SISAM NUCLEAR FISSION & FUSION

Investigating atomic mass deficits, macroscale neutron transport kinetics, and high-temperature plasma confinement systems.

Our Curriculum

Explore or unique courses

Induced Fission Dynamics

Investigate neutron bombardment capture cross-sections, isotopic fission pathways of U-235 and Pu-239, critical mass geometries, and prompt-delayed neutron propagation mechanics.

Thermonuclear Fusion Mechanics

Study light nuclei combining behaviors, Deuterium-Tritium cross-sections, Coulomb barrier tunneling probabilities, and stellar nucleosynthesis replication kinetics.

Magnetic Confinement & Tokamaks

Analyze toroidal and poloidal magnetic fields, magneto-hydrodynamic (MHD) plasma stability vectors, magnet configurations, and auxiliary neutral beam heating dynamics.

Inertial Confinement Physics

Delve into high-energy laser driver arrays, hohlraum X-ray target ablation kinematics, implosion symmetry hydrodynamics, and fusion ignition criteria boundaries.

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