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Josip Tambača
(229006)

 
 
 
Verzija za printanje   
 
  Poglavlja u knjizi
 

1. Čanić, Suncica; Delle Monache, Maria Laura; Piccoli, Benedetto; Qiu, Jing-Mei; Tambača, Josip.
Numerical Methods for Hyperbolic Nets and Networks // Handbook of Numerical Methods for Hyperbolic Problems — Applied and Modern Issues / Abgrall, Rémi ; Shu, Chi-Wang (ur.).
Amsterdam : North Holland, 2017. Str. 435-463.

2. Tambača, Josip; Čanić, Sunčica; Paniagua, David.
A Novel Approach to Modeling Coronary Stents Using a Slender Curved Rod Model: A Comparison Between Fractured Xience-Like and Palmaz-Like Stents // Applied and Numerical Partial Differential Equations / Fitzgibbon, William ; Kuznetsov, Yuri ; Neittaanmäki, Pekka ; Périaux, Jacques ; Pironneau, Olivier (ur.).
Dordrecht Heidelberg London New York : Springer Netherlands, 2010. Str. 41-58.
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  Izvorni znanstveni i pregledni radovi u CC časopisima
 

1. Bukač, Martina; Čanić, Sunčica; Tambača, Josip; Wang, Yifan.
Fluid–structure interaction between pulsatile blood flow and a curved stented coronary artery on a beating heart: A four stent computational study. // Computer Methods in Applied Mechanics and Engineering. 350 (2019) ; 679-700 (članak, znanstveni). URL link to work

2. Čanić, Sunčica; Galić, Marija; Ljulj, Matko; Muha, Boris; Tambača, Josip; Wang, Yifan.
Analysis of a linear 3D fluid–mesh–shell interaction problem. // Zeitschrift fur angewandte mathematik und physik. 70 (2019) , 2; (članak, znanstveni). URL link to work

3. Grubišić, Luka; Tambača, Josip.
Direct solution method for the equilibrium problem for elastic stents. // Numerical linear algebra with applications. 26 (2019) , 3; (članak, znanstveni). URL link to workURL link to work

4. Mikelić, Andro; Tambača, Josip.
Derivation of a poroelastic elliptic membrane shell model. // Applicable Analysis. 98 (2019) , 1-2; 136-161 (članak, znanstveni). URL link to work

5. Čanić, Sunčica; Galović, Matea; Ljulj, Matko; Tambača, Josip.
A dimension-reduction based coupled model of mesh- reinforced shells. // SIAM journal on applied mathematics. 77 (2017) , 2; 744-769 (članak, znanstveni). URL link to workURL link to work

6. Kosor, Mate; Tambača, Josip.
Nonlinear bending-torsion model for curved rods with little regularity. // Mathematics and mechanics of solids. 22 (2017) , 4; 708-717 (članak, znanstveni). URL link to workURL link to work

7. Ljulj, Matko; Tambača, Josip.
Iterative methods for solving a poroelastic shell model of Naghdi's type. // Mathematical methods in the applied sciences. 40 (2017) , 12; 4425-4435 (članak, znanstveni). URL link to workURL link to work

8. Mikelić, Andro; Tambača, Josip.
Derivation of a poroelastic flexural shell model. // Multiscale modeling & simulation. 14 (2016) , 1; 364-397 (članak, znanstveni). URL link to workURL link to work

9. Tambača, Josip; Tutek, Zvonimir.
A new linear Naghdi type shell model for shells with little regularity. // Applied mathematical modelling. 40 (2016) , 23/24; 10549-10562 (članak, znanstveni). URL link to workURL link to work

10. Marohnić, Maroje; Tambača, Josip.
Derivation of a linear prestressed elastic rod model from three-dimensional elasticity. // Mathematics and mechanics of solids. 20 (2015) , 10; 1215-1233 (članak, znanstveni). URL link to work

11. Marohnić, Maroje: Tambača, Josip.
On a model of a flexural prestressed shell. // Mathematical methods in the applied sciences. 38 (2015) , 18; 5231-5241 (članak, znanstveni). URL link to workURL link to work

12. Tambača, Josip; Žugec, Bojan.
One-dimensional quasistatic model of biodegradable elastic curved rods. // Zeitschrift fur angewandte mathematik und physik. 66 (2015) , 5; 2759-2785 (članak, znanstveni). URL link to workURL link to work

13. Tambača, Josip.
A New Linear Shell Model for Shells with Little Regularity. // Journal of elasticity. 117 (2014) , 2; 163-188 (članak, znanstveni). URL link to workURL link to work

14. Bukač, Martina; Čanić, Sunčica; Glowinski, Roland; Tambača, Josip; Quaini, Annalisa.
Fluid-structure interaction in blood flow capturing non-zero longitudinal structure displacement. // Journal of computational physics. 235 (2013) ; 515-541 (članak, znanstveni). URL link to workURL link to work

15. Marohnić, Maroje; Tambača, Josip.
Derivation of the linear elastic string model from three-dimensional elasticity. // Journal of elasticity. 111 (2013) , 1; 41-65 (članak, znanstveni). URL link to workURL link to work

16. Čanić, Sunčica; Tambača, Josip.
Cardiovascular Stents as PDE Nets : 1D vs. 3D. // Ima journal of applied mathematics. 77 (2012) , 6; 748-779 (članak, znanstveni). URL link to workURL link to work

17. Tambača, Josip; Velčić, Igor.
Derivation of the nonlinear bending-torsion model for a junction of elastic rods. // Proceedings of the Royal Society of Edinburgh. Section A. 142 (2012) , 3; 633-664 (članak, znanstveni). URL link to workURL link to work

18. Tambača, Josip; Čanić, Sunčica; Kosor, Mate; Fish, R. David; Paniagua, David.
Mechanical Behavior of Fully Expanded Commercially Available Endovascular Coronary Stents. // Texas Heart Institute journal. 38 (2011) , 5; 491-501 (članak, znanstveni). URL link to work

19. Tambača, Josip; Kosor, Mate; Čanić, Sunčica; Paniagua, David.
Mathematical Modeling of Vascular Stents. // SIAM journal on applied mathematics. 70 (2010) , 6; 1922-1952 (članak, znanstveni). URL link to workURL link to work

20. Tambača, Josip; Velčić, Igor.
Semicontinuity theorem in the micropolar elasticity. // Esaim - Control, Optimisation and Calculus of Variations. 16 (2010) , 2; 337-355 (članak, znanstveni). URL link to workURL link to work

21. Tambača, Josip; Velčić, Igor.
Existence theorem for nonlinear micropolar elasticity. // Esaim-control optimisation and calculus of variations. 16 (2010) , 1; 92-110 (članak, znanstveni). URL link to work

22. Velčić, Igor; Tambača, Josip.
Relaxation Theorem and Lower-Dimensional Models in Micropolar Elasticity. // Mathematics and mechanics of solids. 15 (2010) , 8; 812-853 (članak, znanstveni). URL link to workURL link to work

23. Fabijanić, Eva; Tambača, Josip.
Numerical comparison of the beam model and 2D linearized elasticity. // Structural Engineering and Mechanics. 33 (2009) , 5; 621-633 (članak, znanstveni).

24. Tambača, Josip; Velčić, Igor.
Evolution Model for Linearized Micropolar Plates by the Fourier Method. // Journal of Elasticity. 96 (2009) , 2; 129-154 (članak, znanstveni). URL link to workURL link to work
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  Ostali radovi u CC časopisima
 

1. Zunino, Paolo; Tambača, Josip; Cutrì, Elena; Čanić, Sunčica; Formaggia, Luca; Migliavacca, Francesco.
Integrated Stent Models Based on Dimension Reduction: Review and Future Perspectives. // Annals of biomedical engineering. 44 (2016) , 2; 604-617 (prikaz, znanstveni). URL link to workURL link to work
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  Znanstveni radovi u drugim časopisima
 

1. Grubišić, Luka; Iveković, Josip; Tambača, Josip; Žugec, Bojan.
Mixed formulation of the one-dimensional equilibrium model for elastic stents. // Rad Hrvatske akademije znanosti i umjetnosti. Razred za matematičke, fizičke i kemijske znanosti. Matematičke znanosti. 532 (2017) , 21; 219-240 (članak, znanstveni). URL link to workURL link to work

2. Grubišić, Luka; Tambača, Josip.
Quasi-semidefinite eigenvalue problem and applications. // Nanosystems. 8 (2017) , 2; 180-187 (članak, znanstveni). URL link to workURL link to work

3. Tambača, Josip; Velčić, Igor.
Derivation of a model of nonlinear micropolar plate. // Annali dell'Università di Ferrara. Sezione 7: Scienze matematiche. 54 (2008) , 2; 319-333 (članak, znanstveni). URL link to workURL link to work

4. Aganović, Ibrahim; Tambača, Josip; Tutek, Zvonimir.
Derivation and justification of the model of micropolar elastic shells from three-dimensional linearized micropolar elasticity. // Asymptotic Analysis. 51 (2007) , (3, 4); 335-361 (članak, znanstveni).

5. Aganović, Ibrahim; Tambača, Josip; Tutek, Zvonimir.
Derivation of the model of elastic curved rods from three-dimensional micropolar elasticity. // Annali dell'Universita'di Ferrara. 53 (2007) , 2; 109-133 (članak, znanstveni).

6. Tambača, Josip; Velčić, Igor.
Evolution model of linear micropolar plate. // Annali dell'Universita'di Ferrara. 53 (2007) , 2; 417-435 (članak, znanstveni).
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  Radovi u postupku objavljivanja
 

1. Ljulj, Matko; Tambača, Josip.
3D structure–2D plate interaction model. // Mathematics and mechanics of solids. (2019) (prihvaćen za objavljivanje).
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  Sažeci u zbornicima skupova
 

1. Grubišić, Luka; Veselić, Krešimir; Tambača, Josip.
On relative perturbation theory for block operator matrices // 6th International Congress on Industrial and Applied Mathematics.
(predavanje,međunarodna recenzija,sažetak,znanstveni). URL link to work
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  Vođenje disertacija, magistarskih i diplomskih radova
 

1. Kosor, Mate.
Ravnotežni model stenta temeljen na modelu nelinearnog hiperelasticnog štapa / završni rad - diplomski/integralni studij.
Zagreb : Prirodoslovno-matematički fakultet, 21.111 2014., 117 str. Voditelj: Tambača, Josip.

2. Žugec, Bojan.
Model biorazgradivog elastičnog stenta / doktorska disertacija.
Zagreb : PMF-Matematički odsjek, 14.07. 2014, 122 str. Voditelj: Tambača, Josip.

3. Marohnić, Maroje.
Izvod i opravdanje jednodimenzionalnih modela napetog štapa i napete žice iz trodimenzionalne elasticnosti / doktorska disertacija.
Zagreb : PMF-Matematički odsjek, 22.03. 2012., 80 str. Voditelj: Tambača, Josip.

4. Velčić, Igor.
Teorem egzistencije i nižedimenzionalni modeli u nelinearnoj mikropolarnoj elastičnosti / doktorska disertacija.
Zagreb : PMF-Matemtički odsjek, 29.06. 2009., 148 str. Voditelj: Tambača, Josip.
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