Explores the two main approaches to fusion energy, covering conditions for energy generation, compression techniques, physics of Inertial Confinement Fusion, progress in research, and engineering constraints.
Explores fusion reactor structural material requirements, effects of 14 MeV neutrons, candidate materials, and the crucial role of material science in fusion energy.
Discusses plasma confinement using magnetic mirrors and toroidal fields, emphasizing particle dynamics and the challenges of toroidal field confinement.
Explores glass bonding techniques to silicon, covering principles, mechanisms, applications, and evaluation methods, including surface treatments for enhanced adhesion strength.