Laura Andreozzi

Sede ufficiale: LARGO BRUNO PONTECORVO, 3, 56127 PISA

Email: laura.andreozzi@unipi.it

Telefono: 0502214891

Profilo

Ruolo: Professore Associato

Struttura: Dipartimento di Fisica

Settore scientifico-disciplinare: Fisica Sperimentale della Materia e Applicazioni PHYS-03/A

Address & Research laboratory: Dipartimento di Fisica "E. Fermi" dell' Universita', Largo Bruno
Pontecorvo 3, I-56127 Pisa - Italia. Member of Physics Department since 1998

Career
16-7-1991- Physics Degree, University of Pisa
8-7-1997 - Ph.D. in Physics (IX ciclo), University of Pisa
7-10-1998 - Research professor (B03X; FIS/03 FISICA DELLA MATERIA (area: 02 - Scienze fisiche)), at thePhysics Department E. Fermi, University of Pisa
29/12/2017 - Associate Professor , sector of competition 02/B1 , SSD FIS/03 - Fisica della materia at University of PISA, PHYSICS Department

Teaching experience
Professor in charge of various teaching courses since 1999 with . In the recent times:
- AA10 / 11 and AA11 / 12 - professor in charge of the course Laboratorio 2 (code 033BB), CL Physics
- AA12 / 13 - teacher of the course Laboratorio 2 (code 033BB), CL Physics
- from the Academic Year 13/14 - professor in charge of the Laboratorio 2 course (code 033BB) I modulo, CL Fisica
- from the AA 13/14 - teacher of the Nuclear Magnetic Resonance course (code 124BB) WFI-LM - PHYSICS
- from academic year 17/18 - professor in charge “Rheology” Master's degree course Materials and Nanotechnology curriculum Advanced materials
- from academic year 17/18 - professor in charge Rheology Master's degree course Physics

Scientific activity
110 scientific publications. 126 congress participations. 3 participations to congresses of scientific dissemination
Organizing committee of scientific workshops,
Referee activity for international scientific magazines on a regular basis

Brief description of the general activity field:
-Physics of the soft matter with particular reference to polymeric and liquid-crystalline materials.
- Gel and hydrogel physics sensitive to the surrounding environment (hydrogels "intelligent" or "smart").
- Physics of glass transition in low molecular weight polymeric and organic materials.
- Reology and calorimetry in condensed soft matter.
- Paramagnetism in materials and paramagnetic species recognition
- Relaxation and non-linear response properties of two- and multi-level atomic systems in the presence of stochastic perturbations.
- Relaxation and diffusion, response to mechanical stress in complex systems.
- Experimental techniques used: electron spin resonance spectroscopies in continuous wave in X band (10 GHz), differential scanning calorimetry, mechanical dynamics, rheology, optical microscopy









Didattica

Attività didattica

Incarichi di responsabilità didattica di moduli/insegnamenti



Ricerca

Pubblicazioni