AN22 Using MOS-500 for Magnetic Circular Dichroism. Spectroscopy/Circular dichroism
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Using MOS-500 for Magnetic Circular Dichroism – MOS-500 – Spectroscopy – Application Note 22
Exciton coupled circular dichroism using MOS-500 – MOS-500 – Spectroscopy – Application Note 24
AN24. Exciton coupled circular dichroism using MOS-500. Spectroscopy/Circular Dichroism
Changing the way to do Circular Dichroism – MOS-500 – Spectroscopy – Application Note 26
AN 26. Changing the way to do Circular Dichroism - MOS-500 Spectroscopy
ORD accessory – MOS-500 – Spectroscopy – Application Note 11
AN11. ORD accessory - MOS-500. Spectroscopy
DR-CD accessory for the determination of enantiomeric ratio – MOS-500 – Spectroscopy – Application Note 23
AN23. DR-CD accessory for the determination of enantiomeric ratio. Spectroscopy/Circular Dichroism
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Learning center.
What are stopped-flows and how do they help chemists and biochemists understand high-speed chemical reactions?
A global overview detailing the purpose, functionality and design of stopped flows - important instruments used in rapid kinetics experimentation
A new approach to circular dichroism
As a result of a cutting-edge design, the MOS-500 delivers the highest levels of precision for any instrument on the market, but also reduces running costs significantly because nitrogen is rarely needed during experiments
Why waste money on nitrogen for Circular Dichroism?
Why the use of nitrogen for optic flushing is not always necessary for Circular dichroism measurements. So, when & why is it necessary?
Diffuse reflectance CD using an integration sphere
Circular Dichroism is one technique to determine enantiomeric purity and it can be applied directly on solid samples.