When purchasing, consider what detection range you will require for your sample type and look for instruments that are sensitive, accurate, and consistent
Automated sample preparation systems have numerous benefits, such as increasing lab throughput, lessening the margin for error, and minimizing risk of staff developing repetitive strain injuries
When purchasing technology for PCR and qPCR, consider the accuracy of the temperature and fluorescence measurements, and the robustness of the instrument as it will be running for long periods of time
Effective lab monitoring can help improve the reliability and performance of the lab and ensures that lab staff are notified of out-of-specification situations promptly
Optical microscopes offer ease of use but have limited resolving power. SEMs use a beam of focused high-energy electrons to produce information about the specimen including morphology, chemical composition, and crystalline structure
Because microplate handlers can increase user walk-away time, as well as throughput and efficiency, they are often used in biomarker research, cell biology, and assay development
There are many different configurations of mass spectrometers available depending on the sample type being analyzed and the resolution and speed of analysis required
Before purchasing LC systems, it’s important to consider your application as specific components, including columns and detectors, that are better suited for certain sample types