Skip to main content
People
Isfahan University of Technology
Finding Contents or People
Sprayable and injectable visible-light Kappa-carrageenan hydrogel for in-situ soft tissue engineering
Sprayable and injectable visible-light Kappa-carrageenan hydrogel for in-situ soft tissue engineering
Environmental impact assessment of the mechanical shaft work produced in a diesel engine running on diesel/biodiesel blends containing glycerol-derived triacetin
Evaluation of physical, mechanical and biological properties of poly 3-hydroxybutyrate-chitosan-multiwalled carbon nanotube/silk nano-micro composite scaffold for cartilage tissue engineering applications
Effects of nano-bioactive glass on structural, mechanical and bioactivity properties of Poly (3-hydroxybutyrate) electrospun scaffold for bone tissue engineering applications
Poly(vinyl alcohol)/Vitamin C-multi walled carbon nanotubes composites and their applications for removal of methylene blue: Advanced comparison between linear and nonlinear forms of adsorption isotherms and kinetics models
Relationship of Drought and Engineered Water Supply: Multivariate Index for Quantifying Sustained Water Stress in Anthropogenically Affected Subbasins
Design and fabrication of poly (glycerol sebacate)-based fibers for neural tissue engineering: Synthesis, electrospinning, and characterization
Pavement Structural Capacity from Traffic Speed Deflectometer for Network Level Pavement Management System Application
Modeling of a dual fueled diesel engine operated by a novel fuel containing glycerol triacetate additive and biodiesel using artificial neural network tuned by genetic algorithm to reduce engine emissions
Effect of Calcite and Silica Content on Tribological Performance of Engine Oil Lubricants
Effect of Calcite and Silica Content on Tribological Performance of Engine Oil Lubricants
Effect of Calcite and Silica Content on Tribological Performance of Engine Oil Lubricants
Development of three-dimensional piezoelectric polyvinylidene fluoride-graphene oxide scaffold by non-solvent induced phase separation method for nerve tissue engineering
Development of three-dimensional piezoelectric polyvinylidene fluoride-graphene oxide scaffold by non-solvent induced phase separation method for nerve tissue engineering
Pagination
First page
« First
Previous page
‹‹
…
Page
8
Page
9
Page
10
Page
11
Page
12
Page
13
Page
14
Page
15
Page
16
…
Next page
››
Last page
Last »
تحت نظارت وف بومی