1979
DOI: 10.1007/bf00565914
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Spectrophotometric determination of a bacterial lipopolysaccharide fromEscherichia coli 675

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“…Consider a colorimetric method for the determination of the biological contaminant using a bacterial lipopolysaccharide (endotoxin) as a typical example of such contamination. Assuming the validity of the Beer–Lambert law, the optical absorbance (or optical density) can be written as eq : where σ BIO α is the extinction cross section of the biospecies, n BIO is their volume concentration, and d is the optical path length. By comparing the measured value of the optical absorbance to the standard (calibration) curve, the concentration of the biological contaminants can be easily determined. The product, σ BIO α n BIO , determines the optical extinction coefficient, α BIO , of the biological contaminant.…”
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confidence: 99%
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“…Consider a colorimetric method for the determination of the biological contaminant using a bacterial lipopolysaccharide (endotoxin) as a typical example of such contamination. Assuming the validity of the Beer–Lambert law, the optical absorbance (or optical density) can be written as eq : where σ BIO α is the extinction cross section of the biospecies, n BIO is their volume concentration, and d is the optical path length. By comparing the measured value of the optical absorbance to the standard (calibration) curve, the concentration of the biological contaminants can be easily determined. The product, σ BIO α n BIO , determines the optical extinction coefficient, α BIO , of the biological contaminant.…”
mentioning
confidence: 99%
“…Physical parameters used in simulations are listed in Table . The values of these parameters were selected to reasonably represent existing materials. …”
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confidence: 99%