Difference between revisions of "Finished projects"
From Division of Theoretical Physics
(Created page with "Here is the list of '''finished projects''': * [http://thphys.irb.hr/http://rbi-t-winning.irb.hr RBI-T-WINNING] * Van der Waals heterostructures: fundamentals and application...") |
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− | Here is the list of '''finished projects''': | + | Here is the list of '''finished projects''' (more [http://thphys.irb.hr/?show=tab&id=projects#past info]) |
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* [http://thphys.irb.hr/http://rbi-t-winning.irb.hr RBI-T-WINNING] | * [http://thphys.irb.hr/http://rbi-t-winning.irb.hr RBI-T-WINNING] | ||
* Van der Waals heterostructures: fundamentals and applications | * Van der Waals heterostructures: fundamentals and applications |
Revision as of 16:19, 17 March 2020
Here is the list of finished projects (more info)
- RBI-T-WINNING
- Van der Waals heterostructures: fundamentals and applications
- Towards quantum gravity: noncomutative geometry, field theory and cosmology
- Generalized Geometry and Symmetries
- Reservoir Computing with Real-time Data for future IT
- Physics of Standard Model and Beyond
- Foundational Research on MULTIlevel comPLEX networks and systems
- Forecasting Financial Crises
- Electronic Properties of Hybrid Nanostructures
- Electromagnetic field fluctuations: van der Waals-Casimir forces
- Fundamental interactions in elementary particle physics and cosmology
- Quantum field theory, noncommutative spaces and symmetries
- Matrix models, duality and field theory
- Noncommutative spaces in high energy physics
- Surfaces and Nanostructures: Theoretical Approaches and Numerical Calculations
- Heavy Majorana neutrinos in particle physics and cosmology
- Tools and Precision Calculations for Physics Discoveries at Colliders
- Aspects of Calogero models, noncommutative geometry and quantum physics
- Final state interaction in non-leptonic D- and B-decays
- Geometry and Quantum Fields from Noncommutative Landscape
- Integrable systems
- Nonabelian Cohomology and Applications in Geometry, Algebra and Physics
- QCD sum rules for exclusive decays of heavy hadrons
- Theories of modified gravity and accelerating expansion of the Universe
- Higher-order QCD corrections in exclusive processes - mesons and baryons
- Hard exlusive photo- and electroproduction of heavy quarkonium