Skip to main content
People
Isfahan University of Technology
Finding Contents or People
Novel poly (N-vinyl-2-pyrrolidone) nanocomposites containing poly (amide–imide)/aluminum oxide nanostructure hybrid as a filler
Role of Carboxylic Acid Functionalized MWCNTs in Potentially Biodegradable Poly(Amide-Imide) Nanocomposites Based on N,N′-(Pyromellitoyl)-bis-S-valine: Preparation, Thermal and Morphological Properties
Graduate Courses
Surface functionalization of GO, preparation and characterization of PVA/TRIS-GO nanocomposites
Application of recycled PET/carboxylated multi-walled carbon nanotube composites for Cd2+ adsorption from aqueous solution: a study of morphology, thermal stability, and electrical conductivity
Novel poly(N-vinyl-2-pyrrolidone) nanocomposites containing poly(amide–imide)/aluminum oxide nanostructure hybrid as a filler
p-Amino phenol immobilized on multi-walled carbon nanotubes for the preparation of chitosan nanocomposites
Nanocomposite materials based on poly(vinyl chloride) and bovine serum albumin modified ZnO through ultrasonic irradiation as a green technique: Optical, thermal, mechanical and morphological properties
Preparation and Characterization of Polyvinylpyrrolidone/L-leucine Amino Acid–Modified Montmorillonite/Chiral Diacid–Functionalized Mg-Substituted Fluorapatite Nanocomposites by Ultrasonic-Assisted Rapid Process
Eccentric load behaviour of concrete columns retrofitted with engineered cementitious composite jackets via grooving method
Seismic Retrofit of Square RC Short Columns with Shear-Flexural Failure Mode via CFRP Composites Using Different Confinement Techniques
Research Method
Advanced Groundwater, 3 Cr.
Behavior of RC columns strengthened with UHPFRC jackets through grooving method under eccentric loading: A comparative evaluation of steel and synthetic macro fibers in UHPFRC
2018, Ghaheri, A.
Pagination
First page
« First
Previous page
‹‹
…
Page
399
Page
400
Page
401
Page
402
Page
403
Page
404
Page
405
Page
406
Page
407
…
Next page
››
Last page
Last »
تحت نظارت وف بومی