Register      Login
Australian Journal of Physics Australian Journal of Physics Society
A journal for the publication of original research in all branches of physics

Articles citing this paper

Theory of Melting: Thermodynamic Basis of Lindemann's Law

FD Stacey and RD Irvine
30(6) pp.631 - 640


55 articles found in Crossref database.

Diffusion and wetting behaviors of Ag nanoparticle and Ag nanowire pastes for laser brazing of Inconel 718
Bridges Denzel, Ma Chaoli, Zhang Suhong, Xue Songbai, Feng Zhili, Hu Anming
Welding in the World. 2018 62(1). p.169
The generalized Lindemann melting coefficient
Vopson Melvin M., Rogers Nassina, Hepburn Ian
Solid State Communications. 2020 318 p.113977
Chemical stability of molten 2,4,6-trinitrotoluene at high pressure
Dattelbaum Dana M., Chellappa Raja S., Bowden Patrick R., Coe Joshua D., Margevicius Madeline A.
Applied Physics Letters. 2014 104(2).
Thermal regime of the Earth's outer core
Ullmann W., Walzer U.
Pure and Applied Geophysics PAGEOPH. 1981 119(1). p.59
A general model for isochoric heat capacity of matter in different states by introducing thermodynamic dimension concept
Ghandili Ali, Moeini Vahid
Fluid Phase Equilibria. 2022 555 p.113355
The earth's thermal profile: Is there a mid-mantle thermal boundary layer?
Spiliopoulos S., Stacey F.D.
Journal of Geodynamics. 1984 1(1). p.61
Effect of TiO2 nanoparticles on the microstructure, mechanical and thermal properties of rapid quenching SAC355 lead-free solder alloy
Al-sorory Hamed, Gumaan Mohammed S., Shalaby Rizk Mostafa
Soldering & Surface Mount Technology. 2023 35(1). p.18
The Earth's Core (1987)
Phase transformation behavior in nanoalloys
Tiwari Khushubo, Manolata Devi M., Biswas Krishanu, Chattopadhyay Kamanio
Progress in Materials Science. 2021 121 p.100794
Prediction of the Melting Points of Double Halides
Kiseleva N. N., Dudarev V. A., Stolyarenko A. V., Dokukin A. A., Sen’ko O. V., Kuznetsova Yu. O.
Журнал неорганической химии. 2023 68(5). p.623
Melting Behavior of B1 FeO Up To 186 GPa: Existence of FeO‐Rich Melts in the Lowermost Mantle
Fu Suyu, Hirose Kei
Geophysical Research Letters. 2024 51(9).
Fundamental thermodynamic relations and silicate melting with implications for the constitution of D″
Stixrude Lars, Bukowinski M. S. T.
Journal of Geophysical Research: Solid Earth. 1990 95(B12). p.19311
Thermal stability of ionic solids: A melting points survey
Glasser Leslie
Chemical Thermodynamics and Thermal Analysis. 2022 8 p.100092
Applications of liquid state physics to the Earth's core
Stevenson D.J.
Physics of the Earth and Planetary Interiors. 1980 22(1). p.42
On the activation volume for creep and its variation with depth in the Earth's lower mantle
Poirier J.P., Liebermann R.C.
Physics of the Earth and Planetary Interiors. 1984 35(4). p.283
Melting Is Well-Known, but Is It Also Well-Understood?
de With Gijsbertus
Chemical Reviews. 2023 123(23). p.13713
Advances in Geophysics Volume 26 (1984)
Loper David E.
High Performance Computing in Science and Engineering’ 04 (2005)
Walzer Uwe, Hendel Roland, Baumgardner John
The cooling Earth: A reappraisal
Stacey Frank D.
Physics of the Earth and Planetary Interiors. 1980 22(2). p.89
The Fe (Iron) system
Swartzendruber L. J.
Bulletin of Alloy Phase Diagrams. 1982 3(2). p.161
Prediction of the Melting Points of Double Halides
Kiselyova N. N., Dudarev V. A., Stolyarenko A. V., Dokukin A. A., Sen’ko O. V., Kuznetsova Yu. O.
Russian Journal of Inorganic Chemistry. 2023 68(5). p.555
Heat transfer—A review of 1978 literature
Eckert E.R.G., Sparrow E.M., Goldstein R.J., Scott C.J., Pfender E., Patankar S.V., Ramsey J.W.
International Journal of Heat and Mass Transfer. 1979 22(11). p.1469
First-principles study of thermoelasticity and structural phase diagram of CaO
Vyas Pooja, Patel A. B., Bhatt N. K.
Physical Review B. 2023 107(1).
ZnO nanoparticles and compositional dependence of structural, thermal, mechanical and electrical properties of eutectic SAC355 lead-free solder
Al-sorory Hamed, Gumaan Mohammed S., Shalaby Rizk Mostafa
Soldering & Surface Mount Technology. 2023 35(3). p.125
Evolution of the Earth (1981)
Anderson Orson L.
A critical re-examination of the thermodynamic basis of Lindemann's melting law
Stacey Frank D., Spiliopoulos Spiro S., Barton Mark A.
Physics of the Earth and Planetary Interiors. 1989 55(3-4). p.201
Superheating of free-standing nanometals under pressure
Pachauri U., Joshi D. P., Arora N.
EPL (Europhysics Letters). 2019 126(2). p.26001
The Physics of the Earth's Core (1986)
MELCHIOR PAUL
Quantitative Metrics for Assessing Positional and Orientational Order in Colloidal Crystals
Bagheri Payam, Almudallal Ahmad M., Yethiraj Anand, Poduska Kristin M.
Langmuir. 2015 31(30). p.8251
Laser brazing of Inconel® 718 using Ag and Cu-Ag nanopastes as brazing materials
Bridges Denzel, Ma Chaoli, Palmer Zane, Wang Shutong, Feng Zhili, Hu Anming
Journal of Materials Processing Technology. 2017 249 p.313
High-Pressure Research in Geophysics (1982)
Brown J. M., Mcqueen R. G.
Thermodynamics of the system Fe--FeO--MgO at high pressure and temperature and a model for formation of the Earth's core
McCammon C. A., Ringwood A. E., Jackson I.
Geophysical Journal International. 1983 72(3). p.577
Properties of iron at the Earth's core conditions
Anderson O. L.
Geophysical Journal International. 1986 84(3). p.561
The Bakerian Lecture, 1983 - The Earth’s core: its composition, formation and bearing upon the origin of the Earth
Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences. 1984 395(1808). p.1
Melting temperature prediction by thermoelastic instability: An ab initio modelling, for periclase (MgO)
Merli Marcello, Pavese Alessandro
Calphad. 2021 73 p.102259
Shock-induced superheating and melting curves of geophysically important minerals
Luo Sheng-Nian, Ahrens Thomas J.
Physics of the Earth and Planetary Interiors. 2004 143-144 p.369
Thermal and transport properties of mantle rock at high pressure: Applications to super-Earths
Stamenković Vlada, Breuer Doris, Spohn Tilman
Icarus. 2011 216(2). p.572
Melting of iron under core conditions
Brown J. M., McQueen R. G.
Geophysical Research Letters. 1980 7(7). p.533
Some thermal consequences of a gravitationally powered dynamo
Loper David E.
Journal of Geophysical Research: Solid Earth. 1978 83(B12). p.5961
Handbook of Terrestrial Heat-Flow Density Determination (1988)
Uyeda S., Haenel R., Mongelli F., Stegena L., Delisle G.
Earth's Core: Dynamics, Structure, Rotation (2003)
Anderson Orson L.
Some rheological properties of the Earth's mantle
Mulargia Francesco, Quareni Francesca, Boschi Enzo
Tectonophysics. 1990 179(1-2). p.151
Applications of thermodynamics to fundamental earth physics
Stacey F. D.
Geophysical Surveys. 1977 3(2). p.175
Evolution of the Earth (1981)
Stacey Frank D.
A thermal model of the earth
Stacey Frank D.
Physics of the Earth and Planetary Interiors. 1977 15(4). p.341
Validity of the Sutherland-Lindemann law and melting temperatures in the Earth's interior
Mulargia F., Quareni F.
Geophysical Journal International. 1988 92(2). p.269
Elastic Properties and Equations of State (1988)
Brown J. M., McQueen R. G.
The modified van der Waals equation of state
Rault Jacques
The European Physical Journal B. 2019 92(1).
The depth of mantle convection
Elsasser Walter M., Olson Peter, Marsh Bruce D.
Journal of Geophysical Research: Solid Earth. 1979 84(B1). p.147
On the genesis of the Earth's magnetism
Roberts Paul H, King Eric M
Reports on Progress in Physics. 2013 76(9). p.096801
Effect of Al2O3 Nanoparticle Addition on the Microstructure, Mechanical, Thermal, and Electrical Properties of Melt-Spun SAC355 Lead-Free Solder for Electronic Packaging
Al-sorory Hamed, Gumaan Mohammed S., Shalaby Rizk Mostafa
Journal of Materials Engineering and Performance. 2023 32(19). p.8600
Finite strain theories and comparisons with seismological data
Stacey F. D., Brennan B. J., Irvine R. D.
Geophysical Surveys. 1981 4(3). p.189
The high‐pressure triple points of iron and their effects on the heat flow from the Earth's core
Anderson Orson L.
Journal of Geophysical Research: Solid Earth. 1990 95(B13). p.21697
Why does thermal shock produce smaller particles of zeolite?
Wibowo Edy, Sutisna , Rokhmat Mamat, Khairurrijal , Abdullah Mikrajuddin
Powder Technology. 2016 301 p.911
Freezing and melting line invariants of the Lennard-Jones system
Costigliola Lorenzo, Schrøder Thomas B., Dyre Jeppe C.
Physical Chemistry Chemical Physics. 2016 18(21). p.14678
Abstract PDF (3 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email