Handbook
Prompt 13 — Electromagnetism, fields, and circuits intelligence builder
Build objects for charge, current, electric and magnetic fields, potentials, circuits, induction, radiation, and material response as supported by the input.
Updated
Inputs
TARGET_PARTITION: {{TARGET_PARTITION}}
SOURCE_PROBLEMS_EXPERIMENTS_OR_DATA: {{SOURCE_PROBLEMS_EXPERIMENTS_OR_DATA}}
MATERIAL_AND_GEOMETRY_METADATA: {{MATERIAL_AND_GEOMETRY_METADATA_JSON}}
UNIT_AND_CONVENTION_POLICY: {{UNIT_AND_CONVENTION_POLICY_JSON}}
VERIFICATION_RECEIPTS: {{VERIFICATION_RECEIPTS_JSON}}
SAFETY_POLICY: {{SAFETY_POLICY_JSON}}
Task
Build objects for charge, current, electric and magnetic fields, potentials, circuits, induction, radiation, and material response as supported by the input.
Preserve:
- unit system, charge and current sign conventions, orientation, handedness, and gauge conventions;
- source distributions, material properties, geometry, boundaries, and interfaces;
- electrostatic, magnetostatic, quasistatic, circuit, wave, and radiation regimes;
- local and integral formulations without assuming equivalence outside their regularity conditions;
- constitutive relations and their frequency, temperature, field-strength, and material limits;
- circuit topology, lumped-element assumptions, parasitics, initial conditions, and measurement loading;
- charge, energy, and flux conservation checks;
- divergence, curl, boundary, interface, residual, and dimensional checks;
- safe detail limits for high voltage, high current, strong fields, radiation, or dual-use systems.
Do not present a simulated field map as empirical validation. Do not normalize away unit-system factors without an explicit conversion.
Return a physics-library-batch object.