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Studying the Efficacy of Chemotherapy Drugs By Measuring Isotope Ratios
Discover cellular metabolism applications using Agilent Seahorse XF for preclinical and early drug discovery research — in disease modeling, phenotype assays, target identification and validation, mechanism of action, and lead discovery.
US EPA method 6010 has been validated for the ICP-OES analysis of 31 metal elements in various environmental matrices. Method 6010 specifies quality control criteria for calibration validity, linear dynamic range, and method detection limits. As...
Polycyclic aromatic hydrocarbons (PAHs) are toxic to aquatic life and are suspected human carcinogens. The compounds are widespread environmental contaminants, deriving from sources such as fossil fuels, combustion, and through biological processes....
Measuring Engineered Nanoparticles and Microplastics Using ICP-MS
Ultrahigh vacuum and extreme-high vacuum are at the center of the search to understand the physical universe. Learn the fundamentals of vacuum and understand the vacuum systems needed to drive research.
GC electron capture detection (ECD) and gas chromatography-mass spectrometry (GC/MS)—including triple quadrupole GC/MS (GC/TQ)—are widely applied to targeted analysis of PCBs in soils and solids. GC quadrupole time-of-flight (Q-TOF) technology...
Our solutions for determining crude oil composition and elemental content, including analysis for organic chlorides, metals, polyaromatic hydrocarbons and more than 20 other elements, allow meeting quality specifications, establishing the product...
US EPA methods 200.7 and 200.8 are used for testing of metals and trace elements in water and wastes by ICP-AES and ICP-MS, respectively. In many environmental labs running EPA 200.7, ICP-OES is a well-established technique for the analysis of...
Explore Agilent analytics, cell analysis, and molecular biology solutions for accelerating drug development with predictive in vitro, new approach methodologies (NAM).
Agilent MitoXpress Xtra and pH-Xtra assays are simple mix and measure soluble metabolic sensors (fluorophores) to measure oxygen consumption (respiration rate) and extracellular acidification (glycolytic activity).
Agilent provides analytical instruments, technical support services, and financial and lab management services to support cathode material manufacturing and testing.
The analysis of soil, sediment, and solid waste contaminants and their effects on human health and crops are critically important areas of environmental monitoring. Regulations across the world are becoming increasingly stringent and the list of...
Discover the benefits and applications of vacuum technology in roll-to-roll/web coating. Learn how vacuum enhances coating quality, efficiency, and performance.
Vitamins and minerals are essential substances, needed to ensure our body's normal development and function. Most people can get all the vitamins and minerals they need by eating a healthy and diverse diet. Vitamin and mineral supplements can help...
Agilent solutions for synchrotron vacuum include the range of dry rough pumps, turbo pumps for high vacuum, and high-performance ion pumps and nonevaporative getter pumps for ultrahigh vacuum.
Ranging from 1 to 100 nm in size and finding applications in areas including agriculture, household products, and healthcare, nanoparticles are increasingly detected in environmental matrices. To expand understanding of the effects of nanoparticles...
Learn how Spatially Offset Raman Spectroscopy (SORS) analyzes objects in non-transparent layers or containers. This advanced technology is used for raw material identification, aviation security and detecting narcotics and hazardous materials.
US EPA method 6020A is a performance-based method that specifies quality control (QC) criteria for calibration validity, linear dynamic range (LDR), and method detection limits (MDLs). Prior to ICP-MS analysis, labs are advised to use a sample...