Works matching Thermal Properties Of Solids
Results: 809
Thermal Properties of Cement Based Composites with Municipal Solid Waste Incinerator Fly Ash Accessed by Two Different Transient Methods.
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- Materials Science / Medziagotyra, 2016, v. 22, n. 1, p. 132, doi. 10.5755/j01.ms.22.1.7203
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Increasing the Accuracy of Data-Measuring Systems for the Nondestructive Testing of the Thermal Properties of Solids.
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- Measurement Techniques, 2015, v. 58, n. 9, p. 1010, doi. 10.1007/s11018-015-0834-8
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DETERMINACIÓN DE LA DIFUSIVIDAD TÉRMICA EN SÓLIDOS USANDO TÉCNICA FOTOACÚSTICA.
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- Revista Colombiana de Física, 2006, v. 38, n. 2, p. 806
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Low-Temperature Thermal and Vibrational Properties of Disordered Solids. A Half-Century of Universal "Anomalies" of Glasses.
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- Revista Española de Física, 2023, v. 37, n. 2, p. 54
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Thermal properties of chlorosulfonated polyethylene via gas-solid phase method.
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- Journal of Thermal Analysis & Calorimetry, 2014, v. 117, n. 3, p. 1105, doi. 10.1007/s10973-014-3875-3
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THERMAL AND ELECTROCHEMICAL PROPERTIES OF SOLID BIOPOLYMER ELECTROLYTES FROM STARCH OF DIFFERENT BOTANICAL ORIGIN.
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- Periódico Tchê Química, 2021, v. 18, n. 38, p. 137, doi. 10.52571/PTQ.v18.n38.2021.10_ARRIETA_pgs_137_148.pdf
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Thermal radiative and thermodynamic properties of solid and liquid uranium and plutonium carbides in the visible-near-infrared range.
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- Journal of Materials Science, 2016, v. 51, n. 18, p. 8737, doi. 10.1007/s10853-016-0138-7
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Thermal and die electric properties of chemically modified municipal solid waste and banana fiber reinforced polymer composites.
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- Environmental Progress & Sustainable Energy, 2017, v. 36, n. 2, p. 468, doi. 10.1002/ep.12498
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Thermal wave methods in investigation of thermal properties of solids.
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- European Physical Journal: Special Topics, 2008, v. 154, n. 1, p. 305, doi. 10.1140/epjst/e2008-00566-5
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Seasonal Changes in the Composition and Thermal Properties of Municipal Solid Waste: A Case Study of the City of Perm, Russia.
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- Environmental Research, Engineering & Management / Aplinkos Tyrimai, Inžinerija ir Vadyba, 2020, v. 76, n. 2, p. 54, doi. 10.5755/j01.erem.76.2.22919
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Structural, Thermal, and Electrical Properties of Solid Solutions in the NdBaFeCo<sub>0.5</sub>Cu<sub>0.5</sub>O<sub>5+δ</sub>–NdSrFeCo<sub>0.5</sub>Cu<sub>0.5</sub>O<sub>5+δ</sub> System.
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- Inorganic Materials, 2023, v. 59, n. 1, p. 86, doi. 10.1134/S0020168523010089
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Thermal Properties and Conductivity of Thermally Treated Epoxidized Natural Rubber-Based Solid Polymer Electrolytes.
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- Macromolecular Symposia, 2017, v. 376, n. 1, p. n/a, doi. 10.1002/masy.201700049
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Review on Thermal Properties with Influence Factors of Solid–Liquid Organic Phase-Change Micro/Nanocapsules.
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- Energies (19961073), 2024, v. 17, n. 3, p. 604, doi. 10.3390/en17030604
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Effect of Double Branching in α,ω-Substituted Oligothiophenes on Thermal Solid-State Properties.
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- European Journal of Organic Chemistry, 2017, v. 2017, n. 13, p. 1727, doi. 10.1002/ejoc.201700046
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Thermal properties of solid-state Pt/TiO/Ti emf cells studied by microcalorimetry.
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- Applied Physics A: Materials Science & Processing, 2015, v. 118, n. 3, p. 1127, doi. 10.1007/s00339-014-8927-9
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Influence of molar mass on the thermal properties, conductivity and intermolecular interaction of poly(ethylene oxide) solid polymer electrolytes.
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- Polymer International, 2017, v. 66, n. 6, p. 830, doi. 10.1002/pi.5322
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Studies on the structural, thermal and luminescence properties of Sr<sub>1−x</sub>ZrSi<sub>2</sub>O<sub>7</sub>:xEu<sup>3+</sup> phosphors for solid state lighting.
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- Applied Physics A: Materials Science & Processing, 2024, v. 130, n. 5, p. 1, doi. 10.1007/s00339-024-07458-y
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Phase stability, mechanical properties and lattice thermal conductivity of solid solutions: A DFT study.
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- Modern Physics Letters B, 2016, v. 30, n. 35, p. -1, doi. 10.1142/S0217984916504133
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Effects of Cr/Ti co-doping on the electrical and thermal properties of tantalum-based electrolyte materials for solid oxide fuel cells.
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- Journal of Materials Science: Materials in Electronics, 2020, v. 31, n. 20, p. 17307, doi. 10.1007/s10854-020-04286-7
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Photoluminescent properties and thermal stability of F-modified aluminosilicate phosphor for solid-state lighting.
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- Journal of Materials Science: Materials in Electronics, 2016, v. 27, n. 1, p. 906, doi. 10.1007/s10854-015-3833-2
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Visualization of Droplet Boiling on Heated Transparent Solid Surfaces with Various Thermal Properties.
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- Annals of the New York Academy of Sciences, 2002, v. 972, n. 1, p. 164, doi. 10.1111/j.1749-6632.2002.tb04568.x
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Structural, Thermal and Functional Properties of a Hybrid Dicyanamide-Perovskite Solid Solution.
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- Crystals (2073-4352), 2022, v. 12, n. 6, p. 860, doi. 10.3390/cryst12060860
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Structure, thermal expansion, and electrical properties of BiFeO-NdMnO solid solutions.
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- Inorganic Materials, 2015, v. 51, n. 3, p. 272, doi. 10.1134/S0020168515020090
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Identification of thermal properties of solids by means of inverse hybrid method and measurement data.
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- Archives of Thermodynamics, 2008, v. 29, n. 4, p. 73
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The Effect of Compositional Tailoring on the Thermal Expansion and Tribological Properties of PS300: A Solid Lubricant Composite Coating.
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- Tribology Transactions, 1997, v. 40, n. 4, p. 639, doi. 10.1080/10402009708983703
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In-Solution Structural Considerations by <sup>1</sup>H NMR and Solid-State Thermal Properties of Inulin- d-α-Tocopherol Succinate (INVITE) Micelles as Drug Delivery Systems for Hydrophobic Drugs.
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- Macromolecular Chemistry & Physics, 2014, v. 215, n. 21, p. 2084, doi. 10.1002/macp.201400342
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High‐Temperature Solid‐State Synthesis and Electrochemical Properties of Transition Metal Sulfides for Thermal Batteries.
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- Energy Technology, 2022, v. 10, n. 4, p. 1, doi. 10.1002/ente.202100885
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Effect of Phase Arrangement on Solid State Mechanical and Thermal Properties of Polyamide 6/Polylactide Based Co-polyester Blends.
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- Journal of Macromolecular Science: Physics, 2012, v. 51, n. 5, p. 982, doi. 10.1080/00222348.2011.610265
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Rationalizing phonon dispersion for lattice thermal conductivity of solids.
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- National Science Review, 2018, v. 5, n. 6, p. 888, doi. 10.1093/nsr/nwy097
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Eu<sup>3+</sup>-doped Bi<sub>4</sub>Si<sub>3</sub>O<sub>12</sub> red phosphor for solid state lighting: microwave synthesis, characterization, photoluminescence properties and thermal quenching mechanisms.
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- Scientific Reports, 2017, p. 42464, doi. 10.1038/srep42464
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Pressure derivative of the melting temperature for some alkali halides.
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- Canadian Journal of Physics, 2010, v. 88, n. 3, p. 175, doi. 10.1139/P10-004
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Influence of Lithium Triflate Salt Concentration on Structural, Thermal, Electrochemical, and Ionic Conductivity Properties of Cassava Starch Solid Biopolymer Electrolytes.
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- International Journal of Molecular Sciences, 2024, v. 25, n. 15, p. 8450, doi. 10.3390/ijms25158450
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Effect of Pb (YbNb)O on phase transition and thermal and electrical properties of PZ-PYbN solid solution on PZ-rich side.
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- Journal of Materials Science, 2012, v. 47, n. 3, p. 1452, doi. 10.1007/s10853-011-5929-2
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Method of a Generalized Physical Property in the Crystal Physics Problems.
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- Russian Physics Journal, 2016, v. 59, n. 2, p. 273, doi. 10.1007/s11182-016-0767-y
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Comprehensive Study of PAN‐NaBF<sub>4</sub> Solid Polymer Electrolytes: Insights Into Optical, Structural, Thermal, Electrical, and Electrochemical Properties for Sodium‐Ion Batteries.
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- Energy Storage (2578-4862), 2024, v. 6, n. 8, p. 1, doi. 10.1002/est2.70103
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Evaluation of Structural, Thermal, and Electrochemical Properties of PEO/Ionic Liquid Based Quasi‐Solid‐State Electrolytes for Electrical Double Layer Capacitor Devices.
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- Energy Storage (2578-4862), 2024, v. 6, n. 8, p. 1, doi. 10.1002/est2.70085
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Thermal Cycloimidization Study of Polyimides and Poly(amide imide)s Synthesized from Low-Temperature Solution Polymerization.
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- Journal of Macromolecular Science: Physics, 2015, v. 54, n. 6, p. 629, doi. 10.1080/00222348.2015.1025468
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Innovative Methylcellulose-Polyvinyl Pyrrolidone-Based Solid Polymer Electrolytes Impregnated with Potassium Salt: Ion Conduction and Thermal Properties.
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- Polymers (20734360), 2022, v. 14, n. 15, p. 3055, doi. 10.3390/polym14153055
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A Simple Approach to Evaluate Thermal Conductivity of Solids.
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- Journal of the Utah Academy of Sciences, Arts & Letters, 2019, v. 96, p. 141
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Structural Characterization and Solid State Properties of Thermal Insulating Cellulose Materials of Different Size Classifications.
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- BioResources, 2018, v. 13, n. 1, p. 906, doi. 10.15376/biores.13.1.906-917
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Structural, Optical, and Thermal Properties of Cs<sub>2</sub>SnI<sub>6</sub><sub>–</sub><sub>x</sub>Br<sub>x</sub> Mixed Perovskite Solid Solutions.
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- European Journal of Inorganic Chemistry, 2019, v. 2019, n. 20, p. 2524, doi. 10.1002/ejic.201900120
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Studies on irradiation of agar-agar in the solid state: On the changes of thermal property of agar-agar hydrogel produced by irradiation.
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- Journal of Applied Polymer Science, 1991, v. 42, n. 10, p. 2713, doi. 10.1002/app.1991.070421009
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(ZrCa)<sub>x</sub> Y<sub>2-2x</sub>W<sub>3</sub>O<sub>12</sub> 固溶体吸水性及热膨胀性能研究.
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- Journal of Synthetic Crystals, 2024, v. 53, n. 5, p. 899
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Ti<sub> 3 </sub>(Zn<sub>x</sub> Al <sub>1 - x </sub>)C<sub>2</sub> 固溶体热学、电学和 力学性质的理论研究 .
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- Journal of Synthetic Crystals, 2022, v. 51, n. 3, p. 477
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Leidenfrost on a ratchet.
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- Nature Physics, 2011, v. 7, n. 5, p. 395, doi. 10.1038/nphys1925
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Solid-state structures and thermal properties of inclusion complexes of the phenylurea herbicide cycluron with permethylated cyclodextrins.
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- ARKIVOC: Online Journal of Organic Chemistry, 2011, p. 103
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The specific features of low-temperature thermal properties of the heterovalent (BaF<sub>2</sub>)<sub>0.59</sub>(TmF<sub>3</sub>)<sub>0.41</sub> solid solution.
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- Philosophical Magazine, 2022, v. 102, n. 9, p. 773, doi. 10.1080/14786435.2021.2013557
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Study on a novel solid–solid phase change materials: solvent-free preparation, thermal properties and phase separation behaviors.
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- Journal of Thermal Analysis & Calorimetry, 2020, v. 141, n. 4, p. 1305, doi. 10.1007/s10973-019-09132-5
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Differences of thermal decomposition behaviors and combustion properties between CL-20-based propellants and HMX-based solid propellants.
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- Journal of Thermal Analysis & Calorimetry, 2020, v. 140, n. 5, p. 2529, doi. 10.1007/s10973-019-09004-y
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Model-free temperature scaling for heat capacity.
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- Journal of Thermal Analysis & Calorimetry, 2017, v. 130, n. 1, p. 5, doi. 10.1007/s10973-017-6447-5
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