Diamondback takes conventional solid CAD models and turns them into atomistic assemblies. Plan nano-scale robotic systems without rendering 100s of millions of atoms!
@campedersen Thanks! I'd like to make a 6-axis robotic arm at the nano-scale. I have some tutorials on modeling and simulating these here: https://t.co/DthQehIx2s
Racks for the 32-tooth gear. There is a bushing on the other side as well, but it is a little too large. Making it smaller would be an excellent intro project for someone. https://t.co/Hba6jgBgLe
Self-assembling DNA tile originally designed by Dr. Chengde Mao modeled in #SAMSON with the Adenita extension. I want to make a tutorial on this next week.
https://t.co/HEVsvoRQXd Atomically precise, positionally-controlled, zero-bias #mechanosynthesis. High reliability. Including the demonstration of C-C bond formation in the form of short polyyne chains in surface configurations never before reported in the literature.
A fully atomistic molecular dynamics simulation of dual oblique Al nanoparticle high-velocity impact onto a frozen FCC aluminum substrate using LAMMPS.
GitHub Repo: https://t.co/cILnVc1neP
@bioinfojoe I don't see why not. Maybeyou'd have to have Adenita convert to the atomistic form of DNA and then use the GROMACS wizard with tip5p.gro and .itp to solvate.
DAO crossover. Same as the double anti-parallel even (DAE) but now with an odd number of half-turns between crossovers. Got 10 crossovers to get though and then we'll put them together for more complex stuff. https://t.co/4LJtiX3I09