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Original Articles

Physics of the Lindemann melting rule

Pages 1757-1770 | Received 10 Sep 2008, Accepted 09 Oct 2008, Published online: 14 Dec 2010

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Read on this site (3)

N.H. March, E.V. Chulkov, P.M. Echenique & C.C. Matthai. (2010) Phase transitions driven by quasiparticle interactions. Phase Transitions 83:12, pages 1085-1095.
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N.H. March & J.A. Alonso. (2010) Some properties of the structure factor S(q) in two-dimensional classical liquids near freezing. Physics and Chemistry of Liquids 48:3, pages 409-413.
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Articles from other publishers (32)

Gijsbertus de With. (2023) Melting Is Well-Known, but Is It Also Well-Understood?. Chemical Reviews.
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V. O. Hassan & M. S. Omar. (2023) Lindemann’s Role of Melting, Debye Temperature, Dimensionless Mass and Bond Energies for Si-based Tetrahedral Compound Semiconductors. Silicon.
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D D Satikunvar, N K Bhatt & B Y Thakore. (2023) Structural and mass transport properties of liquid ytterbium in the temperature range 1123 K–1473 K. Chinese Physics B 32:6, pages 067101.
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Peter Lunkenheimer, Alois Loidl, Birte Riechers, Alessio Zaccone & Konrad Samwer. (2023) Thermal expansion and the glass transition. Nature Physics 19:5, pages 694-699.
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J. Łoś, A. Drozd-Rzoska & S.J. Rzoska. (2023) Critical-like behavior of low-frequency dielectric properties in compressed liquid crystalline octyloxycyanobiphenyl (8OCB) and its nanocolloid with paraelectric BaTiO3. Journal of Molecular Liquids 377, pages 121555.
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Jakub Kalabiński, Aleksandra Drozd-Rzoska & Sylwester J. Rzoska. (2023) Giant Premelting Effects for Solid–Liquid Discontinuous Transition in Nitrobenzene under Compression. Crystals 13:2, pages 247.
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Zhuanpei Wang, Emmanuel Pameté, Agnieszka Chojnacka, S.E.M. Pourhosseini, Paula Ratajczak & François Béguin. (2023) Effect of oxygenated functionalities on the phase transitions of an ionic liquid confined in a mesoporous carbon host. Carbon 202, pages 571-582.
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Guoying Zhang, Xue Fan, Qi Zhang, Qikai Li, Yuan Wu & Mo Li. (2022) Partial disordering and homogeneous melting in multicomponent systems. Acta Materialia 239, pages 118281.
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Ali Ghandili & Vahid Moeini. (2022) A general model for isochoric heat capacity of matter in different states by introducing thermodynamic dimension concept. Fluid Phase Equilibria 555, pages 113355.
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Aleksandra Drozd-Rzoska, Sylwester J. Rzoska, Aleksander Szpakiewicz-Szatan, Joanna Łoś & Kazimierz Orzechowski. (2022) Pretransitional and premelting effects in menthol. Chemical Physics Letters 793, pages 139461.
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A Ostrik & D Nikolaev. (2022) Shock induced melting of sapphire. Journal of Physics: Conference Series 2154:1, pages 012010.
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Drew Lilley, Akanksha K. Menon, Sumanjeet Kaur, Sean Lubner & Ravi S. Prasher. (2021) Phase change materials for thermal energy storage: A perspective on linking phonon physics to performance. Journal of Applied Physics 130:22.
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Subramanian Raju. (2021) Entropy of Alloy Phases: A Macroscopic Perspective. Metallurgical and Materials Transactions A 52:12, pages 5274-5292.
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Yuri M. Yevdokimov, Sergei G. Skuridin, Victor I. Salyanov, Sergei V. Semenov & E.I. Kats. (2020) Multiplicity of 're-entrant' cholesteric structures in DNA liquid-crystalline dispersions. Uspekhi Fizicheskih Nauk 191:09, pages 999-1015.
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Yu M Yevdokimov, S G Skuridin, V I Salyanov, S V Semenov & E I Kats. (2021) Multiplicity of ‘re-entrant’ cholesteric structures in DNA liquid-crystalline dispersions. Physics-Uspekhi 64:9, pages 947-963.
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Jack F. Douglas & Wen-Sheng Xu. (2021) Equation of State and Entropy Theory Approach to Thermodynamic Scaling in Polymeric Glass-Forming Liquids. Macromolecules 54:7, pages 3247-3269.
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Ratan Lal Jaiswal & Brijesh Kumar Pandey. (2021) Modeling for the study of thermophysical properties of metallic nanoparticles. SN Applied Sciences 3:4.
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Yu. N. Starodubtsev & V. S. Tsepelev. (2022) Analysis of the Kinematic Viscosity and Self-Diffusion of Liquid Metals at the Melting Temperature. High Temperature 59:2-6, pages 192-197.
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Alexander Kholmanskiy. (2021) Hydrogen bonds and dynamics of liquid water and alcohols. Journal of Molecular Liquids 325, pages 115237.
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Donald M. Nicholson, C. Y. Gao, Marshall T. McDonnell, Clifton C. Sluss & David J. Keffer. (2021) Entropy Pair Functional Theory: Direct Entropy Evaluation Spanning Phase Transitions. Entropy 23:2, pages 234.
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Melvin M. Vopson, Nassina Rogers & Ian Hepburn. (2020) The generalized Lindemann melting coefficient. Solid State Communications 318, pages 113977.
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Brent Fultz. 2020. Phase Transitions in Materials. Phase Transitions in Materials.
Jie DengKanani K.M. Lee. (2019) Melting temperature depression due to the electronic spin transition of iron. American Mineralogist 104:8, pages 1189-1196.
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V. Drchal, J. Kudrnovský, D. Wagenknecht & I. Turek. (2019) Alloy disorder and fluctuating magnetic moments in the Earth’s core. Journal of Magnetism and Magnetic Materials 475, pages 767-771.
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Edward MorseEdward Morse. 2018. Nuclear Fusion. Nuclear Fusion 345 412 .
V.N. Chuvildeev & A.V. Semenycheva. (2016) The role of the “Casimir force analogue” at the microscopic processes of crystallization and melting. Annals of Physics 373, pages 390-398.
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Lorenzo Costigliola, Thomas B. Schrøder & Jeppe C. Dyre. (2016) Freezing and melting line invariants of the Lennard-Jones system. Physical Chemistry Chemical Physics 18:21, pages 14678-14690.
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Isao Tanaka & Atsuto Seko. 2016. Information Science for Materials Discovery and Design. Information Science for Materials Discovery and Design 173 186 .
Hang T.T. Nguyen, Vo Van Hoang & Le Nguyen Tue Minh. (2014) Melting of crystalline silicon thin films. Computational Materials Science 89, pages 97-101.
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Yrjö H. Roos, Marcus Karel, Theodore P. Labuza, Harry Levine, Mohamed Mathlouthi, David Reid, Evgenyi Shalaev & Louise Slade. (2013) Melting and Crystallization of Sugars in High-Solids Systems. Journal of Agricultural and Food Chemistry 61:13, pages 3167-3178.
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A. V. Granato, D. M. Joncich & V. A. Khonik. (2010) Melting, thermal expansion, and the Lindemann rule for elemental substances. Applied Physics Letters 97:17.
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N.K. Bhatt, B.Y. Thakore, P.R. Vyas & A.R. Jani. (2010) High-temperature vibrational response and high-pressure melting curve of lead. Physica B: Condensed Matter 405:16, pages 3492-3496.
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