Journal · 2017

A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells

Ilias Elmouki

Cited by 0 Journal of Mathematical and Computational Science

Abstract

No abstract has been published for this record yet.

Publication details

Venue
Journal of Mathematical and Computational Science
Type
Journal · 2017
Citations
0

Cite this publication

Copy a ready-formatted citation in your preferred style.

APA

Elmouki, I. (2017). A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells. Journal of Mathematical and Computational Science.

Harvard

Elmouki, I. (2017) 'A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells', Journal of Mathematical and Computational Science.

IEEE

I. Elmouki, "A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells," Journal of Mathematical and Computational Science, 2017.

Vancouver

Elmouki I. A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells. Journal of Mathematical and Computational Science. 2017.

MLA

Elmouki, Ilias. "A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells." Journal of Mathematical and Computational Science, 2017.

Chicago

Elmouki, I.. "A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells." Journal of Mathematical and Computational Science (2017).

BibTeX

@article{elmouki2017, title={A multi-regions SEIS discrete epidemic model with a travel-blocking vicinity optimal control approach on cells}, author={Elmouki, Ilias}, journal={Journal of Mathematical and Computational Science}, year={2017}, }

← All publications