arXiv · math/0011239
Extremal Approximately Convex Functions and the Best Constants in a Theorem of Hyers and Ulam
Abstract
Let $n\ge1$ and $B\ge2$. A real-valued function $f$ defined on the $n$-simplex $Δ_n$ is approximately convex with respect to $Δ_{B-1}$ iff f(\sum_{i=1}^B t_ix_i) \le \sum_{i=1}^B t_if(x_i) +1 for all $x_1,...,x_B \in Δ_n$ and all $(t_1,...,t_B)\in Δ_{B-1}$. We determine explicitly the extremal (i.e. pointwise largest) function of this type which vanishes on the vertices of $Δ_n$. We also prove a stability theorem of Hyers-Ulam type which yields as a special case the best constants in the Hyers-Ulam stability theorem for $ε$-convex functions.
Explore related subjects
Keep this discovery
S. J. Dilworth, Ralph Howard, James W. Roberts. 2000-11-28. Extremal Approximately Convex Functions and the Best Constants in a Theorem of Hyers and Ulam. https://arxiv.org/abs/math/0011239
Cite the original work for its findings. Save a collection to share your selection of sources.