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001 | 9.877874 |
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003 | CaOODSP |
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005 | 20221107165104 |
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006 | m go d f |
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007 | cr |n||||||||| |
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008 | 190813s1991 oncd #otb f000 0 eng d |
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040 | |aCaOODSP|beng|erda|cCaOODSP |
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041 | |aeng|bfre |
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043 | |an-cn--- |
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086 | 1 |aEn13-5/91-125E-PDF |
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100 | 1 |aCheam, V., |eauthor. |
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245 | 12|aA novel, simple method for tuning dye lasers / |cV. Cheam [and three others]. |
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264 | 1|aBurlington, Ontario : |bNational Water Research Institute = Institut national de recherche sur les eaux, |c[1991] |
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300 | |a1 online resource (11 pages) : |bfigures. |
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336 | |atext|btxt|2rdacontent |
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337 | |acomputer|bc|2rdamedia |
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338 | |aonline resource|bcr|2rdacarrier |
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490 | 1 |aNWRI contribution ; |v91-125 |
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500 | |aDigitized edition from print [produced by Environment and Climate Change Canada]. |
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504 | |aIncludes bibliographical references (page 5). |
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520 | |a"A novel, simple and cost-effective method has been developed for tuning dye lasers used in Laser-Excited Atomic Fluorescence Spectrometry. The method uses two common laboratory items -- a pierced mirror and a commercial Electrodeless Discharge Lamp (EDL). In contrast to the existing procedure using flame, there are no nebulizer-burner, hood, gas tanks, nor burner control unit involved. The EDLA lamp method also facilitates the simultaneous monitoring of reference and analyte peaks. It allows the monitoring of laser stability during experiments. A practical minimum pulse energy required for tuning and LEAFS studies was found to be 200nJ"--Abstract. |
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546 | |aIncludes abstract in French. |
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692 | 07|2gccst|aExperiments |
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692 | 07|2gccst|aScientific equipment |
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692 | 07|2gccst|aLaboratories |
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710 | 1 |aCanada. |bEnvironment Canada. |
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710 | 2 |aNational Water Research Institute (Canada) |
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830 | #0|aNWRI contribution ;|v91-125. |w(CaOODSP)9.844121 |
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856 | 40|qPDF|s1.26 MB|uhttps://publications.gc.ca/collections/collection_2019/eccc/en13-5/En13-5-91-125-eng.pdf |
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