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The superposition operator in Orlicz spaces
1990Whenever one has to deal with problems involving rapidly increasing nonlinearities (e.g. of exponential type), Orlicz spaces are more appropriate than Lebesgue spaces. Since Orlicz spaces are ideal spaces, many statements of this section are just reformulations of the general results of Chapter 2, and therefore are cited mostly without proofs. However,
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Precomplete Classes of Automata with the Superposition Operation
Moscow University Mathematics Bulletin, 2018zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Regularizability of superposition of inverse linear operators
Journal of Soviet Mathematics, 1992Let \(L_ 0(X,Y)\) be the linear continuous injective operators; \(X,Y\) are Banach spaces. If \(X\) is separable and \(A\in L_ 0(X,Y)\), then the regularizability of \(A^{-1}\) is equivalent to the subspace \(A^*Y^*\subset X^*\) being norming. This article investigates the problem of determining the triples \((X,Y,Z)\) of infinite-dimensional separable
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The superposition operator in ideal spaces
1990In this chapter we are concerned with the basic properties of the superposition operator in so-called ideal spaces which are, roughly speaking, Banach spaces of measurable functions with monotone norm. To formulate our results in a sufficiently general framework, we must introduce a large number of auxiliary notions which will be justified by the ...
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Superposition framework v1.0. A time-framed operational account of quantum superposition
Version noteThis report extends the Time Frameworks (TF1.0, TF2.0) with an operational account of quantum superposition. Whereas TF1.0/TF2.0 formalize time as sequences of Planck ticks and calibrate particle-as-clock thinking, the present framework applies that timing logic directly to superposition across platforms.openaire +1 more source
NONLINEAR SUPERPOSITION OPERATORS
Bulletin of the London Mathematical Society, 1992openaire +1 more source
Superposition Operators in Zygmund and BMO Spaces
2003We characterize the functionsffor which the superposition operatorT f (g):= f ○ g acts in the Holder-Zygmund spaces Bs ∞,∞(ℝn) and in the spacesBMO(ℝn), V MO(ℝn), CMO(ℝn). Further we study the continuity and the differentiability ofT f in those various function spaces.
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Superposition operators on sequence spaces ?p (F) derived by using matrix of Fibonacci numbers
Linear and Multilinear Algebra, 2020Oguz Ogur
exaly
Superposition operators between mixed norm spaces of analytic functions
Mediterranean Journal of Mathematics, 2021Daniel Girela
exaly

