Explores light propagation in optical fibers, modes in waveguides, fiber types, and fiber lasers, along with historical insights and mode types in slab waveguides.
Explores Kepler's laws, orbital mechanics, energy of motion, flight path angles, orbital maneuvers, Hohmann transfers, geostationary orbits, and Lagrange points.
Delves into advanced techniques in optical fiber communications to increase spectral efficiency and explores the use of multi-core fibers for space-division multiplexing.
Discusses wave-matter interactions, focusing on diffraction and diffusion phenomena, including principles of reflection, refraction, and the significance of X-ray interactions.
Analyzes interference patterns from a device with six slits to determine the relation between slit width and distance, showcasing mathematical expressions and graphical representations.
Explores the historical perspective, properties, and applications of X-rays, including diffraction, atomic resolution, and spectral colors of elements.