II.
LibraryProcess JSON
Structured · livelib-process:nanotechnology--multi-modal-characterization
multi-modal-characterization json
Inspect the normalized record payload exactly as the atlas UI reads it.
{
"id": "lib-process:nanotechnology--multi-modal-characterization",
"_kind": "LibraryProcess",
"_file": "generated-library/processes.yaml",
"_cluster": "generated-library",
"attributes": {
"displayName": "multi-modal-characterization",
"description": "Multi-Modal Nanomaterial Characterization Pipeline - Execute comprehensive characterization workflows\ncombining electron microscopy (TEM/SEM), spectroscopy (XPS, Raman, UV-Vis), particle sizing (DLS),\nand thermal analysis with automated data collection, cross-validation between methods, and quality gates\nfor measurement uncertainty.",
"libraryPath": "library/specializations/domains/science/nanotechnology/multi-modal-characterization.js",
"specialization": "nanotechnology",
"references": [
"- Electron Microscopy of Nanomaterials: https://www.sciencedirect.com/topics/materials-science/transmission-electron-microscopy\n- Scanning Probe Microscopy for Nanoscience: https://www.nature.com/articles/nnano.2007.300\n- X-ray Techniques for Nanomaterial Characterization: https://www.sciencedirect.com/topics/engineering/x-ray-diffraction-analysis"
],
"example": "const result = await orchestrate('specializations/domains/science/nanotechnology/multi-modal-characterization', {\n nanomaterial: { type: 'gold-nanoparticles', expectedSize: 15, units: 'nm' },\n characterizationGoals: ['size-distribution', 'surface-chemistry', 'optical-properties'],\n samplePreparation: { dispersionMedium: 'water', concentration: '1mg/mL' }\n});",
"usesAgents": [
"characterization-scientist",
"sample-preparation-specialist",
"electron-microscopist",
"spectroscopist",
"particle-sizing-expert",
"thermal-analyst",
"surface-scientist",
"data-validation-scientist",
"metrologist",
"technical-writer"
]
},
"outgoingEdges": [
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "skill-area:mathematical-reasoning",
"kind": "lib_requires_skill_area",
"attributes": {
"weight": 1
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "skill-area:physics-simulation",
"kind": "lib_requires_skill_area",
"attributes": {
"weight": 0.7
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "skill-area:data-analysis",
"kind": "lib_requires_skill_area",
"attributes": {
"weight": 0.5
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "domain:nanotechnology",
"kind": "lib_applies_to_domain",
"attributes": {
"weight": 1
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "role:research-engineer",
"kind": "lib_involves_role",
"attributes": {
"weight": 1
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "workflow:experiment-design",
"kind": "lib_implements_workflow",
"attributes": {
"weight": 1
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "specialization:nanotechnology",
"kind": "lib_belongs_to_specialization",
"attributes": {
"weight": 0.9
}
},
{
"from": "lib-process:nanotechnology--multi-modal-characterization",
"to": "lib-agent:meta--technical-writer",
"kind": "uses_agent",
"attributes": {
"weight": 0.8
}
}
],
"incomingEdges": []
}