Index of /video/if2014/webm

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[PARENTDIR]Parent Directory -  
[WEBM]01_Voronov.webm114MVoronov - Theoretical physics at BLTP 0h 16m
[WEBM]01_Voronov_screen.webm 15MVoronov - Theoretical physics at BLTP 0h 16m
[WEBM]02_Ramakrishnan.webm254MRamakrishnan - A Ginzburg-Landau like theory for high temperature superconductivity in the cuprates 0h 35m
[WEBM]02_Ramakrishnan_screen.webm 31MRamakrishnan - A Ginzburg-Landau like theory for high temperature superconductivity in the cuprates 0h 35m
[WEBM]03_Mukhopadhyay.webm204MMukhopadhyay - Condensed matter physics research in Department of Atomic Energy 0h 30m
[WEBM]03_Mukhopadhyay_screen.webm 33MMukhopadhyay - Condensed matter physics research in Department of Atomic Energy 0h 30m
[WEBM]04_Priezzhev.webm144MPriezzhev - Deepak Dhar and statistical mechanics in BLTP 0h 25m
[WEBM]04_Priezzhev_screen.webm 22MPriezzhev - Deepak Dhar and statistical mechanics in BLTP 0h 25m
[WEBM]05_Jolos.webm216MJolos - Structure of nuclei with Z~100 0h 28m
[WEBM]05_Jolos_screen.webm 27MJolos - Structure of nuclei with Z~100 0h 28m
[WEBM]09_Melezhik.webm254MMelezhik - Ultracold few-body systems in optical traps 0h 34m
[WEBM]10_Fedoruk.webm266MFedoruk - New models of supersymmetric quantum mechanics and supersymmetric field theories 0h 35m
[WEBM]10_Fedoruk_screen.webm 40MFedoruk - New models of supersymmetric quantum mechanics and supersymmetric field theories 0h 35m
[WEBM]11_Gangopadhyay.webm230MGangopadhyay - Hawking temperature in the context of dark energy 0h 33m
[WEBM]11_Gangopadhyay_screen.webm 31MGangopadhyay - Hawking temperature in the context of dark energy 0h 33m
[WEBM]12_Fursaev.webm266MFursaev - Towards derivation of holographic entanglement entropy 0h 35m
[WEBM]12_Fursaev_screen.webm 28MFursaev - Towards derivation of holographic entanglement entropy 0h 35m
[WEBM]13_Saha.webm180MSaha - Spinor field in cosmology: problems and possibilities 0h 23m
[WEBM]13_Saha_screen.webm 26MSaha - Spinor field in cosmology: problems and possibilities 0h 23m
[WEBM]14_Baushev.webm262MBaushev - Dark matter as an astrophysical object: how to fit observational data? 0h 34m
[WEBM]14_Baushev_screen.webm 28MBaushev - Dark matter as an astrophysical object: how to fit observational data? 0h 34m
[WEBM]15_Khvedelidze.webm257MKhvedelidze - Towards an algebraic description of the mixed quantum states 0h 38m
[WEBM]15_Khvedelidze_screen.webm 31MKhvedelidze - Towards an algebraic description of the mixed quantum states 0h 38m
[WEBM]16_Mukhopadhyay.webm304MMukhopadhyay - Non-linear sigma model, loop space and tubular geometry 0h 40m
[WEBM]16_Mukhopadhyay_screen.webm 37MMukhopadhyay - Non-linear sigma model, loop space and tubular geometry 0h 40m
[WEBM]17_Ray.webm304MRay - Partition function of Beta-Gamma system on some orbifolds 0h 38m
[WEBM]17_Ray_screen.webm 33MRay - Partition function of Beta-Gamma system on some orbifolds 0h 38m
[WEBM]18_Tyurin.webm192MTyurin - Exotic Lagrangian tori in toric symplectic manifolds 0h 25m
[WEBM]18_Tyurin_screen.webm 24MTyurin - Exotic Lagrangian tori in toric symplectic manifolds 0h 25m
[WEBM]19_Pirozhenko.webm240MPirozhenko - Mathematical aspects of quantum vacuum studies 0h 32m
[WEBM]19_Pirozhenko_screen.webm 31MPirozhenko - Mathematical aspects of quantum vacuum studies 0h 32m
[WEBM]20_Silenko.webm250MSilenko - General properties of a Dirac particle in Riemannian spacetimes 0h 34m
[WEBM]20_Silenko_screen.webm 32MSilenko - General properties of a Dirac particle in Riemannian spacetimes 0h 34m
[WEBM]21_Shnir.webm195MShnir - Isospinning knots and planar Skyrmions 0h 26m
[WEBM]21_Shnir_screen.webm 25MShnir - Isospinning knots and planar Skyrmions 0h 26m