@MoleculesGoHard@celulacecedista I guarantee, it is not the same. The nuclear spin (and also for the electron’s) doesn’t differentiate from its neighbors, as it is distribution function (thermal or DNP…).
🎉🎉🎉 Today, we have a huge announcement to make: SAMSON is now free for non-commercial use! This includes all extensions for docking, simulating, animating, scripting, and much, much more.
Precisely, we are making the entire SAMSON molecular design platform - SAMSON + every SAMSON Extension on SAMSON Connect - free for non-commercial use.
This means you can now use SAMSON at no cost in academic and nonprofit settings for:
- Education (teachers, students, classrooms)
- Academic & publicly funded research
- Personal projects (no revenue, no paid consulting)
If this is your case, you can activate your free non-commercial license yourself when you sign up at https://t.co/c5qr0P6BZa.
This will grant you a free Expert plan and make all SAMSON Extensions free to add on SAMSON Connect. (as you may know, most features run locally, but some optional calculations run in the cloud, such as structure prediction and cloud simulations - these require computing credits).
When your work involves paid services, consulting, product development, or commercial R&D, just visit the Pricing page and select one of the commercial plans. You can later revert to non-commercial use.
If you are unsure whether you are eligible to a free non-commercial license, please just contact us and we'll work it out with you.
Of course, feel free to share the news with your friends, students, and colleagues (and everyone else 😊).
#SAMSON #Community
What a cool NMR spectrum!
In addition to the negative chemical shift, note how the stereochemical arrangement of H and P strongly influences the coupling constants.
Journal of Magnetic Resonance Open (open) Understanding magnetic fields, for NMR/MRI, Mark S. Conradi*, ABQMR Inc. https://t.co/P43nzpNoJ0 https://t.co/UXzajOEjfB #NMRchat#NMR 🧲
Forever chemicals are more acidic than we thought, study finds, new research from a University at Buffalo-led team @UBuffalo has found that some PFAS are even more acidic than previously thought https://t.co/7vWjIAKq1W #NMRchat#NMRnews#NMR 🧲