Advanced NMR Strategies for Pharmaceutical Molecule Characterization and Structure Analysis

Advanced NMR Strategies for Pharmaceutical Molecule Characterization and Structure Analysis

Measurements of Anisotropic RDC Data for Stereochemical Characterization of Molecules. CASE-3D Methodology and DFT Combine for Structure Analysis of AMGEN APIs. StereoFitter - NMR stereochemical analysis.
Advanced NMR Strategies for Pharmaceutical Molecule Characterization and Structure Analysis
From Manufacturing to Recycling: Benefits and Use Cases of XRF along the Battery Values Chain

From Manufacturing to Recycling: Benefits and Use Cases of XRF along the Battery Values Chain

How to operate our spectrometers and provide valuable tips and tricks.
From Manufacturing to Recycling: Benefits and Use Cases of XRF along the Battery Values Chain
Determination of Arsenic Species in Accordance with US FDA EAM 4.10 and 4.11 by HPLC-ICP-MS Methods

Determination of Arsenic Species in Accordance with US FDA EAM 4.10 and 4.11 by HPLC-ICP-MS Methods

This webinar will discuss the most recent developments in arsenic speciation methodology, with a focus on robust, validated methods for determination of arsenic species in food safety applications.
Determination of Arsenic Species in Accordance with US FDA EAM 4.10 and 4.11 by HPLC-ICP-MS Methods
From Lab to Market: Accelerating Next Generation Battery Development with Plasma FIB-SEM and TOF-SIMS Workflows

From Lab to Market: Accelerating Next Generation Battery Development with Plasma FIB-SEM and TOF-SIMS Workflows

The role of a Scanning Electron Microscope equipped with a Focused Ion Beam (FIB-SEM) uniquely combined with a compact Time-of-Flight Secondary Ion Mass Spectrometer (ToF-SIMS).
From Lab to Market: Accelerating Next Generation Battery Development with Plasma FIB-SEM and TOF-SIMS Workflows
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
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
From Deep Space to Deep Learning. State of the Art Imaging of Extraterrestrial Samples

From Deep Space to Deep Learning. State of the Art Imaging of Extraterrestrial Samples

Learn about some of the newest analytical techniques that help us to understand the formation of the universe, and how to best study return mission samples.
From Deep Space to Deep Learning. State of the Art Imaging of Extraterrestrial Samples
LNP formulation just got sunnier with the Sunny Suite

LNP formulation just got sunnier with the Sunny Suite

Watch our webinar to see first-hand data results demonstrating the power and flexibility of our Sunny Suite platforms for high-throughput formulation screening.
LNP formulation just got sunnier with the Sunny Suite
Success in ICP-MS analysis: Method optimization, maintenance, and troubleshooting tips and tricks

Success in ICP-MS analysis: Method optimization, maintenance, and troubleshooting tips and tricks

Tips and tricks for method development and daily operation (tuning, performance, inspection routines, method optimization, data analysis and troubleshooting, maintenance)
Success in ICP-MS analysis: Method optimization, maintenance, and troubleshooting tips and tricks