Examples of 'increase in absorbance' in a sentence

Meaning of "increase in absorbance"

increase in absorbance: Increase in absorbance refers to the rise in the amount of light absorbed by a substance. It is commonly used in chemistry to indicate the increase in absorption of light by a solution or a material.

How to use "increase in absorbance" in a sentence

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increase in absorbance
A linear increase in absorbance with time is observed.
The increase in cell number results in an increase in absorbance.
No increase in absorbance is indicative of negative viability.
Clotting was detected as an increase in absorbance.
An increase in absorbance is an indication of protein precipitation.
Activity can be measured spectrophotometrically by observing the increase in absorbance caused by collagen degradation.
An increase in absorbance indicates an increase in the reducing power.
The hyperchromic effect is the striking increase in absorbance of DNA upon denaturation.
Increase in absorbance due to the hydrolysis of an oligonucleotide was monitored on a spectrometer.
The water sample shows no increase in absorbance on the addition of the second reagent.
Incubation of 5 with lysine under identical conditions resulted in no increase in absorbance.
The average increase in absorbance over time was calculated for each mouse.
FXa-mediated chromogenic substrate conversion was determined by observing an increase in absorbance using a micro-plate reader.
The increase in absorbance with time represents the rate of the elastase reaction.
The reaction was followed by recording the increase in absorbance at 421 nm.

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The increase in absorbance per minute was calculated and used as a measure for relative activity.
Alkaline phosphatase activity was measured by monitoring the increase in absorbance at 405 nm.
An increase in absorbance could be observed due to the formation of HPGL.
The residual FVIIa activity was measured by the increase in absorbance at 405 nm.
The increase in absorbance observed in the presence of the peptide of SEQ.
The residual FVlla activity was measured by the increase in absorbance at 405 nm.
This increase in absorbance underlies the basis of Kunitz unit of DNAse activity.
The extent of antibody binding was determined by monitoring the increase in absorbance at 405 nm.
The increase in absorbance is proportional to the D-Dimer concentration of the sample under test.
Enzyme activity is calculated from the increase in absorbance at 540 nm per unit time.
The rate of increase in absorbance at 405nm is proportional to elastase activity.
AP activity was measured by monitoring the increase in absorbance at 405 nm.
A concentration-dependent increase in absorbance was observed, which indicates that the sandwich immunoassay was justified.
The activity of the PEP was measured by the increase in absorbance at 405 nm.
An increase in absorbance around 247 nm is apparent with increasing concentrations of silver.
Dye bound to GAG displays a concentration dependent increase in absorbance at 656 nm in a UV-Vis spectrophotometer.
The increase in absorbance at 480 nm was a measurement for the enzyme activity.
For the high molecular weight CD14, an antibody causing no increase in absorbance was selected.
The increase in absorbance at 600 nm is directly proportional to protein concentration in the sample.
Activity was measured as an increase in absorbance at 405 nm.
The increase in absorbance at 343 nm indicated that the taxane had linked to the antibody.
Trypsin activity was determined by the increase in absorbance at l=405 nm.
An increase in absorbance was recorded at 420 nm for 3 min in the spectrophotometer.
Briefly, activity was assayed by measuring the increase in absorbance at 260 nm.
The increase in absorbance at 235 nanometers was monitored for 5 min.
Docetaxel, on the other hand, induced a small increase in absorbance even at 0.1 µM.
The increase in absorbance at 405 nm was monitored for 5 minutes at room temperature.
The substrate is suitable if the increase in absorbance is less than 0.001 per minute.
The increase in absorbance at 340 nm follows the production ofNADH from NAD+.
Formation of NADH results in an increase in absorbance at λ 340 nm.
A rapid increase in absorbance followed by a decay . Example 27.
All PASF solutions demonstrated an increase in absorbance over time, indicating change in protein properties.
A sharp increase in absorbance at 64 and 65°C indicated the formation of aggregates.
A reasonably linear increase in absorbance was found, up to 0.5.
The increase in absorbance at 340 nm follows the production of NADH from NAD+.

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