Nikeghbali, Ashkan.
Overview
| Works: | 1 works in 3 publications in 1 languages | |
|---|---|---|
Titles
High-Dimensional Optimization and Probability = With a View Towards Data Science /
by:
Rassias, Michael Th.; Raigorodskii, Andrei M.; SpringerLink (Online service); Pardalos, Panos M.; Nikeghbali, Ashkan.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/edt]
Optimization, discrete mathematics and applications to data sciences
by:
Nikeghbali, Ashkan.; Pardalos, P. M.; SpringerLink (Online service); Rassias, Michael Th.
(Language materials, printed)
Mod-[Phi] convergence = normality zones and precise deviations /
by:
Nikeghbali, Ashkan.; Meliot, Pierre-Loic.; SpringerLink (Online service); Feray, Valentin.
(Language materials, printed)
Mod-ϕ Convergence = Normality Zones and Precise Deviations /
by:
Féray, Valentin.; SpringerLink (Online service); Nikeghbali, Ashkan.; Méliot, Pierre-Loïc.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/aut]
Exploring the Riemann Zeta function = 190 years from Riemann's birth /
by:
Rassias, Michael Th.; Nikeghbali, Ashkan.; SpringerLink (Online service); Montgomery, Hugh.
(Language materials, printed)
Frontiers in Analysis and Probability = In the Spirit of the Strasbourg-Zürich Meetings /
by:
Nikeghbali, Ashkan.; Anantharaman, Nalini.; SpringerLink (Online service); Rassias, Michael Th.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/edt]
Subjects
Dynamical Systems and Ergodic Theory.
IT in Business.
Probability Theory and Stochastic Processes.
Linear and Multilinear Algebras, Matrix Theory.
Applied Probability.
Large deviations.
Analysis (Mathematics).
Applications of Mathematics.
Abstract Harmonic Analysis.
Business information services.
Number Theory.
Combinatorics.
Probabilities.
Convergence.
Optimization.
Mathematics.
Functions, Zeta.
Difference and Functional Equations.
Matrix theory.
Riemann hypothesis.
Analysis.
Discrete mathematics.
Algebraic Geometry.
Mathematical analysis.
Mathematical optimization.
Discrete Mathematics.
Functions of a Complex Variable.
Number theory.
Algebra.
Convex and Discrete Geometry.
Systems Theory, Control.