European Journal of Experimental Biology Open Access

  • ISSN: 2248-9215
  • Journal h-index: 45
  • Journal CiteScore: 34.35
  • Average acceptance to publication time (5-7 days)
  • Average article processing time (30-45 days) Less than 5 volumes 30 days
    8 - 9 volumes 40 days
    10 and more volumes 45 days
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Articles published in European Journal of Experimental Biology have been cited by esteemed scholars and scientists all around the world. European Journal of Experimental Biology has got h-index 45, which means every article in European Journal of Experimental Biology has got 45 average citations.

Following are the list of articles that have cited the articles published in European Journal of Experimental Biology.

  2021 2020 2019 2018 2017 2016

Year wise published articles

33 22 20 35 42 53

Year wise citations received

1416 1346 1310 1210 1156 951
Journal total citations count 11765
Journal cite score 34.35
Journal h-index 45
Journal Impact Factor 2020 formula
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year
Journal 5-year Impact Factor 2020 formula
Citations(2016 + 2017 + 2018 + 2019 + 2020)/
{Published articles(2016 + 2017 + 2018 + 2019 + 2020)}
Journal citescore
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3
Important citations
Ozcan O, Bostanci MÖ, Cicek G, Yamaner F 2015.The effects of two different exercise programmes on adipose tissue hormones in sedentary middle-aged women. Archives of physiology and biochemistry. 50-56.
Tidke PR, Gupta I, Gade AK, Rai M (2014) Fungus-mediated synthesis of gold nanoparticles and standardization of parameters for its biosynthesis. IEEE transactions on nanobioscience 13: 397-402.
Francis U, Isaac Z, Yakubu A, Enosakhare A, Felix E (2014) Haematological parameters of malaria infected patients in the University of Calabar Teaching Hospital, Calabar, Nigeria. Journal of Hematology & Thromboembolic Diseases.
Devi JS, Bhimba BV (2012) Silver nanoparticles: Antibacterial activity against wound isolates & invitro cytotoxic activity on Human Caucasian colon adenocarcinoma. Asian Pacific Journal of Tropical Disease 2: 87-93.
Emeka EE, Ojiefoh OC, Aleruchi C, Hassan LA, Christiana OM, et al. (2014) Evaluation of antibacterial activities of silver nanoparticles green-synthesized using pineapple leaf (Ananas comosus). Micron 57: 1-5.
Марданова АМ, Сулейманова АД, Феоктистова НВ 2015.Technology. 42-52.
Suleimanova AD, Chastukhina IB, Valeeva LR, Itkina DL, Sharipova MR 2016.Cloning and Heterologous Expression of Phytase Gene from Pantoea sp. 3.5.1. BioNanoScience. Dec 16(4) 338-40.
Florido Bacallao M, Bao Fundora L, Lara Rodríguez RM, Álvarez Gil M, Dueñas Hurtado F, et al. (2016) Evaluación de la tolerancia a la sequía en tomate (Solanum lycopersicum) utilizando los índices de tolerancia. Cultivos Tropicales 37: 128-135.
Mohammady S (2014) Variation and inheritance of carbon isotope discrimination in wheat (Triticum aestivum). Acta physiologiae plantarum 36: 2837-2844.
Dutkiewicz J, Mackiewicz B, Lemieszek MK, Golec M, Milanowski J 2016. Pantoea agglomerans: a mysterious bacterium of evil and good. Part IV. Beneficial effects. Annals of agricultural and environmental medicine: AAEM 206-22.
Zafar SA, Ashraf MY, Niaz M, Kausar A, Hussain J (2015) Evaluation of wheat genotypes for salinity tolerance using physiological indices as screening tool. Pakistan Journal of Botany 4: 397-405.
Cockrel AL, Fitzgerald LA, Cusick KD, Barlow DE, Tsoi SD et al,2015. Little BJ, Biffinger JC. Further Readings in Geomicrobiology. J Bacteriol 3066-75.
Balaban NP, Suleimanova AD, Valeeva LR, Chastukhina IB, Rudakova NL et al,2016. Microbial Phytases and Phytate: Exploring Opportunities for Sustainable Phosphorus Management in Agriculture. American Journal of Molecular Biology.1-11.
Suleimanova AD, Toymentseva AA, Boulygina EA, Kazakov SV, Mardanova AM et al ,2015. High-quality draft genome sequence of a new phytase-producing microorganism Pantoea sp. 3.5. 1. Standards in genomic sciences. 101-195.
Hartati I, Kurniasari L, Riwayati I, Budiarti A (2012) EFFECT OF pH AND MANGANESE KATION ON THE ACTIVITY OF COW RUMEN FLUID CELLULASE ENTRAPPED IN CALCIUM ALGINATE BEADS. Momentum 8: 2.
Mahalakshmi R, Naveena ML (2016) Usage of Banana Pseudostem Waste for the Production of Potassic Biofertilizer using Cellulolytic Bacteria. Int J Curr Microbiol App Sci 5: 336-349.
Pokhrel B, Bashyal B, Magar RT (2014) Production, Purification and Characterization of Cellulase from Bacillus subtilis Isolated from Soil. European Journal of Biotechnology and Bioscience 2: 31-37.
Chantarasiri A, Boontanom P, Yensaysuk N, Ajwichai P (2015)  Isolation and Identification of a Cellulase-producing Bacillus sp. Strain BR0302 from Thai Coastal Wetland Soil. King Mongkut’s University of Technology North Bangkok International Journal of Applied Science and Technology 8: 197-203.
Sharma A, Tewari R, Soni SK (2015) Application of statistical approach for optimizing cmcase production by Bacillus tequilensis s 28 strain via submerged fermentation using wheat bran as carbon source. Int J Biol Food Vet Agric Eng 9: 76-86.
Fon FN, Nsahlai IV, Scogings PF (2014) Extraction and comparison of fibrolytic enzyme additives from gut of 11 ungulates. African Journal of Biochemistry Research 8: 31-38.