Exciting news! 🎉 My visionary project, grounded on complexity and network science to tackle climate change, has received a 1 million euro grant from the Italian Ministry for Research, under the prestigious FIS call (kind of "Italian ERC")! 🇮🇹🔬🌍
Immense gratitude to my collaborators and our outstanding research lab members for their unwavering support. Together, we're venturing into uncharted territories, unraveling the intricate connections between #ComplexSystems and #Climate impact. Ready to embark on this scientific journey and glad it's going to start at the Università degli Studi di Padova, a place where knowledge and ideas are truly free to flourish since 1222.
#StatisticalPhysics #ClimateChange #ItalianResearchExcellence #ComplexSystems #NetworkScience
PS: Stay tuned, going to hire soon senior postdocs and PhDs.
#networkscience #italianresearchexcellence #climatechange #statisticalphysics #climate #complexsystems
Empezando la International Conference on Statistical Physics, Chania, Creta
We look forward to new exciting collaborations & papers emerging from our ELLIS/ELISE program workshop ending in Tübingen, Germany, today - an intense exchange on #StochasticCalculus, #StatisticalPhysics & #ML with passionate European scientists that we plan to repeat next year!
Workshop overview: https://sites.google.com/view/scspo23/home
#stochasticcalculus #statisticalphysics #ml
Referenced link: https://phys.org/news/2023-04-statistical-physics-reveals-languages-evolve.html
Discuss on https://discu.eu/q/https://phys.org/news/2023-04-statistical-physics-reveals-languages-evolve.html
Originally posted by Phys.org / @physorg_com: http://nitter.platypush.tech/physorg_com/status/1651634575586598917#m
#Statisticalphysics reveals how languages evolve https://link.springer.com/article/10.1140/epjb/s10051-023-00488-0 https://phys.org/news/2023-04-statistical-physics-reveals-languages-evolve.html
A newbie question on Julia:
Converted a large MC code set in Julia from C. It is a one-to-one mapping from my previous C code, except few vectorizations.
It uses only one library- Random, for rand().
The Julia code is terribly slower than the C code.
Can someone please throw some pointers on this problem?
#Julia #JuliaLanguage #programming #mathbio #computationalbiology
#dynamicalsystems
#statisticalPhysics
#statisticalphysics #DynamicalSystems #computationalbiology #mathbio #programming #julialanguage #julia
A newbie question on Julia:
Converted a large MC code set in Julia from C. It is a one-to-one mapping from my previous C code, except few vectorizations.
It uses only one library- Random, for rand().
The Julia code is terribly slower than the C code.
Can someone please throw some pointers on this problem?
#Julia #JuliaLanguage #programming #mathbio #computationalbiology
#dynamicalsystems
#statisticalPhysics
#statisticalphysics #DynamicalSystems #computationalbiology #mathbio #programming #julialanguage #julia
Study: Mexican jumping beans use random walk strategy to find shade - Enlarge / Mexican jumping beans are actually seed pods from a shrub nat... - https://arstechnica.com/?p=1912792 #mexicanjumpingbeans #statisticalphysics #probability #randomwalks #science #physics
#physics #science #randomwalks #probability #statisticalphysics #mexicanjumpingbeans
Ars Technica: Study: Mexican jumping beans use random walk strategy to find shade https://arstechnica.com/?p=1912792 #Tech #arstechnica #IT #Technology #Mexicanjumpingbeans #statisticalphysics #probability #randomwalks #Science #Physics #science
#Tech #arstechnica #it #technology #mexicanjumpingbeans #statisticalphysics #probability #randomwalks #science #physics
#SoftMatter have just published the results of a project that Renato Assante, Davide Marenduzzo, Alexander Morozov, and I recently worked on together! What did we do and what’s new? Briefly…
#Microswimmer suspensions behave in a similar way to fluids containing kinesin and microtubules. Both systems can be described by the same system of three coupled nonlinear #PDEs.
A #LinearStabilityAnalysis of these equations suggests that variations in concentration across the system don’t significantly affect emergent #phaseBehaviour. How then can we explain #experiments that show visible inhomogeneities in #microtubule–#kinesin mixtures, for instance?
With increasing activity, we move away from the quiescent regime, past the onset of #SpontaneousFlow, and deeper into the active phase, where #nonlinearities become more important. What role do concentration inhomogeneities play here?
We investigated these questions, taking advantage of the #openSource #Dedalus #spectral framework to simulate the full nonlinear time evolution. This led us to predict a #novel regime of #spontaneous #microphaseSeparation into active (nematically ordered) and passive domains.
Active flow arrests macrophase separation in this regime, counteracting domain coarsening due to thermodynamic coupling between active matter concentration and #nematic order. As a result, domains reach a characteristic size that decreases with increasing activity.
This regime is one part of the #PhaseDiagram we mapped out. Along with our other findings, you can read all about it here!
low #ReynoldsNumber #turbulence #ActiveTurbulence #CahnHilliard #ActiveMatter #NavierStokes #BerisEdwards #CondensedMatter #PhaseTransitions #TheoreticalPhysics #BioPhysics #StatisticalPhysics #FluidDynamics #ComputationalPhysics #Simulation #FieldTheory #paperthread #NewPaper #science #research #ActiveGel #activeNematic #analytic #cytoskeleton #hydrodynamics #MPI #theory
#microswimmer #opensource #Dedalus #spectral #novel #spontaneous #microphaseSeparation #nematic #phasediagram #reynoldsnumber #turbulence #ActiveTurbulence #theoreticalphysics #biophysics #science #research #ActiveGel #cytoskeleton #mpi #BerisEdwards #computationalPhysics #simulation #softmatter #PDEs #LinearStabilityAnalysis #phaseBehaviour #experiments #microtubule #kinesin #SpontaneousFlow #nonlinearities #CahnHilliard #activematter #navierstokes #condensedmatter #phasetransitions #statisticalphysics #fluiddynamics #fieldtheory #PaperThread #newpaper #activeNematic #analytic #hydrodynamics #theory
Roya Zandi is talking about virus #SelfAssembly. #Physics #biophysics #StatisticalPhysics
#SelfAssembly #physics #biophysics #statisticalphysics
Iván Santamaría is talking about effective temperature in #nonequilibrium systems. #StatisticalPhysics #thermodynamics #physics
#nonequilibrium #statisticalphysics #thermodynamics #physics
Lorena Romero is talking about technological applications of statistical #thermodynamics in #TissueEngineering. #StatisticalPhysics #physics
#thermodynamics #tissueengineering #statisticalphysics #physics
Rui Travasso is talking about #adhesion, cell dynamics and #CellMigration. #Physics. #StatisticalPhysics.
#adhesion #cellmigration #physics #statisticalphysics
Anna Kozina Is talking about #Microrheology in entangled #polymers. #Physics #StatisticalPhysics
#microrheology #polymers #physics #statisticalphysics
Karen Daniels (@rockcairn ) is talking about nonlocality in #GranularMatter. #physics #StatisticalPhysics.
#granularmatter #physics #statisticalphysics
Gabriel Pérez is talking about #DepletionForces in #colloids and numerical #MolecularDynamics simulations. #Physics #StatisticalPhysics.
#depletionforces #colloids #moleculardynamics #physics #statisticalphysics
Mildred Quintana is talking about #MaterialScience and #Nanofluidics. #Physics #StatisticalPhysics
#materialscience #nanofluidics #physics #statisticalphysics
Margarita Sánchez is talking about #nanoparticles and their application on #cancer therapy. #Physics #Biophysics #StatisticalPhysics
#nanoparticles #cancer #physics #biophysics #statisticalphysics
Ivo Buttinoni is talking about #Colloids and #ActiveMatter.
#Physics #StatisticalPhysics
#colloids #activeMatter #physics #statisticalphysics
Alejandro Gil is talking about #Quantum molecular #thermodynamics. #StatisticalPhysics #Physics
#Quantum #thermodynamics #statisticalphysics #physics