Thermodynamics at the meso- and microscopic level

Authors University Paper title Attached files
Babac G
Sisman A
Energy Institute, Istanbul Technical University Thermosize effects and thermodynamic analysis of a thermosize power cycle JETC10_Babac.pdf
Burlak, G.
Díaz-de-Anda, A.
Karlovich, Yu.
Klimov, A.B.
Universidad Autónoma del Estado de Morelos, Cuernavaca, Mor. México Critical behaviour of non-equilibrium nanoemitter radiation in a percolation material at the mesoscopic level Burlak_JETC09.pdf
Chervko, K.
Gavryushenko, D.
Sysoev, V.
Kiev National University Stationary droplet evaporation in the diffusive regime: diffusive flow, entropy production, Onsager’s coefficients evaluation Cherevko_Gavryushenko_Sysoev.pdf
Feldmann, Tova
Kosloff, Ronnie
Hebrew University, Jerusalem Quantum refrigerators copenhabst2.pdf
Maruszewski,B.T. Poznan University of Technology Unconventional thermodynamical model of vortex array in type-II superconductors Kopenhagen 2009.pdf
Ozturk ZF
Sisman A
Energy Institute, Istanbul Technical University Quantum size effects on self-thermal diffusion of gases JETC10_Ozturk.pdf
Papenfuss, C. Technical University of Berlin Comparison of macroscopic internal variable theory and mesoscopic theory based on the Second Law of Thermodynamics Copenhagen_abstract.pdf
Rubi, J. M. Barcelona Bringing thermodynamics to non-equilibrium microscopic processes Abstract.JETC102009[1].pdf
Santamaria-Holek, I.
Barrios, G.
Rubi, J. M.
Universidad Nacional Autonoma de Mexico A mesoscopic entropy production analysis of the transition to the irreversibility in sheared suspensions AbstractCopen2009.pdf
Semenov, S. N.
Schimpf, M. E.
Institute of Biochemical Physics RAS; Department of Chemistry, Boise State University, Boise, USA Phase layering in binary liquid mixtures in temperature gradients phase demixing in binary liquid mixtures - extended absratct.pdf
Sisman, A
Firat, C
Ozturk, ZF
Istanbul Technical University Inhomogeneous density distributions of ideal gases in nano structures JETC10_Sisman.pdf
Vazquez, F.
Markus, F.
Gambar, K.
Budapest University of Technology and Economics Heat transfer in quantum devices at low temperatures: a classical field theory approach abstract_f_vazquez_et_al.pdf
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