Roles of private sector security providers in ports : a nodal-network analysis in hybrid security environments
(2022)
- Author
- Eva-Katharina Dinchel
- Promoter
- Marleen Easton (UGent) and Philip C. Stenning
- Organization
- Project
Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8746462
- MLA
- Dinchel, Eva-Katharina. Roles of Private Sector Security Providers in Ports : A Nodal-Network Analysis in Hybrid Security Environments. Ghent University. Faculty of Economics and Business Administration, 2022.
- APA
- Dinchel, E.-K. (2022). Roles of private sector security providers in ports : a nodal-network analysis in hybrid security environments. Ghent University. Faculty of Economics and Business Administration, Ghent, Belgium.
- Chicago author-date
- Dinchel, Eva-Katharina. 2022. “Roles of Private Sector Security Providers in Ports : A Nodal-Network Analysis in Hybrid Security Environments.” Ghent, Belgium: Ghent University. Faculty of Economics and Business Administration.
- Chicago author-date (all authors)
- Dinchel, Eva-Katharina. 2022. “Roles of Private Sector Security Providers in Ports : A Nodal-Network Analysis in Hybrid Security Environments.” Ghent, Belgium: Ghent University. Faculty of Economics and Business Administration.
- Vancouver
- 1.Dinchel E-K. Roles of private sector security providers in ports : a nodal-network analysis in hybrid security environments. [Ghent, Belgium]: Ghent University. Faculty of Economics and Business Administration; 2022.
- IEEE
- [1]E.-K. Dinchel, “Roles of private sector security providers in ports : a nodal-network analysis in hybrid security environments,” Ghent University. Faculty of Economics and Business Administration, Ghent, Belgium, 2022.
@phdthesis{8746462,
author = {{Dinchel, Eva-Katharina}},
language = {{eng}},
pages = {{346}},
publisher = {{Ghent University. Faculty of Economics and Business Administration}},
school = {{Ghent University}},
title = {{Roles of private sector security providers in ports : a nodal-network analysis in hybrid security environments}},
year = {{2022}},
}