Portnoy | Calculus to Analysis | Buch | 978-3-031-69661-9 | sack.de

Buch, Englisch, 119 Seiten, Format (B × H): 173 mm x 246 mm, Gewicht: 443 g

Reihe: Synthesis Lectures on Mathematics & Statistics

Portnoy

Calculus to Analysis

An Introductory Transition
2024
ISBN: 978-3-031-69661-9
Verlag: Springer Nature Switzerland

An Introductory Transition

Buch, Englisch, 119 Seiten, Format (B × H): 173 mm x 246 mm, Gewicht: 443 g

Reihe: Synthesis Lectures on Mathematics & Statistics

ISBN: 978-3-031-69661-9
Verlag: Springer Nature Switzerland


This book addresses the analysis of functions of a real variable and transitions from the standard calculus sequence to mathematical analysis.  The author presents the limits and convergence of sequences of functions, illustrates the limitations of the Riemann integral, and discusses the need for a new integral: the Lebesgue integral.  The fundamental concepts of the theory of calculus of one variable is presented in addition to limits, continuity, derivatives and its applications, and integrals and their applications.  The tone and language of the book is kept as informal as possible along with the descriptions and examples to aid learning.  The book is concise and presents single variable advanced calculus leading up to Fourier analysis. In addition, the book sets up sufficient background for a course in measure theory and Lebesgue integration.  

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Zielgruppe


Graduate


Autoren/Hrsg.


Weitere Infos & Material


Preface.- The Fundamentals.- Sequences, Limits, and Series.- Continuous Functions.- Differentiable Functions.- The Riemann Integral.- Sequences of Functions and their Convergence.- Fourier Series I.- Fourier Series II.- Conclusions.


Arturo Portnoy, Ph.D., is a Professor of Mathematical Sciences at the University of Puerto Rico at Mayagüez.  He is also Co-Director of the Puerto Rico Mathematical Olympiads. He received his B.Sc. in Applied Mathematics at the Instituto Tecnológico Autónomo de México (1992) and his M.Sc. (1994) and Ph.D. (1997) at Rensselaer Polytechnic institute. His areas of interest include inverse problems, mathematical modeling, optimization, regularization, math education, and math Olympiads. He also explores the use of technology to increase efficiency, transparency, and consistency in teaching mathematics.



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