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QA303.2.SPR FCT 81455 Applications of q-calculus in operator theory QA304.HID FCT 95310 Differential calculus in normed linear spaces QA305.SPR FCT 95555 Advances in automatic differentiation QA308.SPR FCT 81793 A course on integration theory QA308.SPR FCT 97234 Application of holomorphic functions in two and higher dimensions QA308.SPR FCT 97298 Advanced calculus of a single variable QA312. FCT 95290 Measurement uncertainty

This textbook provides a detailed treatment of abstract integration theory, construction of the Lebesgue measure via the Riesz-Markov Theorem and also via the Carathéodory Theorem. It also includes some elementary properties of Hausdorff measures as well as the basic properties of spaces of integrable functions and standard theorems on integrals depending on a parameter. Integration on a product space, change-of-variables formulas as well as the construction and study of classical Cantor sets are treated in detail. Classical convolution inequalities, such as Young's inequality and Hardy-Littlewood-Sobolev inequality, are proven. Further topics include the Radon-Nikodym theorem, notions of harmonic analysis, classical inequalities and interpolation theorems including Marcinkiewicz's theorem, and the definition of Lebesgue points and the Lebesgue differentiation theorem. Each chapter ends with a large number of exercises and detailed solutions. A comprehensive appendix provides the reader with various elements of elementary mathematics, such as a discussion around the calculation of antiderivatives or the Gamma function. It also provides more advanced material such as some basic properties of cardinals and ordinals which are useful for the study of measurability.

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