![Carnegie Institution of Washington publication. ABSORBING POWER AND FLUORESCENCE OF RESORUFIN. 37 too "corrected" curve, C, has for ordinates the value of / computed from the formula (page 34) and shows Carnegie Institution of Washington publication. ABSORBING POWER AND FLUORESCENCE OF RESORUFIN. 37 too "corrected" curve, C, has for ordinates the value of / computed from the formula (page 34) and shows](https://c8.alamy.com/comp/RFT6NB/carnegie-institution-of-washington-publication-absorbing-power-and-fluorescence-of-resorufin-37-too-quotcorrectedquot-curve-c-has-for-ordinates-the-value-of-computed-from-the-formula-page-34-and-shows-the-relative-intensity-of-actual-fluorescence-in-different-concentrations-the-following-method-of-obtaining-the-corrected-fluorescence-curves-was-used-as-a-check-upon-the-first-the-final-results-being-obtained-by-a-graphical-rather-than-a-mathematical-procedure-the-apparatus-was-set-up-as-before-except-that-the-light-exciting-fluo-rescence-instead-of-striking-the-whole-face-of-RFT6NB.jpg)
Carnegie Institution of Washington publication. ABSORBING POWER AND FLUORESCENCE OF RESORUFIN. 37 too "corrected" curve, C, has for ordinates the value of / computed from the formula (page 34) and shows
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SOLVED: The emission intensity of a sample is linearly proportional to concentration at low analyte concentration. The linear dependence and sensitivity make atomic emission and molecular fluorescence useful for quantitating emitting chemical
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