Skip to main content
People
Isfahan University of Technology
Finding Contents or People
An analytical model for delay bound of OpenFlow based SDN using network calculus
An analytical model for delay bound of OpenFlow based SDN using network calculus
Fabrication and characterization of novel nanofibers from cress seed mucilage for food applications
Influence of foliar application of polyamines on growth gas exchange characteristics and chlorophyll fluorescence in Bakraii citrus under saline conditions
A Root-Locus Design Methodology Derived From the Impedance/Admittance Stability Formulation and Its Application for LCL Grid-Connected Converters in Wind Turbines
Distributed Learning for Energy-Efficient Resource Management in Self-Organizing Heterogeneous Networks
A novel biodegradable micro-nano tubular knitted structure of PGA braided yarns and PCL nanofibres applicable as esophagus prosthesis
ECOLOGICAL IMPACT ASSESSMENT OF ROAD NETWORKS AT LANDSCAPE SCALE USING SPATIAL ROAD DISTURBANCE INDEX (SPROADI)
ECOLOGICAL IMPACT ASSESSMENT OF ROAD NETWORKS AT LANDSCAPE SCALE USING SPATIAL ROAD DISTURBANCE INDEX (SPROADI)
Application of carbonate precipitating bacteria for improving properties and repairing cracks of shotcrete
A Type-2 fuzzy data fusion approach for building reliable weighted protein interaction networks with application in protein complex detection
Quality of Service Analysis for the Real-Time Secondary Users in Cognitive Radio Cellular Networks
Modeling of Fixed-Bed Column System of Hg(II) Ions on Ostrich Bone Ash/nZVI Composite by Artificial Neural Network
Preparation of Alumina/Polystyrene Core-Shell Composite Powder via Phase Inversion process for Indirect Selective Laser Sintering Applications
Preparation of Alumina/Polystyrene Core-Shell Composite Powder via Phase Inversion process for Indirect Selective Laser Sintering Applications
Pagination
First page
« First
Previous page
‹‹
…
Page
78
Page
79
Page
80
Page
81
Page
82
Page
83
Page
84
Page
85
Page
86
…
Next page
››
Last page
Last »
تحت نظارت وف بومی