The most beloved cannabinoid of all.



The most beloved cannabinoid of all.
Due to conflicts on the state and federal level regarding the legality of cannabis, there is a grey area around the possession of these substances.
CBD is everywhere, but what exactly is cannabidiol?
Broadly defined, countercurrent chromatography is the process a mixture is separated by passing in a solution or a suspension or as a gas through a medium with components are moving at different rates.
Data consolidation by Confident Cannabis provides insights into the chemical analysis of particular strains from all around the nation.
The national conversation about cannabis has included strain types, cannabinoids, and terpenes, but little public discourse occurred regarding cannabis flavonoids.
Cree Crawford, President of Ionization Labs, discusses the importance for quality assurance throughout the cannabis supply chain using Cann-ID.
Colorimetric sensor arrays for analyte detection show promising applications for both cannabis and hemp markets.
The driving need for accurate and trustworthy cannabis testing has lead to some intriguing developments in the cannabis labs.
Varied requirements across the nation creates cannabis testing concerns, confusion and contaminated products.
Learn the basics of gas and liquid chromatography and FTIR Spectroscopy for testing terpenes and potency within a strain.
Learn how headspace analysis gas chromatography used for testing terpenes and cannabinoids in cannabis and get a look at a new model.
Not only will large marijuana businesses be required to provide more data, the small, artisanal growers will need to as well. Portable analyzers can bridge the gap.
Matt Sampson describes Cannabis Profiling, how the market trend is shifting towards refinement and more nuanced cannabinoid and terpene profiles.
In this interview, Matt Sampson describes how the market trend is shifting towards refinement and more nuanced cannabinoid and terpene blends when profiling cannabis.
Chromatography plays a major role in quality cannabis testing and analytics.
The need for something like the breathalyzer prompted Stanford University engineers to develop a portable device that can precisely detect the THC content from a saliva sample.