Martin Nilsson Jacobi
Martin Nilsson Jacobi är rektor och vd för Chalmers tekniska högskola sedan september 2023. Han är Chalmers fjortonde rektor. Martin Nilsson Jacobi är professor i komplexa system. Han har en bakgrund inom teoretisk fysik men styrde under sin doktorandtid in sin forskning på tvärvetenskapliga komplexa system. Martin Nilsson Jacobi har under sin karriär haft flera ledande positioner inom den akademiska världen. Exempelvis har han varit fakultetsrådsordförande och prefekt på Chalmers. Han har även internationell forskarerfarenhet från Los Alamos National Laboratory och Nordic Institute for Theoretical Physics (NORDITA). Han är ledamot i Kungliga Ingenjörsvetenskapsakademien (IVA).
Visar 43 publikationer
Complex ecological communities and the emergence of island species-area relationships
Spatial coherence and the persistence of high diversity in spatially heterogeneous landscapes
Identification of dispersal barriers for a colonising seagrass using seascape genetic analysis
Spatial heterogeneity enhance robustness of large multi-species ecosystems
Stability of ecosystems enhanced by species-interaction constraints
Ecological coherence of Marine Protected Areas: New tools applied to the Baltic Sea network
Predicting collapse of complex ecological systems: Quantifying the stability–complexity continuum
Extending networks of protected areas to optimize connectivity and population growth rate
A design path for the hierarchical self-assembly of patchy colloidal particles
Predicting self-assembled patterns on spheres with multicomponent coatings
An efficient eigenfunction approach to calculate spin-echo signals in heterogeneous porous media
Using the uncertainty principle to design simple interactions for targeted self-assembly
Chiral Surfaces Self-Assembling in One-Component Systems with Isotropic Interactions
Optimal selection of marine protected areas based on connectivity and habitat quality
Identification of subpopulations from connectivity matrices
Novel Self-Assembled Morphologies from Isotropic Interactions
A mixed basis approach in the SGP-limit
Designing Isotropic Interactions for Self-Assembly of Complex Lattices
A model-independent approach to infer hierarchical codon substitution dynamics
Determining interaction rules in animal swarms
A method for finding aggregated representations of linear dynamical systems
Identification of metastable states in peptide's dynamics
A Robust Spectral Method for Finding Lumpings and Meta Stable States of Non-Reversible Markov Chains
Renormalization of Cellular Automata and Self-Similarity
Universality of Striped Morphologies
A method for estimating the interactions in dissipative particle dynamics from particle trajectories
On the microscopic foundation of dissipative particle dynamics
Bottom-up derivation of an effective thermostat for united atoms simulations of water
Effective thermostat induced by coarse graining of simple point charge water
A Method For Inferring Hierarchical Dynamics In Stochastic Processes
Using force covariance to derive effective stochastic interactions in dissipative particle dynamics.
Effective thermostat induced by coarse graining of simple point charge water
Emergence of protocellular growth laws
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Visar 4 forskningsprojekt
Teori och design principer för själv-assemblerande system
MATHEmatics of Multi-level Anticipatory Complex Systems (MATHEMACS)
Hierarchical Analysis of Complex Dynamical Systems (HIERATIC)