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Individual syringe precision and accuracy were measured using the hydrocarbon analysis method described.
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To this end, we first built a maximum-likelihood (ML) phylogeny describing the relationships between the nine Timema species used for hydrocarbon analysis.
Figure 3 The precision of eight individual syringes using hydrocarbon analysis.
Surface hydrophobicity was assessed using the bacterial adherence to hydrocarbons (BATH) assay, with xylene (BDH, VWR International, Leicestershire, UK) as the hydrocarbon of choice [ 11].
This was done by GC analysis and the Detailed Hydrocarbon Analysis (DHA) software.
Hydrocarbon content was determined using the "standard method for gravimetric determination of hydrocarbon" (PN-86 C-04573/01).
The hydrocarbon correction factor was developed using the new set of recommended BCF values for 84 hydrocarbons.
A theoretical analysis is conducted using the BACKONE, Span Wagner, and REFPROP equations of state and ten aromatic hydrocarbon and siloxane working fluids previously suggested are reexamined.
The FID is used for the analysis of hydrocarbons.
Cell surface adhesion to hydrocarbon was assessed by using the MATH assay and the sedimentation profile.
The resulting lipids or hydrocarbons were quantified gravimetrically using the AG204 balance (Mettler-Toledo Inc).
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