The distribution of the maximal difference between a Brownian bridge and its concave majorant
International audienceWe provide a representation of the maximal difference between a standard Brownian bridge and its concave majorant on the unit interval, from which we deduce expressions for the distribution and density functions and moments of this ...
Balabdaoui, Fadoua, Jim, Pitman
core +3 more sources
A linearization method in oscillation theory of half-linear second-order differential equations
Using inequalities for a certain function appearing in the half-linear version of Picone's identity, we show that oscillatory properties of the half-linear second-order differential equation , , can be investigated via oscillatory properties of a ...
Došlý Ondřej +1 more
doaj
Coherence of assistance and assisted maximally coherent states. [PDF]
Zhao MJ, Pereira R, Ma T, Fei SM.
europepmc +1 more source
Quasi‐majority functional voting on expander graphs
AbstractConsider an ‐vertex graph where each vertex holds one of two distinct opinions. We are interested in the consensus time of synchronous voting processes, where each vertex is allowed to update its opinion according to a predefined commonly local updating rule.
Nobutaka Shimizu, Takeharu Shiraga
openaire +5 more sources
We consider the process -Fn, being the difference between the empirical distribution function Fn and its least concave majorant , corresponding to a sample from a decreasing density.
Kulikov, Vladimir N. +1 more
core
Mathematical analysis on an age-structured SIS epidemic model with nonlocal diffusion. [PDF]
Kang H, Ruan S.
europepmc +1 more source
Improved local convergence analysis of the Gauss-Newton method under a majorant condition
We present a local convergence analysis of Gauss-Newton method for solving nonlinear least square problems. Using more precise majorant conditions than in earlier studies such as Chen (Comput Optim Appl 40:97-118, 2008), Chen and Li (Appl Math Comput 170:
Argyros, Ioannis K +1 more
core +1 more source
Non-linear System of Multi-order Fractional Differential Equations: Theoretical Analysis and a Robust Fractional Galerkin Implementation. [PDF]
Faghih A, Mokhtary P.
europepmc +1 more source
Derivative of the expected supremum of fractional Brownian motion at H = 1. [PDF]
Bisewski K, Dȩbicki K, Rolski T.
europepmc +1 more source
Local convergence analysis of inexact Newton-like methods under majorant condition
Inexact Newton method, Majorant condition, Local convergence,
M. Gonçalves, O. Ferreira
core +1 more source

