Bradley Jones - Profile and Journalist Details
Find journalists that align with your industry, location and vision. Unlock Bradley Jones's full journalist profile, including location, coverage topics, current employer, biography and preferences. Sign up today and start building journalist relationships that fuel your startup's growth.
Get connected with journalists todayBradley Jones
Verified
Journalist, CKCV (Creston, BC)
Canada
Beats
Content
Multi-laser-power calibration for quantitative determination of N and P in fertilizers by Raman spectroscopy
By Edilene Cristina Ferreira, George Donati, Bradley Jones| Royal Society of Chemistry Verified Multi-laser-power calibration for quantitative determination of N and P in fertilizers by Raman spectroscopy A new method called multi-laser-power calibration (MLPC) is described for quantitative analysis by Raman spectroscopy. MLPC is based on the premise that, under controlled operating conditions, the intensity of Raman spectroscopy signals for a given analyte is directly proportional to the laser applied power used to generate that signal.
The loss of the PDIM/PGL virulence lipids causes differential secretion of ESX-1 substrates in Mycobacterium marinum
By Bradley Jones, Daniel Hu, Kathleen Nicholson, Rachel Cronin| bioRxiv@ AbstractThe mycobacterial cell envelope is a major virulence determinant in pathogenic mycobacteria. Specific outer lipids play roles in pathogenesis, modulating the immune system and promoting the secretion of virulence factors. ESX-1 (ESAT-6 system-1) is a conserved protein secretion system required for mycobacterial pathogenesis (1, 2). Previous studies revealed that mycobacterial strains lacking the outer lipid PDIM have impaired ESX-1 function during laboratory growth and infection (3-5).
Multi-laser-power calibration for quantitative determination of N and P in fertilizers by Raman spectroscopy
By Edilene Cristina Ferreira, George Donati, Bradley Jones| Royal Society of Chemistry Verified Multi-laser-power calibration for quantitative determination of N and P in fertilizers by Raman spectroscopy A new method called multi-laser-power calibration (MLPC) is described for quantitative analysis by Raman spectroscopy. MLPC is based on the premise that, under controlled operating conditions, the intensity of Raman spectroscopy signals for a given analyte is directly proportional to the laser applied power used to generate that signal.
Company Info
CKCV (Creston, BC)