Every empty lattice 4-simplex belongs to one of 49 infinite families or to one of 2461 sporadic simplices with volume at most 419, completing a 30-year classification program.
On a generalization of the Hermite-Hadamard inequality and applications in convex geometry
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abstract
In this paper we show the following result: if C is an n-dimensional 0-symmetric convex compact set, $f:C\rightarrow[0,1)$ is concave, and $g:[0,1)\rightarrow[0,1)$ is not identically zero, convex, with g(0)=0, then \[ \frac{1}{|C|}\int_C g(f(x))dx \leq \frac12 \int_{-1}^1g(f(0)(1+t))dt, \] where |C| denotes the volume of C. If g? is strictly convex, equality holds if and only if f is affine, C is a generalized symmetric cylinder and f becomes 0 at one of the basis of C. We exploit this inequality to answer a question of Francisco Santos on estimating the volume of a convex set by means of the volume of a central section of it. Second, we also derive a corresponding estimate for log-concave functions.
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The complete classification of empty lattice $4$-simplices
Every empty lattice 4-simplex belongs to one of 49 infinite families or to one of 2461 sporadic simplices with volume at most 419, completing a 30-year classification program.