Mathematica Eterna

Mathematica Eterna
Open Access

ISSN: 1314-3344

+44-77-2385-9429

Mathematica Eterna : Citations & Metrics Report

Articles published in Mathematica Eterna have been cited by esteemed scholars and scientists all around the world. Mathematica Eterna has got h-index 11, which means every article in Mathematica Eterna has got 11 average citations.

Following are the list of articles that have cited the articles published in Mathematica Eterna.

  2024 2023 2022 2021 2020 2019 2018 2017

Total published articles

31 36 20 26 15 2 23 36

Conference proceedings

0 0 0 0 0 0 0 0

Citations received as per Google Scholar, other indexing platforms and portals

109 161 184 183 194 184 176 129
Journal total citations count 1892
Journal impact factor 4.13
Journal 5 years impact factor 4.25
Journal cite score 3.35
Journal h-index 11
Journal h-index since 2019 10
Important citations (1006)

rahman g, khan a, abdeljawad t, nisar ks. the minkowski inequalities via generalized proportional fractional integral operators. advances in difference equations. 2019 dec 1;2019(1):287.

Đaferović e. hijerarhija konveksnih funkcija (doctoral dissertation, university of zagreb. faculty of science. department of mathematics.).

lara t, rosales e. research article issn: 2581-4672 open access. biostatistics. 2018;1:2.

ahmad b, alsaedi a, cuesta e, kirane m. on blowing-up solutions for multi–time nonlinear hyperbolic equations and systems. filomat. 2017 jan 1;31(9):2599-609.

wang j, xiao a. conservative fourier spectral method and numerical investigation of space fractional klein–gordon–schrödinger equations. applied mathematics and computation. 2019 jun 1;350:348-65.

povstenko y, kyrylych t. time-fractional diffusion with mass absorption in a half-line domain due to boundary value of concentration varying harmonically in time. entropy. 2018 may;20(5):346.

kermausuor s. ostrowski type inequalities for functions whose derivatives are strongly (α, m)-convex via k-riemann-liouville fractional integrals. studia universitatis babes-bolyai, mathematica. 2019 mar 1;64(1).

anastassiou g, kashuri a, liko r. local fractional integrals involving generalized strongly m-convex mappings. arabian journal of mathematics. 2019 jun 1;8(2):95-107.

mukhamadiev f. some cardinal and topological properties of the $ n $-permutation degree of a topological spaces and locally $\tau $-density of hyperspaces. bulletin of national university of uzbekistan: mathematics and natural sciences. 2018;1(1):30-5.

lara t, matkowski j, merentes n, quintero r, wróbel m. a generalization of m-convexity and a sandwich theorem. inannales mathematicae silesianae 2017 sep 26 (vol. 31, no. 1, pp. 107-126). de gruyter open.

dalalyan as, riou-durand l, karagulyan a. bounding the error of discretized langevin algorithms for non-strongly log-concave targets. arxiv preprint arxiv:1906.08530. 2019 jun 20.

venkatesha sn, siddesha ms. on pseudo-slant submanifolds of (κ, µ)-contact space forms.

shaeiri z, karami mr, aghagolzadeh a. enhancing the sufficient condition of sparsity pattern recovery. digital signal processing. 2018 oct 1;81:43-9.

bracamonte m, giménez j, vivas-cortez m. hermite-hadamard-fejér type inequalities for strongly (s, m)-convex functions with modulus c, in second sense. appl. math. inf. sci. 2016;10(6):2045-53.

dirik s, atçeken m. on the geometry of pseudo-slant submanifolds of a cosymplectic manifold. international electronic journal of geometry. 2016 apr 1;9(1page):45-56.

falahatgar m. learning structured distributions: power-law and low-rank (doctoral dissertation, uc san diego).

siddesha ms, begawadi cs, nirmala d, srikantha n. on the geometry of pseudoslant submanifolds of lp-cosymplectic manifold. international journal of mathematics and its applications. 2017;5(4):81-7.

vivas-cortez m, garcıa c. ostrowski type inequalities for functions whose derivatives are (m, h1, h2)-convex. appl. math. 2017;11(1):79-86.

uddin s, ahsan z, yaakub ah. classification of totally umbilical slant submanifolds of a kenmotsu manifold. filomat. 2016 jan 1;30(9):2405-12.

ko h. locations of real zeros of newforms of higher levels.

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