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Intro; Preface; Higher Structures in Geometry and Physics; Winter of Disconnectedness; Approximation and Optimisation; Refining C*-Algebraic Invariants for Dynamics Using KK-Theory; Interactions Between Topological Recursion, Modularity, Quantum Invariants and Low-Dimensional Topology; Contents; Part I Refereed Articles; Homotopical Properties of the Simplicial Maurer-Cartan Functor; 1 Introduction; 2 Preliminaries; 2.1 Filtered L∞-Algebras; 2.2 Maurer-Cartan Elements; 2.3 Getzler-Hinich Construction; 3 The Functor sMC(-) Preserves Weak Equivalences and Fibrations

4 Homotopy Transfer TheoremReferences; Fibrations in ∞-Category Theory; 1 Introduction; 2 Left, Right, and Kan Fibrations; 3 Inner Fibrations and Isofibrations; 4 Cocartesian and Cartesian Fibrations; 5 Flat Inner Fibrations; 6 Marked Simplicial Sets and Categorical Patterns; 7 Constructing Fibrations via Additional Functoriality; References; The Smooth Hom-Stack of an Orbifold; References; Complicial Sets, an Overture; 1 Introduction; 2 Introducing Complicial Sets; 2.1 Quasi-Categories as (∞,1)-Categories; 2.2 Towards a Simplicial Model of (∞,2)-Categories; 2.3 Stratified Simplicial Sets

3 Words and Their Cooperads3.1 Words; 3.2 The Word Cooperad; 3.3 The Non-crossing Word Cooperad; 4 Review of (Homotopy) Probability Theory; 4.1 Review of Homotopy Probability Theory; 4.2 Review of Free Cumulants; 5 The Non-crossing Word Cooperad and Free Probability Theory; References; Endomorphisms of Lie Groups over Local Fields; 1 Introduction; 2 Some Basics of Totally Disconnected Groups; 3 Endomorphisms of K-Vector Spaces; 4 Analytic Functions, Manifolds and Lie Groups; 5 Construction of Small Open Subgroups; 6 Endomorphisms of p-Adic Lie Groups; 7 Invariant Manifolds Around Fixed Points

8 Endomorphisms of Lie Groups over K9 Contractive Automorphisms; 10 Expansive Automorphisms; 11 Distality and Lie Groups of Type R; References; Compact Convex Sets with Prescribed Facial Dimensions; 1 Introduction; 2 Main Result; 3 Fractal Convex Sets; References; Chebyshev Multivariate Polynomial Approximation: Alternance Interpretation; 1 Introduction; 2 Optimality Conditions; 2.1 Convexity of the Objective; 2.2 Optimality Conditions: General Case; 2.3 Optimality Conditions for Multivariate Linear Functions; 3 Conclusions and Further Research Directions; References; Spectral Triples on ON

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