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1 in the atmosphere at mole ratios of 0.3-1.0 ppt, and in the snowpack interstitial air at mole ratios
3 table at Jungfraujoch (mole fractions <0.003 ppt, parts-per-trillion, 10(-12)) but since then the per
5 at very low mole fractions (typically <0.03 ppt) at both stations, and features pronounced seasonali
6 detection on a whole weight basis were 0.05 ppt for TCDD and 0.10 ppt for TCDF, 0.50 ppt for the pen
7 ults demonstrate clean canister blanks (0.06 ppt(v) [0.24 ng/m(3)], which is below the detection limi
10 weight basis were 0.05 ppt for TCDD and 0.10 ppt for TCDF, 0.50 ppt for the pentas (PeCDDs/PeCDFs)/he
13 ns, limits of detection ranging from 1 to 10 ppt can be obtained depending on the Se compound and 30
14 9.8%) over a wide dynamic mass range (1-100 ppt(v)), recovery/accuracy of 93%, a low selected ion mo
18 on monitoring method detection limit of 0.12 ppt(v) (0.48 ng/m(3)), replicate precision of 6.8% RSD,
20 summer-time TFA mixing ratios of about 0.15 ppt (high emission scenario) will surpass previously mea
21 observations of NO2 with the sensitivity (15 ppt/10 s at S/N = 2) and portability necessary to study
23 ith a S/N = 3 limit of detection (LOD) of 18 ppt(v)/min, with planned upgrades to reduce the LOD to 5
24 ranging from freshwater to oligohaline (0-2 ppt) in four rivers near the Chesapeake Bay (Virginia).
25 detected with the functionalized MCs was 1.2 ppt, which is in the range needed by the cosmetics indus
26 e method exhibits a limit of detection of 20 ppt and a limited cross-reactivity with high concentrati
27 ack interstitial air at mole ratios up to 22 ppt under natural sunlit conditions and up to 35 ppt whe
30 A maximum daytime ClO concentration of 28 ppt was observed following an early morning peak of 75 p
32 to assess the effects of salinity (3, 16, 30 ppt) and dissolved organic carbon (DOC, approximately 1.
35 equivalence values for the samples are 0.35 ppt (nondetects = 0) and 0.89 ppt (nondetects = 1/2 LOD)
36 under natural sunlit conditions and up to 35 ppt when the snowpack surface was artificially irradiate
38 ensitivity obtained is around 30% for 10(-4) ppt (0.1 fg/ml) AFB1 which is greater than 1.5 times tha
39 with excellent detection limit of 0.6*10(-4)ppt and satisfied specificity due to the excellent affin
41 gett Forest varied from below 50 ppt to 4000 ppt and NO2 ranged from 5 to 50% of the total reactive n
43 s with a detection limit of 80 pmol L(-1) (5 ppt) and was utilized for direct determination of carbon
44 detection limit as low as 0.5, 0.8, and 1.5 ppt for BZ, ABZ, and DABZ, respectively, can easily be a
47 .05 ppt for TCDD and 0.10 ppt for TCDF, 0.50 ppt for the pentas (PeCDDs/PeCDFs)/hexas (HxCDDs/HxCDFs)
48 NO2 at Blodgett Forest varied from below 50 ppt to 4000 ppt and NO2 ranged from 5 to 50% of the tota
51 screen and FT-IRIS assays were 2.29 and 2.56 ppt, respectively, indicating that the molecular changes
52 ir at a relative humidity (RH) of 40% is 0.6 ppt (1 min average, signal-to-noise ratio =2), with an e
57 r and collection efficiency for detecting 64 ppt of Cu(II) within 5 min of deposition and 4.0 mL min(
60 ielded a detection limit of approximately 80 ppt (parts per trillion) for isoprene with a measurement
64 rication facilities ranged from 10.0 to 9120 ppt(v) TMS and appear to be associated with the use of h
65 r suggests a I(2) mixing ratio range of 6-93 ppt(v) can account for the observed particle production
69 develop an analytical method for determining ppt concentrations of acrolein and other carbonyls in ai
71 (LOD) in water was estimated to be 20 ng/L (ppt, parts-per-trillion) for aminocyclopyrachlor and 1 n
73 or the 17 elements tested, detection limits (ppt) and sensitivities achieved with the DIHEN (at 85 mi
75 solute gas phase detection limits in the low ppt range (in MS/MS mode) were achieved for all compound
76 ds in real time at concentrations in the low ppt range, but cannot differentiate isomers or isobaric
77 nearity and detection limits in the very low ppt level for both total and speciation analyses were fo
79 ls present at ultratrace levels (down to low-ppt to sub-ppt levels) that are lower than the detection
80 ractions ranging from low picomoles per mol (ppt) to nanomoles per mol (ppb), depending on location a
81 for these pesticides down to the hundreds of ppt levels, nearing that which can be achieved with benc
83 (ntl)/brachyury, knypek (kny) and pipetail (ppt)/wnt5] interact to regulate posterior body morphogen
84 at ultratrace levels (down to low-ppt to sub-ppt levels) that are lower than the detection limits obt
85 30.0 degrees C and 29.6 parts per thousand (ppt) compared with 28.9 degrees C and 15.6 ppt for the p
87 salinities from 27 to 43 parts per thousand (ppt), yet its salt acclimation strategy remains enigmati
89 hydrolysis product is 7 parts per trillion (ppt) in solution with a linear range from 10 ppt to 10 p
90 ) of the melamine is 120 parts per trillion (ppt) in water and 100 parts per billion (ppb) in infant
91 d furans were measured at part per trillion (ppt) levels in beef fat collected from slaughter facilit
94 Ir concentration is 3000 parts per trillion (ppt); this peak is flanked by tails with Ir concentratio
97 picogram per milliliter (parts per trillion, ppt) range despite a sensitive and selective analytical
98 nging from low pmol/mol (parts-per-trillion; ppt) to nmol/mol (parts-per-billion; ppb), depending on
99 from 18 parts per trillion volume-to-volume (ppt v) to 80 parts per billion volume-to-volume (ppb v).
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