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0:08:02
A Practical Guide to Getting Any Gene Sequences from Type Strain Microbes
0:09:49
But Why Make Phylogenetic Tree for Bacterial 16S rRNA Gene? How do Type Strains Help Build Them?
0:13:48
How to Construct a Phylogenetic Tree in MEGA 11: A Step-by-Step Guide
0:06:08
Elsevier Breaks New Ground by Allowing AI-Written Manuscripts [ChatGPT | Google Bard | Bing AI]
0:24:26
A Step-by-Step Guide to Upload Bacterial 16S rRNA Gene Sequence to GenBank
0:13:17
Should AI be used for Scientific Writing? | ChatGPT | Bing AI | Google Bard |
0:24:27
EP 12 | Post MD simulation assessment of Protein Ligand Complex in Gromacs | RMSD, RMSF, H-bonds, Rg
0:15:24
EP 11 | Post MD Simulation movie for visualization Protein-Ligand complex trajectories | Gromacs
1:17:43
EP 10 | Protein-Ligand MD Simulation in Gromacs-A to Z | all reusable commands and files provided
0:32:24
EP 9 | Compiling Installing GROMACS for Linux system with NVIDIA GPUs (RTX, GTX, etc.)
0:21:14
EP 8 | Setting up Linux for MD Simulation | INSTALLING | Gromacs (Dirty) | VMD | GRACE
0:28:34
How to correctly analyze raw sequence files of bacterial 16s rRNA partial gene sequence
0:24:40
Basics 2 | How to use of ls, cd, mkdir and rm commands in Linux (Ubuntu 22.0 LTS)
0:17:24
Basics 1 | Understand Linux OS for long time Windows user || Ubuntu 22.0 Vs Windows 11
0:26:55
EP 7 | ADME/ ADMET assessment by SwissADME, ProTox-II, admetSAR & SwissTargetPrediction
0:10:26
Epilogue 3 | Different Ways to Import Proteins and Ligands in UCSF Chimera
0:05:53
Epilogue 5 | Identifying Drug Targets For New Small Molecules / Ligands using SwissTargetPrediction
0:10:06
Epilogue 4 | Creating Drug Derivatives and New Drug Models Using Marvin Sketch
0:08:09
Mid-credits 3 | Correctly setting up Alias for UCSF Chimera in Linux
0:08:41
Epilogue 2 | SwissModel versus AlphaFold Protein Model Structure Comparison
0:05:32
Epilogue 1 | Protein Databank (PDB) integrates AlphaFold
0:15:47
EP 6 (Part-2) | Resolving Steric clashes in Engineered protein using UCSF Chimera
0:11:58
EP 6 (Part-1) | Protein Engineering in UCSF Chimera | Manual Protein mutation | Semi-rational design
0:19:37
EP 5 | Superpose / Superimpose identical proteins in UCSF Chimera (for Windows and Linux)
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