Atıf Formatları
Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

Ü. H. Kaynar Et Al. , "Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology," Applied Radiation and Isotopes , vol.115, pp.280-288, 2016

Kaynar, Ü. H. Et Al. 2016. Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology. Applied Radiation and Isotopes , vol.115 , 280-288.

Kaynar, Ü. H., ŞABİKOĞLU, İ., ÇAM KAYNAR, S., & Eral, M., (2016). Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology. Applied Radiation and Isotopes , vol.115, 280-288.

Kaynar, Ümit Et Al. "Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology," Applied Radiation and Isotopes , vol.115, 280-288, 2016

Kaynar, Ümit H. Et Al. "Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology." Applied Radiation and Isotopes , vol.115, pp.280-288, 2016

Kaynar, Ü. H. Et Al. (2016) . "Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology." Applied Radiation and Isotopes , vol.115, pp.280-288.

@article{article, author={Ümit H. Kaynar Et Al. }, title={Modeling of thorium (IV) ions adsorption onto a novel adsorbent material silicon dioxide nano-balls using response surface methodology}, journal={Applied Radiation and Isotopes}, year=2016, pages={280-288} }