Quantitative Excellence in Pharma & Biopharma

Quantitative Excellence in Pharma & Biopharma

Discover the ground-breaking technology that promises a whole new level of chromatographic performance in low-flow applications, making you rethink what's possible.
Quantitative Excellence in Pharma & Biopharma
Leveraging innovative stationary phase architectures and multi-detection strategies in biopharma and proteomics research to enhance precision, efficiency, and results

Leveraging innovative stationary phase architectures and multi-detection strategies in biopharma and proteomics research to enhance precision, efficiency, and results

The 1st key-note presentation will explore the pursuit of enhanced chromatographic performance in low-flow applications. The second part will take us to detection technologies.
Leveraging innovative stationary phase architectures and multi-detection strategies in biopharma and proteomics research to enhance precision, efficiency, and results
Expanding PFAS Analysis Beyond Environmental Matrices

Expanding PFAS Analysis Beyond Environmental Matrices

Explore the lessons learned from environmental applications and how these insights can be transitioned to these other arenas.
Expanding PFAS Analysis Beyond Environmental Matrices
AI-powered X-ray Microscope Reconstruction Technologies for Gamechanging Capabilities in Battery and Fuel Cell Research

AI-powered X-ray Microscope Reconstruction Technologies for Gamechanging Capabilities in Battery and Fuel Cell Research

You will learn how 3D X-ray microscopy coupled with AI-based reconstruction technologies can help to overcome these challenges in imaging and simulation of battery and fuel cell processes
AI-powered X-ray Microscope Reconstruction Technologies for Gamechanging Capabilities in Battery and Fuel Cell Research
Simplifying digital transformation with the Thermo Scientific Ardia Platform

Simplifying digital transformation with the Thermo Scientific Ardia Platform

Thermo Scientific Ardia Platform, a game-changing solution for scientists seeking to unlock the full potential of their data.
Simplifying digital transformation with the Thermo Scientific Ardia Platform
Pushing the boundaries of depth-of-coverage for nanoflow proteomics using Zeno SWATH DIA and IonOpticks Aurora SX series columns

Pushing the boundaries of depth-of-coverage for nanoflow proteomics using Zeno SWATH DIA and IonOpticks Aurora SX series columns

In this webinar, we will walk you through the use of Zeno SWATH DIA on the ZenoTOF 7600 system for high-performance proteomics analysis.
Pushing the boundaries of depth-of-coverage for nanoflow proteomics using Zeno SWATH DIA and IonOpticks Aurora SX series columns
Get the Most Out of Your Flame Atomic Absorption Analysis

Get the Most Out of Your Flame Atomic Absorption Analysis

Get the Most Out of Your Flame Atomic Absorption Analysis.
Get the Most Out of Your Flame Atomic Absorption Analysis
Identification of Raw Materials in Lithium Ion Batteries Using the Cary 630 FTIR

Identification of Raw Materials in Lithium Ion Batteries Using the Cary 630 FTIR

The use of the Agilent Cary 630 FTIR spectrometer with attenuated total reflectance (ATR) sampling technology for the fast and reliable material identification of LIB electrolyte salts.
Identification of Raw Materials in Lithium Ion Batteries Using the Cary 630 FTIR
How to reduce your sample loss to significantly improve your results

How to reduce your sample loss to significantly improve your results

We will examine how small changes to your vials & closures can lead to a big impact to your recovery rates and reproducibility in your workflow.
How to reduce your sample loss to significantly improve your results
Helium Conservation in Purge & Trap Analysis

Helium Conservation in Purge & Trap Analysis

What Purge & Trap is and how it works. Alternative purge gases that can be used during the Purge & Trap process. Purge gas comparisons. Comparisons of different purge parameters.
Helium Conservation in Purge & Trap Analysis