55 T, UHF NMR delivers exceptional resolution and sensitivity—enabling new capabilities in biomolecular dynamics, quadrupolar nuclei analysis, and magnetic resonance microscopy. Bruker's Ultra-High Field (UHF) NMR technology is pushing the boundaries of modern research. Our. Measuring emissivity is pivotal for obtaining reliable high-temperature measurements through non-contact techniques such as pyrometry and thermal imaging. The interest in characterizing materials in terms of their radiant properties has increased in recent years due to the expanded application. Ultrahigh temperatures, those near and above roughly 3000°C, present an interesting problem to accurate pyrometry. The issues are related to calibration, interference, and inherent error. The applications of spectroscopy are vast, ranging from determining the composition of celestial bodies in astrophysics to analyzing the molecular. Fourier-transform infrared spectroscopy (FTIR) has matured into a versatile technique with relevance for environmental monitoring, pharmaceutical research, and food safety applications. However, compared to other spectroscopic methods, it experiences slower progress in terms of power optimization. ASILOMAR, Calif. -- (BUSINESS WIRE)-- At the Joint ENC-ISMAR Conference 2025, Bruker Corporation, the leading provider of Nuclear Magnetic Resonance (NMR) spectroscopy solutions, announced the successful development and testing of the world's first high-resolution 1. 3 GHz NMR spectrometer with a.