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Boundedness properties of very weak solutions to a fully parabolic chemotaxis-system with logistic source
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In this paper we study the chemotaxis-system
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defined in a convex smooth and bounded domain b8aa2e84d3b676fa1f52f380e355c9" title="Click to view the MathML source">Ω of R3, with χ>0 and endowed with homogeneous Neumann boundary conditions. The source adf9275c9de4ea201" title="Click to view the MathML source">g behaves similarly to the logistic function and verifies 9f806d5d12fe346fe1cdd082c7124d4" title="Click to view the MathML source">g(s)≤a−bsα, for s≥0, with 9fbd3ec4d2c719278" title="Click to view the MathML source">a≥0, b>0 and α>1. In line with Viglialoro (2016), where for View the MathML source the global existence of very weak solutions 8e3e2b953f3867c909" title="Click to view the MathML source">(u,v) to the system is shown for any nonnegative initial data e5852bdf679fc1701418596e597a6f7">View the MathML source and under zero-flux boundary condition on e65472f47343f9172" title="Click to view the MathML source">v0, we prove that no chemotactic collapse for these solutions may present over time. More precisely, we establish that if the ratio View the MathML source does not exceed a certain value and for 9fb9f2b37691502">View the MathML source the initial data are such that ‖u0Lp(Ω) and e487fd9a712c0ac38223e97025" title="Click to view the MathML source">‖∇v0L4(Ω) are small enough, then 8e3e2b953f3867c909" title="Click to view the MathML source">(u,v) is uniformly-in-time bounded.

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