Explores radiation sources, including fast electron sources, heavy charged particle sources, and neutron sources, covering processes like beta decay, internal conversion, and Auger electrons.
Explores atoms and radiation lineshapes, covering linewidths, lifetime broadening, and broadening mechanisms, including Lorentzian and Doppler effects.
Explores the history, mechanisms, and players of cancer immunotherapies, including immune evasion strategies and the role of MHC in antigen presentation.
Explores electromagnetic waves' energy, momentum, and radiation pressure, including forces generated by radiation pressure and the transmission of waves through Earth's atmosphere.
Explores space environmental constraints, including radiations, vibrations, shocks, and their impact on spacecraft mechanisms and human-induced vibrations.
Explores the photon concept in electromagnetic waves, including energy, momentum, emission by charges, coherence length, and the electromagnetic spectrum.