Explores noise and propagation fundamentals in radiation, antennas, and wireless communications, covering internal and external noise sources, thermal noise, wireless principles, and signal propagation phenomena.
Covers the definitions and characteristics of transducers, sensors, and actuators in different physical domains, emphasizing sensor performance and measurement accuracy.
Explores intermodulation effects in two-tone input signals, demonstrating nonlinearity impact on signal quality and discussing different types of LNAs.
Explores physics-informed imaging systems, including lensless imaging, deep learning for imaging challenges, and the development of noise models for low-light videos.
Introduces optical methods in chemistry, covering ray optics, lasers, spectroscopy, and X-ray physics, emphasizing light-matter interactions and Nobel Prize-winning advancements.
Covers the design of low-power analog integrated circuits, focusing on operational transconductance amplifiers (OTAs) and operational amplifiers (OPAMPs).