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Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation
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S. Keniley Et Al. , "Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation," PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7, 2022

Keniley, S. Et Al. 2022. Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation. PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7 .

Keniley, S., Uner, N. B., Perez, E., Sankaran, R. M., & Curreli, D., (2022). Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation. PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7.

Keniley, Shane Et Al. "Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation," PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7, 2022

Keniley, Shane Et Al. "Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation." PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7, 2022

Keniley, S. Et Al. (2022) . "Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation." PLASMA SOURCES SCIENCE & TECHNOLOGY , vol.31, no.7.

@article{article, author={Shane Keniley Et Al. }, title={Multiphase modeling of the DC plasma-water interface: application to hydrogen peroxide generation with experimental validation}, journal={PLASMA SOURCES SCIENCE & TECHNOLOGY}, year=2022}