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Carbon Nanostructures: Properties and Applications
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Mechanical Properties of Aluminum Alloys: Strength and Composition
Covers the mechanical properties of aluminum alloys, focusing on yield strengths and compositions essential for engineering applications.
Thermal Behavior of Glasses
Explores the mechanical and thermal properties of glasses, emphasizing their poor heat conductivity and fragility.
Aluminum Alloys: Mechanical Properties and Processing Techniques
Provides an overview of aluminum alloys, focusing on their mechanical properties and processing techniques, including the Al-Mg and Al-Si systems.
Spectroscopy: Electronic Properties and Techniques
Explores energy spectroscopy techniques like XPS and UPS, Auger spectroscopy, surface sensitivity, and graphene band structure.
Concrete Road Construction: Material Characteristics and Reinforcement Design
Discusses concrete material characteristics and reinforcement design for road construction.
Material Selection: Microtechnology Design
Explores material selection criteria in microtechnology design and the influence of fatigue on material limits.
Plastic Hinge Analysis: Seismic Engineering
Discusses plastic hinge analysis in seismic engineering and key seismic design concepts.
Engineering Carbon Nanostructures
Explores the engineering of intrinsic π-electron magnetism in carbon nanostructures, focusing on inducing magnetism in graphene and nanographenes through sublattice imbalance and topological frustration.
Newton's Laws: Fundamentals
Explores Newton's laws of motion, fundamental forces in nature, and the unification of interactions.