Pages that link to "Item:Q1029169"
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The following pages link to Mathematical tools of the kinetic theory of active particles with some reasoning on the modelling progression and heterogeneity (Q1029169):
Displaying 27 items.
- Experimental versus numerical data for breast cancer progression (Q420011) (← links)
- Modelling aggregation-fragmentation phenomena from kinetic to macroscopic scales (Q614310) (← links)
- On the initial value problem of a class of models of the kinetic theory for active particles (Q619815) (← links)
- Nonlinear modeling with mammographic evidence of carcinoma (Q708603) (← links)
- On the modelling and simulation of the competition for a secession under media influence by active particles methods and functional subsystems decomposition (Q971541) (← links)
- Modeling the hiding-learning dynamics in large living systems (Q979172) (← links)
- On the modelling of space dynamics in the kinetic theory for active particles (Q984119) (← links)
- On the coupling of higher and lower scales using the mathematical kinetic theory of active particles (Q1021789) (← links)
- Similarity conditions of processes in systems of interacting particles (Q1374956) (← links)
- On the kinetic and stochastic games theory for active particles: Some reasonings on open large living systems (Q2389804) (← links)
- From the mathematical kinetic theory of active particles to multiscale modelling of complex biological systems (Q2425473) (← links)
- On the complexity of multiple interactions with additional reasonings about Kate, Jules and Jim (Q2427110) (← links)
- On the kinetic theory for active particles: a model for tumor-immune system competition (Q2427113) (← links)
- From the discrete kinetic theory to modelling open systems of active particles (Q2469705) (← links)
- On the discrete kinetic theory for active particles. Mathematical tools (Q2473159) (← links)
- Modelling complex systems in applied sciences; methods and tools of the mathematical kinetic theory for active particles (Q2473204) (← links)
- On the mathematical kinetic theory of active particles with discrete states: The derivation of macroscopic equations (Q2476719) (← links)
- MODELLING EPIDEMICS AND VIRUS MUTATIONS BY METHODS OF THE MATHEMATICAL KINETIC THEORY FOR ACTIVE PARTICLES (Q3638793) (← links)
- NUMERICAL VERSUS EXPERIMENTAL DATA FOR PROSTATE TUMOUR GROWTH (Q4560383) (← links)
- Challenges in active particles methods: Theory and applications (Q4630554) (← links)
- (Q4838412) (← links)
- What is life? A perspective of the mathematical kinetic theory of active particles (Q5018909) (← links)
- The role of the principle of inertia in KTAP models (Q5056499) (← links)
- Hilbert method toward a multiscale analysis from kinetic to macroscopic models for active particles (Q5272436) (← links)
- HYBRID TWO SCALES MATHEMATICAL TOOLS FOR ACTIVE PARTICLES MODELLING COMPLEX SYSTEMS WITH LEARNING HIDING DYNAMICS (Q5293957) (← links)
- Heterogeneous population dynamics of active particles: Progression, mutations, and selection dynamics (Q5347241) (← links)
- Editorial: Active particle models and methods in science and society (Q6175723) (← links)