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EMUE-RMG-1-GasFlowCalibration

<p>Flow meter calibration using the master meter method</p> <p>This example demonstrates the calibration of a gas flow measuring instrument by the so-called &ldquo;master meter&rdquo; method, i.e. by comparing the measured flow on a master meter (reference standard) and the measured flow on the device under test.</p> <p>Files contained in dataset are:</p> <ul> <li>Flow_meter_calibration_using_the_master_meter_method.pdf</li> <li>RMG11_ExampleSAGAS.tex: LaTeX file to be compiled in order to produce Flow_meter_calibration_using_the_master_meter_method.pdf,</li> <li>EMPIR.jpg: figure file,</li> <li>EMUELogo-03.jpg: figure file,</li> <li>SAGAS1.png: figure file,</li> <li>SAGASGUMandMCM.jpg: figure file,</li> <li>RMG11.bib: bibliography file,</li> <li>GUM_SAGAS.mat: MATLAB function that calculates measurement uncertainty by following the GUM principle,</li> <li>GUMSupp1_SAGAS.mat: MATLAB function that calculates measurement uncertainty by following GUM Supplement 1 principle (Monte Carlo method),</li> <li>InputData.mat: MATLAB function for input data,</li> <li>MainScript.mat: Model developed in MATLAB that calculates estimated gas flow error and the associated measurement uncertainty (GUM and Monte Carlo method). This file that uses MATLAB functions (developed for this example): SetFormattingSymbols,&nbsp; InputData, GUM_SAGAS, GUMSupp1_SAGAS, Results, PlotGUMAndMCM_SAGAS,</li> <li>PlotGUMAndMCM_SAGAS.mat: MATLAB function for plotting the results,</li> <li>Results.mat: MATLAB function for displaying the results,</li> <li>SetFormatingSymbols.mat: MATLAB function for setting formatting symbols.</li> </ul>

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