Analytical chemists can advantageously use an uncertainty function to describe the performance of an analytical system in terms of the standard uncertainty or standard deviation as a function of the concentration of the analyte. This “characteristic function” is useful for estimating uncertainty at a new concentration. A similar function can be used to prescribe the uncertainty that is regarded as fit for purpose for a particular application. This “fitness function” is useful in setting standards of accuracy in proficiency tests and similar exercises without revealing the concentration of the analyte. In combination, these two functions provide a rational basis for method selection
Abstract: The uncertainty estimation procedures recommended in ISO-GUM are largely used by several l...
4 f.ABSTRACT: The uncertainty estimation procedures recommended in ISO-GUM are largely used by sever...
The implementation of quality systems in analytical laboratories has now, in general, been achieved....
tProcedures for estimating the measurement uncertainty (MU) of the concentration of a given analyte ...
A new way to express uncertainty of measurement is proposed that allows for the fact that the distri...
Sampling is an integral part of nearly all chemical measurement and often makes a substantial or eve...
Large numbers of measurements are being carried out in the industries and all the sectors of science...
Ligand-binding assays, such as immunoassays, are usually analysed using standard curves based on the...
An assessment of measurement uncertainty is a task, which has to be the final step of every chemical...
AbstractThe measurement uncertainty provides complete information about an analytical result. This i...
Calculation of uncertainty of results represents the new paradigm in the area of the quality of meas...
The "Guide to the Expression of Uncertainty in Measurement" (GUM) is the foundational docu...
Abstract-This protocol was developed to estimate the uncertainty of measurement of a chemical analys...
Abstract: This paper would provide the analyst with an easy to use step-by-step guide to calculate t...
The implementation of a quality assurance program in chemical analytical laboratories, that can aid ...
Abstract: The uncertainty estimation procedures recommended in ISO-GUM are largely used by several l...
4 f.ABSTRACT: The uncertainty estimation procedures recommended in ISO-GUM are largely used by sever...
The implementation of quality systems in analytical laboratories has now, in general, been achieved....
tProcedures for estimating the measurement uncertainty (MU) of the concentration of a given analyte ...
A new way to express uncertainty of measurement is proposed that allows for the fact that the distri...
Sampling is an integral part of nearly all chemical measurement and often makes a substantial or eve...
Large numbers of measurements are being carried out in the industries and all the sectors of science...
Ligand-binding assays, such as immunoassays, are usually analysed using standard curves based on the...
An assessment of measurement uncertainty is a task, which has to be the final step of every chemical...
AbstractThe measurement uncertainty provides complete information about an analytical result. This i...
Calculation of uncertainty of results represents the new paradigm in the area of the quality of meas...
The "Guide to the Expression of Uncertainty in Measurement" (GUM) is the foundational docu...
Abstract-This protocol was developed to estimate the uncertainty of measurement of a chemical analys...
Abstract: This paper would provide the analyst with an easy to use step-by-step guide to calculate t...
The implementation of a quality assurance program in chemical analytical laboratories, that can aid ...
Abstract: The uncertainty estimation procedures recommended in ISO-GUM are largely used by several l...
4 f.ABSTRACT: The uncertainty estimation procedures recommended in ISO-GUM are largely used by sever...
The implementation of quality systems in analytical laboratories has now, in general, been achieved....