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Strongly Interacting Matter under Rotation / Francesco Becattini, Jinfeng Liao, Michael Lisa editors
Strongly Interacting Matter under Rotation / Francesco Becattini, Jinfeng Liao, Michael Lisa editors
Pubbl/distr/stampa Cham, : Springer, 2021
Descrizione fisica viii, 396 p. : ill. ; 24 cm
Soggetto topico 00B15 - Collections of articles of miscellaneous specific interest [MSC 2020]
76-XX - Fluid mechanics [MSC 2020]
76U05 - General theory of rotating fluids [MSC 2020]
76Wxx - Magnetohydrodynamics and electrohydrodynamics [MSC 2020]
81-XX - Quantum theory [MSC 2020]
81V35 - Nuclear physics [MSC 2020]
82-XX - Statistical mechanics, structure of matter [MSC 2020]
82C22 - Interacting particle systems in time-dependent statistical mechanics [MSC 2020]
82C40 - Kinetic theory of gases in time-dependent statistical mechanics [MSC 2020]
82D10 - Statistical mechanical studies of plasmas [MSC 2020]
83-XX - Relativity and gravitational theory [MSC 2020]
85-XX - Astronomy and Astrophysics [MSC 2020]
Soggetto non controllato Fluid- and aerodynamics
Heavy Ion Collision
Polarization in Relativistic Fluids
Quantum Chromodynamics
Quark-Gluon Plasma
Relativistic Rotating Matter
Spin Transport Theory
Vorticity
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNICAMPANIA-VAN00282851
Cham, : Springer, 2021
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui
Thermally-driven Mesoscale Flows and their Interaction with Atmospheric Boundary Layer Turbulence : Doctoral Thesis accepted by Universidad Complutense de Madrid, Spain / Jon Ander Arrillaga Mitxelena
Thermally-driven Mesoscale Flows and their Interaction with Atmospheric Boundary Layer Turbulence : Doctoral Thesis accepted by Universidad Complutense de Madrid, Spain / Jon Ander Arrillaga Mitxelena
Autore Arrillaga Mitxelena, Jon Ander
Pubbl/distr/stampa Cham, : Springer, 2020
Descrizione fisica xxvi, 152 p. : ill. ; 24 cm
Soggetto topico 76-XX - Fluid mechanics [MSC 2020]
86-XX - Geophysics [MSC 2020]
86A10 - Meteorology and atmospheric physics [MSC 2020]
86A08 - Climate science and climate modeling [MSC 2020]
76U05 - General theory of rotating fluids [MSC 2020]
Soggetto non controllato Atmospheric Boundary Layer
Boundary Layer Turbulence
CO2 Variability
Mesoscale Meteorology
Mountain Breezes
Sea Breezes
WRF Modelling
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Titolo uniforme
Record Nr. UNICAMPANIA-VAN0249964
Arrillaga Mitxelena, Jon Ander  
Cham, : Springer, 2020
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui
Thermally-driven Mesoscale Flows and their Interaction with Atmospheric Boundary Layer Turbulence : Doctoral Thesis accepted by Universidad Complutense de Madrid, Spain / Jon Ander Arrillaga Mitxelena
Thermally-driven Mesoscale Flows and their Interaction with Atmospheric Boundary Layer Turbulence : Doctoral Thesis accepted by Universidad Complutense de Madrid, Spain / Jon Ander Arrillaga Mitxelena
Autore Arrillaga Mitxelena, Jon Ander
Pubbl/distr/stampa Cham, : Springer, 2020
Descrizione fisica xxvi, 152 p. : ill. ; 24 cm
Soggetto topico 76-XX - Fluid mechanics [MSC 2020]
76U05 - General theory of rotating fluids [MSC 2020]
86-XX - Geophysics [MSC 2020]
86A08 - Climate science and climate modeling [MSC 2020]
86A10 - Meteorology and atmospheric physics [MSC 2020]
Soggetto non controllato Atmospheric Boundary Layer
Boundary Layer Turbulence
CO2 Variability
Mesoscale Meteorology
Mountain Breezes
Sea Breezes
WRF Modelling
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Titolo uniforme
Record Nr. UNICAMPANIA-VAN00249964
Arrillaga Mitxelena, Jon Ander  
Cham, : Springer, 2020
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui