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Jonker-type analysis of small polaron conductorsNELL, J; WOOD, B. J; DORRIS, S. E et al.Journal of solid state chemistry (Print). 1989, Vol 82, Num 2, pp 247-254, issn 0022-4596, 8 p.Article

Thermoelectrics run hot and coldTRITT, T. M.Science (Washington, D.C.). 1996, Vol 272, Num 5266, pp 1276-1277, issn 0036-8075Article

Thermopower of pure metals near the melting point as a parameter needed to control the solidification processVINCKEL, J; BENAZZI, N; HALIM, H et al.Journal of non-crystalline solids. 1993, Vol 156-58, pp 493-497, issn 0022-3093, 2Conference Paper

A simple technique for determining the seebeck coefficient of thermoelectric materialsGOLDSMID, H. J.Journal of physics. E. Scientific instruments. 1986, Vol 19, Num 11, pp 921-922, issn 0022-3735Article

La mesure des températures par couples thermo-électriques = Temperature measurement by thermocouplesMILLET, F.Traitement thermique (Paris). 1983, Vol 20, Num 177, pp 49-59, issn 0041-0950Article

THE PELTIER EFFECTDREBUSHCHAK, V. A.Journal of thermal analysis and calorimetry. 2008, Vol 91, Num 1, pp 311-315, issn 1388-6150, 5 p.Article

Characterization and Modeling of an Electro-thermal MEMS StructureSZABO, P. G; SZEKELY, V.Symposium on design, test, integration and packaging of MEMS-MOEMS. 2008, pp 350-354, isbn 978-2-35500-006-5, 1Vol, 5 p.Conference Paper

The effect of the band edges on the Seebeck coefficientSONNTAG, Joachim.Journal of physics. Condensed matter (Print). 2010, Vol 22, Num 23, issn 0953-8984, 235501.1-235501.10Article

Matériaux à effets thermoélectriquesGODART, Claude.Techniques de l'ingénieur. Matériaux fonctionnels. 2009, Vol N1, Num N1500, issn 1776-0178, N1500.1-N1500.16, docN1500.1-5 [21 p.]Article

Seebeck coefficient of K2SO4LIN, C. Y; HIRAYAMA, C.Materials research bulletin. 1983, Vol 18, Num 11, pp 1329-1333, issn 0025-5408Article

Phénomènes thermoélectriques et magnétohydrodynamiques en solidification des alliages métalliques = Thermoelectric and magnetohydrodynamic phenomena on solidifying metallic alloysLaskar, Olivier; Moreau, R.1991, 215 p.Thesis

Reply to the effect of temperature-dependent energies on semiconductor thermopower formulaëEMIN, D.Philosophical magazine. B. Physics of condensed matter. Electronic, optical and magnetic properties. 1985, Vol 51, Num 5, pp L53-L56, issn 0141-8637Article

Recent progress in electrodeposition of thermoelectric thin films and nanostructuresFENG XIAO; HANGARTER, Carlos; YOO, Bongyoung et al.Electrochimica acta. 2008, Vol 53, Num 28, pp 8103-8117, issn 0013-4686, 15 p.Article

Tunable spin Seebeck effect in a double Rashba molecule embedded in an Aharonov-Bohm interferometerGOMEZ-SILVA, G; AVALOS-OVANDO, O; LADRON DE GUEVARA, M. L et al.Physica. E, low-dimentional systems and nanostructures. 2014, Vol 63, pp 311-316, issn 1386-9477, 6 p.Article

Thermal and electrical properties of zirconium nitrideADACHI, Jun; KUROSAKI, Ken; UNO, Masayoshi et al.Journal of alloys and compounds. 2005, Vol 399, Num 1-2, pp 242-244, issn 0925-8388, 3 p.Article

Synthesis and characterisation of the compound CoSbSCARLINI, R; ARTINI, C; BORZONE, G et al.Journal of thermal analysis and calorimetry. 2011, Vol 103, Num 1, pp 23-27, issn 1388-6150, 5 p.Conference Paper

Thermoelectric properties of gold telluride: AuTe2CHAROENPHAKDEE, Anek; KUROSAKI, Ken; HARNWUNGGMOUNG, Adul et al.Journal of alloys and compounds. 2010, Vol 496, Num 1-2, pp 53-55, issn 0925-8388, 3 p.Article

Electrical transport properties of manganese-magnesium mixed ferritesDEVENDER REDDY, V; MALIK, M. A; VENUGOPAL REDDY, P et al.Materials science & engineering. B, Solid-state materials for advanced technology. 1991, Vol 8, Num 4, pp 295-301Article

The effect of firing temperature on the properties of model thick-film resistors. I: Morphology and microstructure of the filmsKUBOVY, A; HAVLAS, I.Silikáty. 1988, Vol 32, Num 2, pp 109-123, issn 0037-5241Article

Effet Seebeck dans le diamant-p synthétiqueREVIN, O. G.Fizika i tehnika poluprovodnikov. 1987, Vol 21, Num 12, pp 2212-2214, issn 0015-3222Article

Changes in Seebeck coefficient of Pt and Pt 10% Rh after use to 1700°C in high-purity polycrystalline alumina = Changements dans le coefficient de Seebeck de Pt et de Pt 10% Rh après utilisation à 1700°C dans de l'alumine polycristalline de haute puretéBENTLEY, R. E.International journal of thermophysics. 1985, Vol 6, Num 1, pp 83-99, issn 0195-928XArticle

Measurement of Seebeck coefficient using a light pulseZOLTAN, D; WOOD, C; STAPFER, G et al.Intersociety energy conversion engineering conference. 19. 1984, pp 2241-2243Conference Paper

Thermoelectric power of small polarons in magnetic semiconductorsLIU, N.-L. H; EMIN, D.Physical review. B, Condensed matter. 1984, Vol 30, Num 6, pp 3250-3256, issn 0163-1829Article

Thermal and electric transport in semiconductors under a thermal field : emergence of nonequilibrium charge carriersTITOV, Oleg Yu; MERIUTS, Andrev; ESPEJO, Gabino et al.High Temperatures. High Pressures (Print). 2001, Vol 33, Num 1, pp 65-71, issn 0018-1544Conference Paper

THERMOPOWER COMPOSITION DEPENDENCE IN FERROSPINELSWU CC; KUMARAKRISHNAN S; MASON TO et al.1981; J. SOLID STATE CHEM.; ISSN 0022-4596; GBR; DA. 1981; VOL. 37; NO 2; PP. 144-150; BIBL. 24 REF.Article

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