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Formation mechanism crystallite growth and electrical conductivityof nano-crystalline CuxFe3-xO4(0.75 x 1.25) spinels prepared byglycine-nitrate process
Reinforcement of poly(amide imide) containing N-trimellitylimido-Lphenylalanine by using nano a-Al2O3 surface-coupled with bromo-flame retardant under ultrasonic irradiation technique
Surface treatment of nano ZnO using 3 4 5 6-tetrabromo-N-(4-hydroxy-phenyl)-phthalamic acid as novel coupling agent for the preparation of poly(amide imide)/ZnO nanocomposites
Influence of Nb-Microalloying on the Formation of Nano/Ultrafine-Grained Microstructure and Mechanical Properties During Martensite Reversion Process in a 201-Type Austenitic Stainless Steel
Influence of Nb-Microalloying on the Formation of Nano/Ultrafine-Grained Microstructure and Mechanical Properties During Martensite Reversion Process in a 201-Type Austenitic Stainless Steel
Synthesis and characterization of nano-porous La0.6Ca0.4MnO3 perovskite oxide with large surface area by modified citrate gel precursor method
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زمينه‌ي تحقيقاتي SPH
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Effects of A-Site Doping on Structural Magnetic and Electrical Properties of La0.8-xAxSr0.2MnO3 (x 0-0.6) Manganites (AThe effects of rare-earth doping were investigated on the structural magnetic and electrical properties of La0.8 xAxSr0.2MnO3 (0 x
Effects of A-Site Doping on Structural Magnetic and Electrical Properties of La0.8-xAxSr0.2MnO3 (x 0-0.6) Manganites (AThe effects of rare-earth doping were investigated on the structural magnetic and electrical properties of La0.8 xAxSr0.2MnO3 (0 x
Effects of A-Site Doping on Structural Magnetic and Electrical Properties of La0.8-xAxSr0.2MnO3 (x 0-0.6) Manganites (AThe effects of rare-earth doping were investigated on the structural magnetic and electrical properties of La0.8 xAxSr0.2MnO3 (0 x
English Paper
Kiachehr Behfarnia, PhD, PE
Strongest ever spin-phonon coupling observed