; Semiconductor; Strong magnetic fields; Superlattices; magnetic field; quantum dot; quantum wells, dots and wires; thermoelectric power; thin film, Magnetic field, Nanostructured materials, Quantum wells, dots and wires, Semiconductor, Strong magnetic fields, Superlattices, Thermoelectric power |
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