Skip to main content
People
Isfahan University of Technology
Finding Contents or People
Investigating the performance of drug delivery system of fluconazole made of nanomicro fibers coated on cotton/polyester fabric
Flexural Strengthening of Reinforced Concrete Beam-Column Joints Using Innovative Anchorage System
Root characteristic system improves drought tolerance in orchardgrass
Root characteristic system improves drought tolerance in orchardgrass
Thermo-mechanical vibration, buckling, and bending of orthotropic graphene sheets based on nonlocal two-variable refined plate theory using finite difference method considering surface energy effects
Performance of hematite-grafted nonwoven geotextile layer for treatment of wastewater in SAT system: a columns study
Performance of hematite-grafted nonwoven geotextile layer for treatment of wastewater in SAT system: a columns study
Nonlinear Analysis of Microswitches Considering Nonclassical Theory
Thermal and exergoeconomic analysis of a novel solar driven combined power and ejector refrigeration (CPER) system
Thermal and exergoeconomic analysis of a novel solar driven combined power and ejector refrigeration (CPER) system
Antioxidant defence system and physiological responses of Iranian crested wheatgrass (Agropyron cristatum L.) to drought and salinity stress
Antioxidant defence system and physiological responses of Iranian crested wheatgrass (Agropyron cristatum L.) to drought and salinity stress
Antioxidant defence system and physiological responses of Iranian crested wheatgrass (Agropyron cristatum L.) to drought and salinity stress
Proposition of R-phase transformation strip in the phase diagram of Ni-Ti shape memory alloy using electromechanical experiments
Forecasting ground vibration due to rock blasting a hybrid intelligent approach using support vector regression and fuzzy C-means clustering
Pagination
First page
« First
Previous page
‹‹
…
Page
67
Page
68
Page
69
Page
70
Page
71
Page
72
Page
73
Page
74
Page
75
…
Next page
››
Last page
Last »
تحت نظارت وف بومی