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1. Scaling of the Hosking integral in decaying magnetically dominated turbulence.

2. Spectral characterisation of inertial particle clustering in turbulence.

4. Magnetic field evolution in solar-type stars.

5. The nature of mean-field generation in three classes of optimal dynamos.

6. Magnetic field evolution in solar-type stars.

7. Magnetism in the Early Universe.

8. Coronal influence on dynamos.

9. Non-linear and chaotic dynamo regimes.

10. Topological constraints on magnetic field relaxation.

11. Flux concentrations in turbulent convection.

12. COMMISSION 12: SOLAR RADIATION AND STRUCTURE.

13. Spontaneous chiral symmetry breaking in the Tayler instability.

14. Magnetic helicity fluxes and their effect on stellar dynamos.

15. Cycles and cycle modulations.

16. Simulations of astrophysical dynamos.

17. Plasmoid ejections driven by dynamo action underneath a spherical surface.

18. Oscillatory migratory large-scale fields in mean-field and direct simulations.

19. Paradigm shifts in solar dynamo modeling.

20. Near-surface shear layer dynamics.

21. Probing turbulence in OMC1 at the star forming scale: observations and simulations.

22. Helical coronal ejections and their role in the solar cycle.

24. DIVISION II: COMMISSION 12: SOLAR RADIATION AND STRUCTURE.

25. Magnetic helicity fluxes in αΩ dynamos.

26. Decay of trefoil and other magnetic knots.

27. How can vorticity be produced in irrotationally forced flows?

28. Turbulent diffusion and galactic magnetism.

29. Why coronal mass ejections are necessary for the dynamo.

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