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AFRLHEBRTR20070050 Experimental Characterization of NearInfrared Laser Energy Absorption, Scattering, and Transmittance in Biological Tissue John Lafitte David RoelantFlorida International University
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01
Start by preparing the sample that will be characterized using near-infrared spectroscopy. This may involve cleaning, drying, or any other necessary preparation steps.
02
Set up the near-infrared spectrometer according to the manufacturer's instructions. This usually involves connecting the necessary cables, calibrating the instrument, and ensuring proper alignment.
03
Place the prepared sample in the sample holder or cuvette, making sure it is positioned correctly for analysis.
04
Adjust the instrument settings to the desired wavelength range and resolution for the characterization.
05
Begin the measurement by starting the spectrometer and initiating the data acquisition process.
06
Allow the instrument to collect the near-infrared spectra for the sample. This may involve waiting for a certain amount of time or until a stable signal is obtained.
07
Once the data acquisition is complete, analyze the obtained spectra using appropriate software or algorithms. This may involve spectral preprocessing, peak identification, or any other necessary data processing steps.
08
Interpret the results obtained from the near-infrared characterization. This may involve comparing the spectra to reference standards, identifying functional groups or chemical compositions, or any other relevant analysis.
09
Document the experimental characterization of near-infrared by recording the instrument settings, sample preparation details, data analysis procedures, and any other relevant information.
10
Repeat the experimental characterization process if necessary, ensuring consistency and reproducibility of the results.
11
Communicate the findings of the near-infrared characterization to the intended audience through reports, presentations, or any other suitable means.

Who needs experimental characterization of near-infrared?

01
Researchers and scientists in fields such as chemistry, biology, materials science, or pharmaceuticals who are studying and developing new materials, compounds, or substances.
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Quality control laboratories or manufacturing industries that require accurate and reliable analysis of raw materials, products, or intermediates.
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Environmental agencies or organizations involved in monitoring and assessing pollution levels, identifying contaminants, or studying environmental samples.
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Forensic laboratories or investigators who need to analyze evidence, such as fibers, drugs, or unknown substances, for identification or comparison purposes.
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Food and agricultural industries that need to analyze agricultural products, determine nutritional information, or detect adulteration or contamination.
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Medical and healthcare professionals who utilize near-infrared spectroscopy for diagnostic purposes, drug formulation, or patient monitoring.
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Experimental characterization of near-infrared involves studying the behavior of near-infrared light in different materials or conditions.
Researchers or scientists conducting experiments involving near-infrared light are required to file experimental characterization of near-infrared.
Experimental characterization of near-infrared can be filled out by providing details on the experimental setup, methodology, results, and analysis related to the near-infrared light.
The purpose of experimental characterization of near-infrared is to document and analyze the behavior of near-infrared light in various experiments for research or development purposes.
Information such as experimental setup, methodology, results, analysis, and conclusions related to the near-infrared light must be reported on experimental characterization of near-infrared.
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