Scripts for "Assessing the validity of NMR relaxation rates obtained from coarse-grained simulations" (doi:10.18419/darus-3313)

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Part 2: Study Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Scripts for "Assessing the validity of NMR relaxation rates obtained from coarse-grained simulations"

Identification Number:

doi:10.18419/darus-3313

Distributor:

DaRUS

Date of Distribution:

2023-03-13

Version:

1

Bibliographic Citation:

Gravelle, Simon; Beyer, David; Brito, Mariano E.; Schlaich, Alexander; Holm, Christian, 2023, "Scripts for "Assessing the validity of NMR relaxation rates obtained from coarse-grained simulations"", https://doi.org/10.18419/darus-3313, DaRUS, V1

Study Description

Citation

Title:

Scripts for "Assessing the validity of NMR relaxation rates obtained from coarse-grained simulations"

Identification Number:

doi:10.18419/darus-3313

Authoring Entity:

Gravelle, Simon (Universität Stuttgart)

Beyer, David (Universität Stuttgart)

Brito, Mariano E. (Universität Stuttgart)

Schlaich, Alexander (Universität Stuttgart)

Holm, Christian (Universität Stuttgart)

Grant Number:

268449726

Grant Number:

429529433

Grant Number:

327154368 - SFB 1313

Grant Number:

397384169 - FOR2811

Grant Number:

EXC 2075 - 390740016

Distributor:

DaRUS

Access Authority:

Gravelle, Simon

Access Authority:

Huber, Frank

Depositor:

Gravelle, Simon

Date of Deposit:

2022-12-20

Holdings Information:

https://doi.org/10.18419/darus-3313

Study Scope

Keywords:

Chemistry, Physics, Molecular Dynamics Simulation, GROMACS, ESPResSo

Abstract:

Simulations and data analysis scripts for the publication "Assessing the validity of NMR relaxation rates obtained from coarse-grained simulations". The dataset contains two types of simulation scripts: all-atom simulation (GROMACS) and coarse-grained simulations (ESPRESSO). In both cases, the system is a polymer PEG bulk system. See the <a href="https://darus.uni-stuttgart.de/file.xhtml?fileId=180668">README file</a> for details and instructions.

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Title:

Simon Gravelle, David Beyer, Mariano Brito, Alexander Schlaich, Christian Holm: Reconstruction of NMR Relaxation Rates from Coarse-Grained Polymer Simulations, ChemRxiv, 2022. Preprint.

Identification Number:

10.26434/chemrxiv-2022-f90tv-v2

Bibliographic Citation:

Simon Gravelle, David Beyer, Mariano Brito, Alexander Schlaich, Christian Holm: Reconstruction of NMR Relaxation Rates from Coarse-Grained Polymer Simulations, ChemRxiv, 2022. Preprint.

Other Study-Related Materials

Label:

README.md

Text:

Instruction for using this repository

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text/markdown

Other Study-Related Materials

Label:

analysis_NMRforMD.py

Text:

Python script to analysis NMR relaxation time

Notes:

text/x-python

Other Study-Related Materials

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buildall.sh

Text:

Bash script to create GROMACS system

Notes:

application/x-sh

Other Study-Related Materials

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simulation_PEG_H2O_all_atom.sh

Text:

Bash script to execute NMR measurement in GROMACS

Notes:

application/x-sh

Other Study-Related Materials

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tip4peps.itp

Text:

GROMACS force field file

Notes:

application/vnd.shana.informed.formtemplate

Other Study-Related Materials

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viscosity_PEG_H2O_all_atom.sh

Text:

Bash script to execute viscosity measurement in GROMACS

Notes:

application/x-sh

Other Study-Related Materials

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waterPEGmixture.ipynb

Text:

Jupyter notebook to create a PEG mixturre

Notes:

application/x-ipynb+json

Other Study-Related Materials

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atomtypes.atp

Text:

GROMACS force field file

Notes:

application/octet-stream

Other Study-Related Materials

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ffbonded.itp

Text:

GROMACS force field file

Notes:

application/vnd.shana.informed.formtemplate

Other Study-Related Materials

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ffnonbonded.itp

Text:

GROMACS force field file

Notes:

application/vnd.shana.informed.formtemplate

Other Study-Related Materials

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forcefield.itp

Text:

GROMACS force field file

Notes:

application/vnd.shana.informed.formtemplate

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peg.itp

Text:

GROMACS force field file

Notes:

application/vnd.shana.informed.formtemplate

Other Study-Related Materials

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em.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

Other Study-Related Materials

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npt.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

Other Study-Related Materials

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npt1000.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

Other Study-Related Materials

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nvt.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

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run.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

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visco.mdp

Text:

GROMACS input file

Notes:

application/octet-stream

Other Study-Related Materials

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charmm.file

Text:

GROMACS force field file

Notes:

application/octet-stream

Other Study-Related Materials

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endpatch.dat

Text:

GROMACS force field file

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text/x-fixed-field

Other Study-Related Materials

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monomer.dat

Text:

GROMACS force field file

Notes:

text/x-fixed-field

Other Study-Related Materials

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analysis_NMRforMD.py

Text:

Python script for NMR calculation from Espresso trajectory

Notes:

text/x-python

Other Study-Related Materials

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analyze_data_angular_potential.py

Text:

Python script for angular potential analysis

Notes:

text/x-python

Other Study-Related Materials

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input_parameters.txt

Text:

Input parameters for Espresso simulations

Notes:

text/plain

Other Study-Related Materials

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merge_traj_file_angular_potential.sh

Text:

Bash script to merge trajectory

Notes:

application/x-sh

Other Study-Related Materials

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run_with_condor_coarse_grained.sh

Text:

Bash file to run Espresso simulations on condor

Notes:

application/x-sh

Other Study-Related Materials

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simulate_peg_coarse_grained.py

Text:

Python script for Espresso simulations

Notes:

text/x-python

Other Study-Related Materials

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run_with_condor_coarse_grained_viscosity_angular_potential.sh

Text:

Bash file to run Espresso simulations

Notes:

application/x-sh

Other Study-Related Materials

Label:

simulate_peg_coarse_grained_viscosity_measurements_angular_potential.py

Text:

Python script for Espresso calculation of viscosity

Notes:

text/x-python