Showing 1 - 20 results of 41 for search '"Comm. Math. Phys"', query time: 1.80s Narrow search Results per page 10 20 50 Sort Relevance Date Descending Date Ascending

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Selected Papers: E.L. Basor, T. Ehrhardt. Asymptotics of block Toeplitz determinants and the classical dimer model, Comm. Math. Phys., 274, 

Math. Phys.}, FJOURNAL = {Communications in Mathematical Physics}, VOLUME = {200}, YEAR = {1999}, NUMBER = {2}, PAGES = {421--444}, ISSN = {0010-3616}, CODEN = {CMPHAY}, MRCLASS = {58E15 (53C21)}, MRNUMBER = {2000c:58024}, MRREVIEWER = {Olivier Druet}, DOI = {10.1007/s002200050536}, ZBLNUMBER = {0928.35057}, } J. Math. Phys. 61 (2020), no. 8, 1513-1596. arXiv - Article (with C. Boccato, S. Cenatiempo, B. Schlein) Optimal Rate for Bose-Einstein Condensation in the Gross-Pitaevskii Regime.

Comm math phys

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Phys Rapidly rotating stars, Comm. Math. Phys. 368 (2019), 701-721, with Yilun Wu. Existence of rotating magnetic stars, Physica D 397 (2019), 65-74, with Juhi Jang and Yilun Wu. Upper bound on the slope of steady water waves with small adverse vorticity J. Diff. Eqns. 264 (2018), 4136-4151, with Seung Wook So. Calculus I (Math 140) (UMB, Fall 2018 and Spring 2019) Fourth year course on Differential topology (Imperial, 2016) Fourth year course Differential topology (Imperial, 2015) RTG summer research program for undergraduates (Homological algebra) (Berkeley, 2012) Appointments held.

Gunnar Källén 1926-1968, Comm. Math. Phys. 11 (1968) 181-182. Hämtad från "https://sv.rilpedia.org/wiki/Gunnar_K%C3%A4ll%C3%A9n".

Gesch. d. Math.

Comm math phys

Rapidly rotating stars, Comm. Math. Phys. 368 (2019), 701-721, with Yilun Wu. Existence of rotating magnetic stars , Physics D 397 (2019), 65-74, with Juhi Jang and Yilun Wu. Upper bound on the slope of steady water waves with small adverse vorticity J. Diff. Eqns. 264 …

Comm. 182 1999 (2011), (arXiv:1008.0970v2 [physics.comp-ph]). A.14. Comm. Math.

Comm. Phys. Math., Vol. 33 Nr. 2, 1966. Gordon equation with light cone data. Lundberg, Lars Erik. The Klein Gordon equation with light cone data.
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Comm math phys

StartTidskrifterComm. Math. Phys. Forskningsoutput. Comm.

Sci., 5, 2007, p. theory in mathematical physics, Contemp.
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3D mathematical model of contact-separation and single-electrode mode of the Zamolodchikov algebra1992Ingår i: Comm. Math. Phys., Vol. 145, s.

158 (2): 341-371 (1993). ABOUT.


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J. Math. Phys. 61 (2020), no. 8, 1513-1596. arXiv - Article (with C. Boccato, S. Cenatiempo, B. Schlein) Optimal Rate for Bose-Einstein Condensation in the Gross-Pitaevskii Regime. Comm. Math. Phys. 376 (2020), 1311-1395. arXiv - Article (with C. Boccato, S. Cenatiempo, B. Schlein) Bogoliubov Theory in the Gross-Pitaevskii Limit.

Math.

Baylor's Center for Astrophysics, Space Physics Induced Gravity,” R.-G. Cai, H.-S. Zhang and A. Wang,. Comm. Theor. Phys., Vol. 44, pp. 948-954,2005. “No-Go Theorem in math and science is that they employ a rigorous curricu- lum and 

The Comm. Math. Phys. acronym/abbreviation definition.

308 (2), 307-354 (2013) [arXiv] Comm. Math. Phys. - Communications in Mathematical Physics MNRAS Monthly Notices of the Royal Astronomical Society JGR Journal of Geophysical Research Ian Affleck, Tom Kennedy, Elliott H. Lieb, Hal Tasaki "Valence bond ground states in isotropic quantum antiferromagnets," Communications in Mathematical Physics, Comm. Math.