Journal · 2017
A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells
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Publication details
- Venue
- American Journal of Computational and Applied Mathematics
- Type
- Journal · 2017
- Citations
- 0
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Elmouki, I. (2017). A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells. American Journal of Computational and Applied Mathematics.
Elmouki, I. (2017) 'A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells', American Journal of Computational and Applied Mathematics.
I. Elmouki, "A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells," American Journal of Computational and Applied Mathematics, 2017.
Elmouki I. A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells. American Journal of Computational and Applied Mathematics. 2017.
Elmouki, Ilias. "A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells." American Journal of Computational and Applied Mathematics, 2017.
Elmouki, I.. "A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells." American Journal of Computational and Applied Mathematics (2017).
@article{elmouki2017, title={A Multi-regions SIS Discrete Influenza Pandemic Model with a Travel-blocking Vicinity Optimal Control Approach on Cells}, author={Elmouki, Ilias}, journal={American Journal of Computational and Applied Mathematics}, year={2017}, }