LCGC Asia Pacific News Update
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LCGC Asia Pacific
26 November 2015
LCGC TV: Mary J.Wirth on Slip Flow, How to Harness it and the Role of Particle Size
In this video from LCGC TV, Mary J.Wirth of Purdue University explains the phenomenon of slip flow: following the first instalment Mary J.Wirth reveals how to harness slip flow, how an accelerated flow rate influences method development, the role of particle size, and future applications.
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Photo Credit: PASIEKA/Getty Images
Changing from Helium and Nitrogen While Maintaining Separation Efficiency and Analysis Time
Most scientists in the world of gas chromatography (GC) will advise you not to use nitrogen because it is considered a “dinosaur” gas, and instead use helium, which offers shorter analysis time. But, wouldn’t it be very nice if we could make nitrogen work for applications where helium is not an option?
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The LCGC Blog: GC Troubleshooting in 20 Pictures (Part 1)
This month Tony Taylor has taken inspiration from a recent webcast, presented at www.chromacademy.com, in which he presented real data from their work that represents some “classic” GC problems.

Photo Credit: ANDRZEJ WOJCICKI/SCIENCE PHOTO LIBRARY/Getty Images
LC–MS Analysis of Rock Cores
Microbial life is possible within the Earth’s mantle, according to new research published in the journal Proceedings of the National Academy of Sciences High performance liquid chromatography–mass spectrometry (HPLC–MS) analysis of rock cores sampled from the Iberian plate margin (off the coast of Spain and Portugal) revealed the presence of lipid biomarkers indicative of microbial communities present beneath the seafloor more than 100 million years ago.
 
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Upcoming Webcast
The Cannabis Analytical Conundrum: A Discussion of Analytical Requirements and Method Development
Thursday, December 10, 2015
11:00 am—12:00 pm EST
Register >>


On Demand Webcasts
5 Secrets of Detailed Polymer Characterization and Deformulation

Data Integrity in Pharma QC Labs: What You Need to Know

SFC, Separation, and Seals: The Quest for More Efficient Cannabis Testing

Making Ion Mobility Mass Spectrometry Routine