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Title: MedeA 3.12.0 + license [Print This Page]

Author: taiyue030    Time: yesterday 22:40
Title: MedeA 3.12.0 + license
Last edited by taiyue030 In 4/23/2026 22:42 Editor

MedeA 3.12.0 软件许可授权是材料原子模拟领域的领先环境。MedeA 支持专业的原子尺度和纳米级计算的日常部署,用于材料工程、材料优化和材料发现。在 MedeA 中,世界级的仿真引擎集成了复杂的属性预测模块、实验数据库、结构构建器和分析工具,全部集成在一个用户友好的环境中。
标准的 MedeA 环境包括以下模块:计算引擎及相关图形界面
MedeA VASP,MedeA VASP GUI – 维也纳从始模拟包,图形用户界面
MedeA LAMMPS,MedeA LAMMPS GUI – 大规模原子/分子大规模并行模拟器,图形用户界面
MedeA GIBBS,MedeA GIBBS GUI – 用于流体属性预测与吸附的蒙特卡洛大标准方法,图形用户界面
MedeA MOPAC,MedeA MOPAC GUI – 半经验量子化学方法用于快速性质预测与筛选,图形用户界面
MedeA Gaussian 图形界面 – 基于流程图的图形界面 GAUSSIAN,一款通用计算化学软件包
MedeA 提供若干可选属性模块用于属性预测和自动化
属性模块 与 VASP 的属性模块:
MedeA MT – 机械、热性能
MedeA 声子 – 振动性质与热力学函数
MedeA 电子学 – 三维电子分析、Seebeck系数、电子电导率、有效质量
MedeA 过渡态搜索 – 反应路径与过渡态
MedeA UNCLE – 单向晶体扩展 用于合金化、缺陷和构型无序
MedeA FFO – 力场优化器,包含与 LAMMPS 合作的 B3LYP 混合
属性模块:
MedeA 声子 – 振动性质与热力学函数
MedeA MT – 机械、热性能
MedeA UNCLE – 统一 CLuster 用于合金、缺陷、构型无序的膨胀
MedeA 扩散 – 扩散系数自动计算
MedeA 热导率 – 热导率系数自动计算
MedeA 粘度 – 自动计算粘度
MedeA 表面张力 – 自动计算表面张力
MedeA 内聚能密度(CED)– 自动计算内聚能密度
MedeA FFO – 力场优化器
MedeA 沉积 – 原子/粒子在材料表面
的自动沉积 基于相关性的性质模块:
MedeA P3C – 结合Bicerano方法
的聚合物性质 MedeA QT – 统计相关
性互动工具包 构建器:
MedeA 非晶材料构建器 – 非晶结构、聚合物、热固性
MedeA 对接 – 吸附系统
MedeA 界面构建器 – 异质晶界面和晶界) 作为附加组件提供。
MedeA 形态学 – 晶体形态
数据库
MedeA COD GUI – 晶体学开放数据库
MedeA ICSD – 无机晶体结构数据库
MedeA Pearsons – Pearsons 数据库
MedeA Pauling – The Pauling 数据库
MedeA NCD – NIST晶体数据库
MPDS – 数据科学材料平台(基于网络)
材料设计
msipd
NCD_Inorganic
NCD_Organic  


MedeA 3.12.0更新
开发者与编辑发动机力场属性模分析JobServer & TaskServer
下载授权联系 3766906032@qq.co

Author: taiyue030    Time: yesterday 22:43
下载授权联系 3766906032@qq.co


Download MedeA 3.12.0 software license crack package is the leading environment for the atomistic simulation of materials. MedeA enables professional, day-to-day deployment of atomic-scale and nano-scale computations for materials engineering, materials optimization and materials discovery. In MedeA, world-class simulation engines are integrated with elaborate property prediction modules, experimental databases, structure builders and analysis tools, all in one user-friendly environment.
The standard MedeA Environment includes the following modules:
Builders: Solids, surfaces, point defects, random substitution, polymer, molecules, layers
Databases: COD (Crystallography Open Database)
Job Control: Jobserver/Taskserver (web-based job control and job monitoring)
Compute engines: LAMMPS code
GUIs: LAMMPS GUI, graphical workflow editor
Analysis: Geometry, symmetry, void, point defects, trajectory, volumetric


Compute Engines and related GUIs
MedeA VASP, MedeA VASP GUI – Vienna Ab Initio Simulation Package, Graphical User Interface
MedeA LAMMPS, MedeA LAMMPS GUI – Large-scale Atomic/Molecular Massively Parallel Simulator, Graphical User Interface
MedeA GIBBS, MedeA GIBBS GUI – Grand Canonical Monte Carlo method for fluid properties prediction and fluid adsorption, Graphical User Interface
MedeA MOPAC, MedeA MOPAC GUI – Semi-empirical Quantum Chemistry method for fast property prediction and screening, Graphical User Interface
MedeA Gaussian GUI – Flowchart based GUI for GAUSSIAN, a general purpose computational chemistry software package
MedeA offers several optional Property Modules for property prediction and automation
Property Modules working with VASP:
MedeA MT – Mechanical, thermal properties
MedeA Phonon – Vibrational properties and thermodynamic functions
MedeA Electronics – 3D electronic analysis, Seebeck coefficients, electronic conductivity, effective masses
MedeA Transition State Search – Reaction pathways and transition states
MedeA UNCLE – UNiversal CLuster Expansion for alloying, defects, configurational disorder
MedeA FFO – Forcefield Optimizer and include B3LYP hybrid
Property Modules working with LAMMPS:
MedeA Phonon – Vibrational properties and thermodynamic functions
MedeA MT – Mechanical, thermal properties
MedeA UNCLE – UNiversal CLuster Expansion for alloying, defects, configurational disorder
MedeA Diffusion – Automated calculation of diffusion coefficients
MedeA Thermal Conductivity – Automated calculation of thermal conductivity coefficient
MedeA Viscosity – Automated calculation of viscosity
MedeA Surface Tension – Automated calculation of surface tension
MedeA Cohesive Energy Density (CED) – Automated calculation of cohesive energy density
MedeA FFO – Forcefield Optimizer
MedeA Deposition – Automated deposition of atoms/particles on materials surfaces
Property Modules base on Correlations:
MedeA P3C – Polymer properties from Correlations, employing the Bicerano method
MedeA QT – An interactive Toolkit for statistical correlations
Builders:
MedeA Amorphous Materials Builder – Amorphous structures, Polymers, Thermosets
MedeA Docking – Adsorbate systems
MedeA Interface Builder – Heterogeneous crystalline interfaces and grain boundaries) are available as add-ons.
MedeA Morphology – Crystal morphologies
Databases
MedeA COD GUI – Crystallography Open Database
MedeA ICSD – Inorganic Crystal Structure Database
MedeA Pearsons – The Pearsons database
MedeA Pauling – The Pauling database
MedeA NCD – The NIST Crystal Database
MPDS – Materials Platform for Data Science (web-based)
Materials Design
msipd
NCD_Inorganic
NCD_Organic












Download MedeA 3.12.0 software license crack package is the leading environment for the atomistic simulation of materials. MedeA enables professional, day-to-day deployment of atomic-scale and nano-scale computations for materials engineering, materials optimization and materials discovery. In MedeA, world-class simulation engines are integrated with elaborate property prediction modules, experimental databases, structure builders and analysis tools, all in one user-friendly environment.
The standard MedeA Environment includes the following modules:
Builders: Solids, surfaces, point defects, random substitution, polymer, molecules, layers
Databases: COD (Crystallography Open Database)
Job Control: Jobserver/Taskserver (web-based job control and job monitoring)
Compute engines: LAMMPS code
GUIs: LAMMPS GUI, graphical workflow editor
Analysis: Geometry, symmetry, void, point defects, trajectory, volumetric


Compute Engines and related GUIs
MedeA VASP, MedeA VASP GUI – Vienna Ab Initio Simulation Package, Graphical User Interface
MedeA LAMMPS, MedeA LAMMPS GUI – Large-scale Atomic/Molecular Massively Parallel Simulator, Graphical User Interface
MedeA GIBBS, MedeA GIBBS GUI – Grand Canonical Monte Carlo method for fluid properties prediction and fluid adsorption, Graphical User Interface
MedeA MOPAC, MedeA MOPAC GUI – Semi-empirical Quantum Chemistry method for fast property prediction and screening, Graphical User Interface
MedeA Gaussian GUI – Flowchart based GUI for GAUSSIAN, a general purpose computational chemistry software package
MedeA offers several optional Property Modules for property prediction and automation
Property Modules working with VASP:
MedeA MT – Mechanical, thermal properties
MedeA Phonon – Vibrational properties and thermodynamic functions
MedeA Electronics – 3D electronic analysis, Seebeck coefficients, electronic conductivity, effective masses
MedeA Transition State Search – Reaction pathways and transition states
MedeA UNCLE – UNiversal CLuster Expansion for alloying, defects, configurational disorder
MedeA FFO – Forcefield Optimizer and include B3LYP hybrid
Property Modules working with LAMMPS:
MedeA Phonon – Vibrational properties and thermodynamic functions
MedeA MT – Mechanical, thermal properties
MedeA UNCLE – UNiversal CLuster Expansion for alloying, defects, configurational disorder
MedeA Diffusion – Automated calculation of diffusion coefficients
MedeA Thermal Conductivity – Automated calculation of thermal conductivity coefficient
MedeA Viscosity – Automated calculation of viscosity
MedeA Surface Tension – Automated calculation of surface tension
MedeA Cohesive Energy Density (CED) – Automated calculation of cohesive energy density
MedeA FFO – Forcefield Optimizer
MedeA Deposition – Automated deposition of atoms/particles on materials surfaces
Property Modules base on Correlations:
MedeA P3C – Polymer properties from Correlations, employing the Bicerano method
MedeA QT – An interactive Toolkit for statistical correlations
Builders:
MedeA Amorphous Materials Builder – Amorphous structures, Polymers, Thermosets
MedeA Docking – Adsorbate systems
MedeA Interface Builder – Heterogeneous crystalline interfaces and grain boundaries) are available as add-ons.
MedeA Morphology – Crystal morphologies
Databases
MedeA COD GUI – Crystallography Open Database
MedeA ICSD – Inorganic Crystal Structure Database
MedeA Pearsons – The Pearsons database
MedeA Pauling – The Pauling database
MedeA NCD – The NIST Crystal Database
MPDS – Materials Platform for Data Science (web-based)
Materials Design
msipd
NCD_Inorganic
NCD_Organic




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