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Hundertmark D, Jex M, Lange M. Quantum Systems at The Brink. Existence and Decay Rates of Bound States at Thresholds; Atoms. arXiv:1908.05016. 2019 :14.
Hundertmark D, Jex M, Lange M. Quantum Systems at The Brink. Existence and Decay Rates of Bound States at Thresholds; Helium. arXiv:1908.04883. 2019 :25.
Hundertmark D, Jex M, Lange M. Quantum Systems at The Brink. Existence and Decay Rates of Bound States at Thresholds; Critical Potentials and dimensionality. arXiv:2107.14128. 2021 :8.
Hundertmark D, Jex M, Lange M. Quantum Systems at The Brink: Properties of Atomic Bound States at The Ionization Threshold. 2020 .
Crismale V, Lazzaroni G. Quasistatic crack growth based on viscous approximation: a model with branching and kinking. Nonlinear Differential Equations and Applications NoDEA [Internet]. 2017 ;24:7. Available from: https://doi.org/10.1007/s00030-016-0426-6
Lazzaroni G. Quasistatic crack growth in finite elasticity with Lipschitz data. {ANNALI DI MATEMATICA PURA ED APPLICATA}. 2011 ;{190}:{165-194}.
Dal Maso G, Lazzaroni G. Quasistatic crack growth in finite elasticity with non-interpenetration. Ann. Inst. H. Poincare Anal. Non Lineaire 27 (2010) 257-290 [Internet]. 2010 . Available from: http://hdl.handle.net/1963/3397
Lazzaroni G, Nardini L. On the Quasistatic Limit of Dynamic Evolutions for a Peeling Test in Dimension One. Journal of Nonlinear Science [Internet]. 2018 ;28:269–304. Available from: https://doi.org/10.1007/s00332-017-9407-0
R
Breiding P, Kozhasov K, Lerario A. Random spectrahedra.; 2017.
Lazzaroni G, Rossi R, Thomas M, Toader R. Rate-independent damage in thermo-viscoelastic materials with inertia. SISSA; 2014. Available from: http://urania.sissa.it/xmlui/handle/1963/7444
Sartori A, Cammi A, Luzzi L, Rozza G. A Reduced Basis Approach for Modeling the Movement of Nuclear Reactor Control Rods. NERS-14-1062; ASME J of Nuclear Rad Sci, 2, 2 (2016) 021019 [Internet]. 2016 ;2(2):8. Available from: http://urania.sissa.it/xmlui/handle/1963/35192
Sartori A, Cammi A, Luzzi L, Rozza G. Reduced basis approaches in time-dependent noncoercive settings for modelling the movement of nuclear reactor control rods. Communications in Computational Physics [Internet]. 2016 ;(in press). Available from: http://urania.sissa.it/xmlui/handle/1963/34963
Lassila T, Manzoni A, Quarteroni A, Rozza G. A Reduced Computational and Geometrical Framework for Inverse Problems in Haemodynamics. SISSA; 2013.
Lorenzi S, Cammi A, Luzzi L, Rozza G. A reduced order model for investigating the dynamics of the Gen-IV LFR coolant pool. Applied Mathematical Modelling [Internet]. 2017 ;46:263-284. Available from: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85020006623&doi=10.1016%2fj.apm.2017.01.066&partnerID=40&md5=f6e5715037eb0ef2ecb9ae03f373294f
Lorenzi S, Cammi A, Luzzi L, Rozza G. A reduced order model for investigating the dynamics of the Gen-IV LFR coolant pool. Applied Mathematical Modelling [Internet]. 2017 ;46:263-284. Available from: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85020006623&doi=10.1016%2fj.apm.2017.01.066&partnerID=40&md5=f6e5715037eb0ef2ecb9ae03f373294f
Sartori A, Baroli D, Cammi A, Luzzi L, Rozza G. A reduced order model for multi-group time-dependent parametrized reactor spatial kinetics. 22nd International Conference on Nuclear Engineering ICONE22 [Internet]. 2014 :V005T17A048-V005T17A048. Available from: http://urania.sissa.it/xmlui/handle/1963/35123
Lassila T, Manzoni A, Quarteroni A, Rozza G. A reduced-order strategy for solving inverse Bayesian identification problems in physiological flows. SISSA; 2013.
Lassila T, Manzoni A, Rozza G. Reduction Strategies for Shape Dependent Inverse Problems in Haemodynamics. SISSA; 2013.
Carlet G, Lorenzoni P, Raimondo A. The reductions of the dispersionless 2D Toda hierarchy and their Hamiltonian structures. J. Phys. A 43 (2010) 045201 [Internet]. 2010 . Available from: http://hdl.handle.net/1963/3846
Hasler D, Lange M. Renormalization analysis for degenerate ground states. J. Funct. Anal. [Internet]. 2018 ;275:103–148. Available from: https://doi.org/10.1016/j.jfa.2018.03.005

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