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Autor:
Fariza Eka Yunita, Eko Sulistiyono, Nadia Chrisayu Natasha, Ahmad Rizky Rhamdani, Florentinus Firdiyono, Latifa Hanum Lalasari, Tri Arini, Enggar Setya Widyaningrum, Erlina Yustanti
Publikováno v:
Eastern-European Journal of Enterprise Technologies; Vol. 3 No. 5 (111) (2021): Applied physics; 6-12
Eastern-European Journal of Enterprise Technologies; Том 3 № 5 (111) (2021): Прикладная физика; 6-12
Eastern-European Journal of Enterprise Technologies; Том 3 № 5 (111) (2021): Прикладна фізика; 6-12
Eastern-European Journal of Enterprise Technologies, Vol 3, Iss 5 (111), Pp 6-12 (2021)
Eastern-European Journal of Enterprise Technologies; Том 3 № 5 (111) (2021): Прикладная физика; 6-12
Eastern-European Journal of Enterprise Technologies; Том 3 № 5 (111) (2021): Прикладна фізика; 6-12
Eastern-European Journal of Enterprise Technologies, Vol 3, Iss 5 (111), Pp 6-12 (2021)
Magnesium oxide (MgO) nanoparticles have been widely used in a variety of applications because of their good surface reactivity. Magnesium oxide from bittern has a larger surface area compared to magnesium oxide from calcined magnesite and magnesium