It takes the average reader 4 hours and 11 minutes to read Stability of Functional Equations in Random Normed Spaces by Yeol Je Cho
Assuming a reading speed of 250 words per minute. Learn more
This book discusses the rapidly developing subject of mathematical analysis that deals primarily with stability of functional equations in generalized spaces. The fundamental problem in this subject was proposed by Stan M. Ulam in 1940 for approximate homomorphisms. The seminal work of Donald H. Hyers in 1941 and that of Themistocles M. Rassias in 1978 have provided a great deal of inspiration and guidance for mathematicians worldwide to investigate this extensive domain of research. The book presents a self-contained survey of recent and new results on topics including basic theory of random normed spaces and related spaces; stability theory for new function equations in random normed spaces via fixed point method, under both special and arbitrary t-norms; stability theory of well-known new functional equations in non-Archimedean random normed spaces; and applications in the class of fuzzy normed spaces. It contains valuable results on stability in random normed spaces, and is geared toward both graduate students and research mathematicians and engineers in a broad area of interdisciplinary research.
Stability of Functional Equations in Random Normed Spaces by Yeol Je Cho is 246 pages long, and a total of 62,976 words.
This makes it 83% the length of the average book. It also has 77% more words than the average book.
The average oral reading speed is 183 words per minute. This means it takes 5 hours and 44 minutes to read Stability of Functional Equations in Random Normed Spaces aloud.
Stability of Functional Equations in Random Normed Spaces is suitable for students ages 12 and up.
Note that there may be other factors that effect this rating besides length that are not factored in on this page. This may include things like complex language or sensitive topics not suitable for students of certain ages.
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