M. S. F. Ercan Et Al. , "Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction," Environmental Monitoring and Assessment , vol.193, no.1, 2021
Ercan, M. S. F. Et Al. 2021. Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction. Environmental Monitoring and Assessment , vol.193, no.1 .
Ercan, M. S. F., Ayyıldız, M. F., Chormey, D. S., & BAKIRDERE, S., (2021). Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction. Environmental Monitoring and Assessment , vol.193, no.1.
Ercan, Maral Et Al. "Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction," Environmental Monitoring and Assessment , vol.193, no.1, 2021
Ercan, Maral S. Et Al. "Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction." Environmental Monitoring and Assessment , vol.193, no.1, 2021
Ercan, M. S. F. Et Al. (2021) . "Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction." Environmental Monitoring and Assessment , vol.193, no.1.
@article{article, author={Maral Selin Fındıkoğlu Ercan Et Al. }, title={Determination of copper in traditional coffee pot water samples by flame atomic absorption spectrometry and matrix matching calibration strategy after switchable solvent based liquid-phase microextraction}, journal={Environmental Monitoring and Assessment}, year=2021}