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In order to develop an easy and reliable assay for the quantitative and qualitative determination of catecholamines in plants, the suitability of gas chromatography coupled to a quadruple mass spectrometer (GCMS) was recently investigated.
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Determining groundwater discharge to streams using dissolved gases is known to be useful over a wide range of streamflow rates but the suitability of dissolved gas methods to determine discharge rates in high gradient mountain streams has not been sufficiently tested, even though headwater streams are critical as ecological habitats and water resources.
This article discusses results valuable for determining the potential suitability of pyrolysis gases for use in power-engineering facilities, including combustion engines, and includes information on further research prospects.
The aim of this study is to test the suitability of using dissolved gases to determine groundwater discharge rates to high gradient streams by field experiments in a well-characterized, high gradient mountain stream and a literature review.
This article investigates the suitability of coconut shell-derived producer gas (a secondary gaseous biofuel) as a substitute for coal gas from an environmental perspective using life cycle assessment (LCA) approach.
The model predictions were used to evaluate suitability of the proposed design for gas turbine and other applications in terms of different indicators of thermal performance.
Results are presented that demonstrate the suitability and consistency of the method for a range of gas mixing levels.
Ove Gudmestad, professor of marine and Arctic technology at the University of Stavanger in Norway, also raises a host of potential difficulties, notably the suitability of existing oilfield equipment, oil and gas price uncertainty and troubled relations with local people in the Arctic.
Results demonstrated the potential and suitability of numerical optimization to solve the gas detector placement problem while rigorously considering its inherent uncertainties.
Integrated characterization study was carried on DLC deposited by electron cyclotron resonance (ECR) plasma on p-type Si (111) substrate using methane as precursor and argon as carrier gas to understand suitability of each technique in providing information about quality of DLC.
Simulations conducted for a heptane nitrogen mixture flow with strong real gas effects display excellent, nonreflective wave behavior as the vortex leaves the computational domain, verifying the suitability of this method for the multidimensional multicomponent real gas flows computed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com