Difference between revisions of "User:Shawndouglas/sandbox/sublevel6"

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<div class="nonumtoc">__TOC__</div>
==This is demo code demoing math==
{{ombox
| type      = notice
| style    = width: 960px;
| text      = This is sublevel2 of my sandbox, where I play with features and test MediaWiki code. If you wish to leave a comment for me, please see [[User_talk:Shawndouglas|my discussion page]] instead.<p></p>
}}


==Sandbox begins below==
As a typical example, from a [[calibration plot]] following a [[linear equation]] taken here as the simplest possible model:


==AB Sciex Pte. Ltd.==
: <math>f(x) = ax + b </math>
'''Main landing page for cannabis testing''': https://sciex.com/applications/food-and-beverage-testing/cannabis-testing


Commonly known as Sciex, AB Sciex Pte. Ltd. develops "solutions in mass spectrometry paired with capillary electrophoresis and liquid chromatography."<ref name="SciexAbout">{{cite web |url=https://sciex.com/about-us |title=About Us |publisher=AB Sciex Pte. Ltd |accessdate=20 November 2018}}</ref> The company markets some of its solutions for cannabis lab testing, including<ref name="SciexCanna">{{cite web |url=https://sciex.com/applications/food-and-beverage-testing/cannabis-testing |title=Grow Your Cannabis Lab's Potential and Bottom Line with LC-MS/MS Analysis |publisher=AB Sciex Pte. Ltd |accessdate=20 November 2018}}</ref>:
where, <math>f(x)</math> corresponds to the signal measured (e.g. voltage, luminescence, energy, etc.)
 
* potency testing
* mycotoxin testing
* pesticide testing
* terpenes testing
 
===Instruments and methods===
====Triple Quad systems====
Sciex offers four different Triple Quad systems for tandem mass spectrometry paired with liquid chromatography (LC-MS/MS): the 6500+, 5500, 4500, and 3500. The company claims that with these systems "scientists can acquire multiple reaction monitoring (MRM), precursor, neutral loss, and product ion scans to develop powerful methods for complex matrices, all while maintaining reproducibility and robustness."<ref name="SciexTQ">{{cite web |url=https://sciex.com/products/mass-spectrometers/triple-quad-systems |title=Triple Quad LC-MS/MS Systems |publisher=AB Sciex Pte. Ltd |accessdate=21 November 2018}}</ref>
 
* [https://sciex.com/products/mass-spectrometers/triple-quad-systems/triple-quad-6500plus-system 6500+]
* [https://sciex.com/products/mass-spectrometers/triple-quad-systems/triple-quad-5500-system 5500]
* [https://sciex.com/products/mass-spectrometers/triple-quad-systems/triple-quad-4500-system 4500]
* [https://sciex.com/products/mass-spectrometers/triple-quad-systems/triple-quad-3500-system 3500]
 
====QTRAP systems====
Sciex also offers three different Triple Quad Linear Ion Traps (QTRAP) systems for LC-MS/MS: the 6500+, 5500, and 4500. The company states that these are similar to the Triple Quad systems "but with enhanced scan functions to enable simultaneous quantitation and confirmation."<ref name="SciexQTRAP">{{cite web |url=https://sciex.com/products/mass-spectrometers/qtrap-systems |title=QTRAP LC-MS/MS Systems |publisher=AB Sciex Pte. Ltd |accessdate=21 November 2018}}</ref>
 
* [https://sciex.com/products/mass-spectrometers/qtrap-systems/qtrap-6500plus-system QTRAP 6500+]
* [https://sciex.com/products/mass-spectrometers/qtrap-systems/qtrap-5500-system QTRAP 5500]
* [https://sciex.com/products/mass-spectrometers/qtrap-systems/qtrap-4500-system QTRAP 4500]
 
====vMethod for Cannabis====
Sciex also offers a "[https://sciex.com/products/methods/vmethod-application-for-quantitation-of-pesticide-residues-and-cannabinoids-in-cannabis-matrices-10 vMethod]," a quantitation method for pesticide and cannabinoid analysis, that works on many of their LC-MS/MS systems.<ref name="SciexVMethodCann">{{cite web |url=https://sciex.com/products/methods/vmethod-application-for-quantitation-of-pesticide-residues-and-cannabinoids-in-cannabis-matrices-10 |title=vMethod Application for Quantitation of Pesticide Residues and Cannabinoids in Cannabis Matrices 1.0 |publisher=AB Sciex Pte. Ltd |accessdate=21 November 2018}}</ref>
 
==Agilent Technologies, Inc.==
'''Main landing page for cannabis testing''': https://www.agilent.com/en/promotions/cannabis
 
[[Agilent Technologies, Inc.]] is an instrument and software development company for the life sciences, diagnostics, and applied chemical industries. The company offers a variety of chromatography and spectrometry instruments (using a wide array of techniques) and software for the cannabis testing industry, including<ref name="AgilentCanna">{{cite web |url=https://www.agilent.com/en/promotions/cannabis |title=Cannabis Testing Solutions |publisher=Agilent Technologies, Inc |accessdate=21 November 2018}}</ref>:
 
* potency and efficacy testing
* heavy metals testing
* pesticide testing
* residual solvents testing
* terpenes testing
 
===Instruments and methods===
The company suggests instrument and software options based on what type of testing will occur.<ref name="AgilentCanna" />
 
====Potency and efficacy testing====
 
* [https://www.agilent.com/en/products/liquid-chromatography/infinitylab-lc-workflow-solutions/infinitylab-sfc-solutions/1260-infinity-ii-sfc-system 1260 Infinity II SFC System]:  a supercritical fluid chromatography (SFC) system with an ultra-high performance liquid chromatography (UHPLC) power range
* [https://www.agilent.com/en/products/liquid-chromatography/infinitylab-analytical-lc-solutions/1290-infinity-ii-lc-systems/1290-infinity-ii-lc-system 1290 Infinity II LC System]: an UHPLC system
* [https://www.agilent.com/en/products/liquid-chromatography/infinitylab-lc-workflow-solutions/infinitylab-2d-lc-solutions/1290-infinity-ii-2d-lc-system 1290 Infinity II 2D-LC System]: similar to the prior, but with two-dimensional liquid chromatography
* [https://www.agilent.com/en/products/mass-spectrometry/gc-ms-instruments/5977b-gc-msd 5977B GC/MSD]: a single-quadrupole GC/MS system with an electron ionization (EI) source
* [https://www.agilent.com/en/products/ftir/ftir-benchtop-systems/cary-630-ftir-spectrometer Cary 630 FTIR Spectrometer]: portable fourier-transform infrared (FTIR) spectroscopy
 
==References==
{{Reflist|colwidth=30em}}

Latest revision as of 20:31, 18 September 2022

This is demo code demoing math

As a typical example, from a calibration plot following a linear equation taken here as the simplest possible model:

where, corresponds to the signal measured (e.g. voltage, luminescence, energy, etc.)