(*)Upon completing the course, students will possess the following skills. They are able to
- apply their mathematical and physical knowledge for deriving key equations and quantities in laser-based material analysis (k3);
- describe and critically evaluate different methodologies used to analyze the chemical composition of materials (k2/k5);
- collect and break down information from the scientific literature (k4);
- apply fundamental equations in laser analytics for the determination of analyte concentrations (k3/k4).
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(*)During the course, students will acquire knowledge in the following areas and concepts of laser analytics:
- relevant properties of laser radiation in materials analysis;
- basic statistical concepts for evaluation of measured data;
- calibration, validation, random sampling;
- dispersion of optical refractive index, spectral resolution;
- types of optical spectrometers;
- examples in absorption spectroscopy;
- examples in Raman, infrared and fluorescence spectroscopy.
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