Mass spectrometry
Novel Technique Improves Analysis of Thermally Unstable Illicit Drugs
Detection of One Pot Methamphetamine Laboratories via Wastewater Sampling
Development and Validation of Two Innovative Quantitative Liquid Chromatography Tandem Mass Spectrometry Methods for Forensic Toxicology Laboratories
Evaluation of Peer Review and Verification Processes and Evaluation of an Enhanced Screening Technique for Toxicological Specimens with High Resolution Accurate Mass Spectrometer
Evaluating the Effectiveness of Liquid Chromatography-Time of Flight-Mass Spectrometry (LC-TOF-MS) as a Replacement Screening Tool in a Full-Service, State Forensic Toxicology Laboratory
NIJ and University of Central Florida Fire Research: Identifying Ignitable Liquids in Fire Debris and Providing Error Rates for Purposes of Testifying
Strengthening the Evaluation and Interpretation of Glass Evidence Using Statistical Analysis of Collection Sets and Databases of Refractive Index and Elemental Data
Phase II Metabolites of Drugs in Hair: A Potential Solution for Environmental Contamination
Combining LC-MS/MS Product-Ion Scan Technology with GC-MS Analysis to Identify Drugs and Poisons in Postmortem Fluidsand Tissues
Research to Develop Validated Methods for THC Quantification in Complex Matrices by High-resolution DART-MSFocus on Edibles and Plant Materials
Extraction and Quantification of Fentanyl and Metabolites from Complex Biological Matrices to Support Medicolegal Death Investigations
Virbrational Spectroscopy for the Analysis of Organic Gunshot Residue: Detection, Identification and Characterization
Identification of Anticoagulant Adulterants in Seized Material and Biological Samples
Validation of a Single Instrument, Single Sample Protocol for the Detection of the Inorganicand Organic Constituents of Firearms Discharge Residue
Use of Gas Chromatography with Tandem Ultra Violet and Mass Spectrometric Detection for the Analysis of Emerging Drugs. Application to Synthetic Cathinones and Fentanyl Analogues
Research and Evaluation for the Testing and Interpretation of Physical Evidence in Publicly Funded Forensic Laboratories
This webinar provided details and guidance for potential applicants to NIJ’s solicitation, “Research and Evaluation for the Testing and Interpretation of Physical Evidence in Publicly Funded Forensic Laboratories.”
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