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Amini Najafabadi R, Poorbesharati A, Isfahani T. Effect of Carbon Addition on the Corrosion Properties of FeCoCrMnNi High Entropy Alloy. International Journal of Iron & Steel Society of Iran. 2024;20(2):27-32
Parametric analysis of landing injury: The effect of landing posture and joint displacement
A Simple Model for Estimating the Effect of Joint Stiffness on Impact Ground Reaction Forces During Landing
Effects of a yeast cell wall product on the performance of broiler chickens and PGC-1?, TLRs, IL-10 and PPAR? genes expression
Effect of N addition and aging treatment on microstructure and high temperature mechanical properties of Ti-48Al-2Cr-2Nb (at.%) intermetallic alloy
Effect of N addition and aging treatment on microstructure and high temperature mechanical properties of Ti-48Al-2Cr-2Nb (at.%) intermetallic alloy
Understanding the Effect of Interfacial Interphase on the Elastic Response of Hollow Glass Microsphere Reinforced Microcomposites
Effects of Metribuzin Herbicide on Some Morpho-Physiological Characteristics of Two Echinacea Species
Experimentally verified prediction of friction coefficient and wear rate during running-in dry contact
Effect of OCR and Pile Diameter on Load Movement Response of Piles Embedded in Clay over Time
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity
Decomposition of the interaction energy of several flavonoids with Escherichia coli DNA Gyr using the SAPT (DFT) method: The relation between the interaction energy components, ligand structure, and biological activity
Inspiring biomimetic system based on red blood cell membrane vesicles for effective curcumin loading and release
Inspiring biomimetic system based on red blood cell membrane vesicles for effective curcumin loading and release
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