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Seebeck coefficient

  • The Spin Nernst Effect in Tungsten

    The Spin Nernst Effect in Tungsten

  • Seebeck Coefficient in Organic Semiconductors

    Seebeck Coefficient in Organic Semiconductors

  • Practical Temperature Measurements

    Practical Temperature Measurements

  • Tackling Challenges in Seebeck Coefficient Measurement of Ultra-High Resistance Samples with an AC Technique Zhenyu Pan1, Zheng

    Tackling Challenges in Seebeck Coefficient Measurement of Ultra-High Resistance Samples with an AC Technique Zhenyu Pan1, Zheng

  • Seebeck Coefficient Measurements on Li, Sn, Ta, Mo, and W

    Seebeck Coefficient Measurements on Li, Sn, Ta, Mo, and W

  • Thermoelectric Properties of Silicon Germanium

    Thermoelectric Properties of Silicon Germanium

  • Room Temperature Seebeck Coefficient Measurement of Metals and Semiconductors

    Room Temperature Seebeck Coefficient Measurement of Metals and Semiconductors

  • Polymer Thermoelectric Modules Screen-Printed

    Polymer Thermoelectric Modules Screen-Printed

  • THERMOELECTRIC PROPERTIES of SILICON-GERMANIUM ALLOYS by Maske Aniket Annasaheb

    THERMOELECTRIC PROPERTIES of SILICON-GERMANIUM ALLOYS by Maske Aniket Annasaheb

  • Apparatus for the High Temperature Measurement of the Seebeck Coefficient in Thermoelectric Materials

    Apparatus for the High Temperature Measurement of the Seebeck Coefficient in Thermoelectric Materials

  • Chapter 16 Theoretical Model of Thermoelectric Transport Properties

    Chapter 16 Theoretical Model of Thermoelectric Transport Properties

  • The Effects of Doping and Processing on the Thermoelectric Properties of Platinum Diantimonide Based Materials for Cryogenic Peltier Cooling Applications

    The Effects of Doping and Processing on the Thermoelectric Properties of Platinum Diantimonide Based Materials for Cryogenic Peltier Cooling Applications

  • Strain-Induced Electronic Band Convergence: Effect on the Seebeck Coefficient of Mg2si for Thermoelectric Applications H

    Strain-Induced Electronic Band Convergence: Effect on the Seebeck Coefficient of Mg2si for Thermoelectric Applications H

  • Protocols for the High Temperature Measurement of the Seebeck Coefficient in Thermoelectric Materials

    Protocols for the High Temperature Measurement of the Seebeck Coefficient in Thermoelectric Materials

  • Semi-Metals As Potential Thermoelectric Materials Maxime Markov1, Xixiao Hu2, Han-Chun Liu1, Naiming Liu3, S

    Semi-Metals As Potential Thermoelectric Materials Maxime Markov1, Xixiao Hu2, Han-Chun Liu1, Naiming Liu3, S

  • Semiconductive Properties of Uranium Oxides

    Semiconductive Properties of Uranium Oxides

  • Organic-Inorganic Thermoelectrics from Single Monomers to Polymer Devices

    Organic-Inorganic Thermoelectrics from Single Monomers to Polymer Devices

  • Automated Instrumentation for High-Temperature Seebeck

    Automated Instrumentation for High-Temperature Seebeck

Top View
  • Charge Transport Analysis Using the Seebeck Coefficient-Conductivity
  • Thermoelectric Exploration of Silver Antimony Telluride and Removal of the Second Phase Silver Telluride a Thesis Presented in P
  • High-Performance Flexible Metal-On-Silicon Thermocouple
  • Thermoelectric Devices: Principles and Future Trends
  • High Seebeck Coefficient and Ultra-Low Lattice Thermal Conductivity in Cs 2Inagcl 6 Enamul Haque and M
  • First-Principles Thermodynamic Theory of Seebeck Coefficients Yi
  • Chapter 3 Seebeck Metrology
  • Enhanced Thermoelectric Properties of WS2/ Single-Walled Carbon Nanohorn Nanocomposites
  • Metrology 101
  • The Effect of Point Defects on the Electronic Density of States
  • Thermoelectrics 101
  • Elastic, Electronic, Thermodynamic and Transport Properties of Xossi ( X=Nb, Ta) Superconductors: a First-Principles Exploration
  • Reference Tables for Low-Temperature Thermocouples*
  • Chapter 2: Theoretical and Experimental Methods
  • Low Temperature Thermocouples: KP, 'Normal' Silver, and Copper Versus
  • Chapter 11 Density of States, Fermi Energy and Energy Bands
  • A First-Principles Approach to Predict Seebeck Coefficients: Application to La3-Xte4
  • Band Degeneracy Enhanced Thermoelectric Performance In


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