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ABNT
DE CAMARGO, Andrea Simone Stucchi. Glass science in Brazil. 2022, Anais.. Mons: International Commission on Glass - ICG, 2022. Disponível em: https://iyog2022oc.org/speaker/andrea-s-s-de-camargo/. Acesso em: 15 nov. 2024.
APA
de Camargo, A. S. S. (2022). Glass science in Brazil. In Palestra (Vol. 10 fe 2022). Mons: International Commission on Glass - ICG. Recuperado de https://iyog2022oc.org/speaker/andrea-s-s-de-camargo/
NLM
de Camargo ASS. Glass science in Brazil [Internet]. Palestra. 2022 ;10 fe 2022[citado 2024 nov. 15 ] Available from: https://iyog2022oc.org/speaker/andrea-s-s-de-camargo/
Vancouver
de Camargo ASS. Glass science in Brazil [Internet]. Palestra. 2022 ;10 fe 2022[citado 2024 nov. 15 ] Available from: https://iyog2022oc.org/speaker/andrea-s-s-de-camargo/
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
PASTA, Paula C. et al. Use of Typha angustifolia L. as biosorbent to remove chloramphenicol in aqueous samples. European Journal of Advanced Chemistry Research, v. 3, n. Ja 2022, p. 64-86, 2022Tradução . . Disponível em: https://doi.org/10.24018/ejchem.2022.3.1.66. Acesso em: 15 nov. 2024.
APA
Pasta, P. C., Silva, A. C. P., Jorgetto, A. O., Saeki, M. J., Pedrosa, V. de A., Martines, M. A. U., et al. (2022). Use of Typha angustifolia L. as biosorbent to remove chloramphenicol in aqueous samples. European Journal of Advanced Chemistry Research, 3( Ja 2022), 64-86. doi:10.24018/ejchem.2022.3.1.66
NLM
Pasta PC, Silva ACP, Jorgetto AO, Saeki MJ, Pedrosa V de A, Martines MAU, Schneider JF, Minatel IO, Rabelo J, Castro RSD, Castro GR. Use of Typha angustifolia L. as biosorbent to remove chloramphenicol in aqueous samples [Internet]. European Journal of Advanced Chemistry Research. 2022 ; 3( Ja 2022): 64-86.[citado 2024 nov. 15 ] Available from: https://doi.org/10.24018/ejchem.2022.3.1.66
Vancouver
Pasta PC, Silva ACP, Jorgetto AO, Saeki MJ, Pedrosa V de A, Martines MAU, Schneider JF, Minatel IO, Rabelo J, Castro RSD, Castro GR. Use of Typha angustifolia L. as biosorbent to remove chloramphenicol in aqueous samples [Internet]. European Journal of Advanced Chemistry Research. 2022 ; 3( Ja 2022): 64-86.[citado 2024 nov. 15 ] Available from: https://doi.org/10.24018/ejchem.2022.3.1.66
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
GANCHEFF, Jorge S. et al. Polynuclear 2D copper(II) complex of pyrazine containing perchlorate as a counter-ion: crystal structure and DFT calculations. Journal of Transition Metal Complexes, v. 4, p. 236086-1-236086-7, 2021Tradução . . Disponível em: https://doi.org/10.32371/jtmc/236086. Acesso em: 15 nov. 2024.
APA
Gancheff, J. S., Luzardo, F., Álvarez, N., Rosas, K. S., Kremer, C., & de Camargo, A. S. S. (2021). Polynuclear 2D copper(II) complex of pyrazine containing perchlorate as a counter-ion: crystal structure and DFT calculations. Journal of Transition Metal Complexes, 4, 236086-1-236086-7. doi:10.32371/jtmc/236086
NLM
Gancheff JS, Luzardo F, Álvarez N, Rosas KS, Kremer C, de Camargo ASS. Polynuclear 2D copper(II) complex of pyrazine containing perchlorate as a counter-ion: crystal structure and DFT calculations [Internet]. Journal of Transition Metal Complexes. 2021 ; 4 236086-1-236086-7.[citado 2024 nov. 15 ] Available from: https://doi.org/10.32371/jtmc/236086
Vancouver
Gancheff JS, Luzardo F, Álvarez N, Rosas KS, Kremer C, de Camargo ASS. Polynuclear 2D copper(II) complex of pyrazine containing perchlorate as a counter-ion: crystal structure and DFT calculations [Internet]. Journal of Transition Metal Complexes. 2021 ; 4 236086-1-236086-7.[citado 2024 nov. 15 ] Available from: https://doi.org/10.32371/jtmc/236086