Explores Lorentz invariance, covering velocities, time dilation, and length contraction, with implications for symmetries and physical interpretations.
Covers the fundamental concepts of relativity, focusing on Lorentz transformations and their applications in measuring time and length in different reference frames.
Introduces spatial information into magnetic resonance imaging, covering static, RF, and gradient fields for spatial encoding and slice-selection techniques.
Explores high-temperature superconductors and their industrial applications, focusing on the key role of Rebco in compact fusion reactors and high-field magnets.