Skip to main content
People
Isfahan University of Technology
Finding Contents or People
Flexural strengthening of flat slabs with FRP composites using EBR and EBROG methods
Surface modified Ti6Al4V for enhanced bone bonding ability - Effects of silver and corrosivity at simulated physiological conditions from a corrosion and metal release perspective
A Domain Decomposition Approach Using Equilibrated Basis Functions Special Reference to Structural Engineering Problems with Varying Material Properties
A Domain Decomposition Approach Using Equilibrated Basis Functions Special Reference to Structural Engineering Problems with Varying Material Properties
Experimental and Numerical Analyses of Buried Box Culverts in Trenches using EPS Geofoam
Seismic nonlinear response control of MR-dampers equipped multi-story irregular buildings using a new supervisory adaptive strategy
Using grooving and corner strip-batten techniques for seismic strengthening of square reinforced concrete columns with fiber-reinforced polymer composites
Using grooving and corner strip-batten techniques for seismic strengthening of square reinforced concrete columns with fiber-reinforced polymer composites
A geographic information system-based land use impact model to map areas with risk for land degradation: Wind erosion as an example
DC grids DC fault detection using asymmetric pole inductors
Graphene vanadic acid (GVA) as a novel heterogeneous catalyst for highly selective benzene hydroxylation under mild conditions
Polyphenolic and molecular variation in Thymus species using HPLC and SRAP analyses
Polyphenolic and molecular variation in Thymus species using HPLC and SRAP analyses
A request dispatching method for efficient use of renewable energy in fog computing environments
A request dispatching method for efficient use of renewable energy in fog computing environments
Pagination
First page
« First
Previous page
‹‹
…
Page
140
Page
141
Page
142
Page
143
Page
144
Page
145
Page
146
Page
147
Page
148
…
Next page
››
Last page
Last »
تحت نظارت وف بومی