跳转到主要内容
此内容尚未提供您的语言版本,正在以英文显示。

Formulate Maxwell Equations

技能 已验证 活跃

Work with the full set of Maxwell's equations in integral and differential form to analyze electromagnetic fields, waves, and energy transport. Use when applying Gauss's law, Faraday's law, or the Ampere-Maxwell law to boundary value problems, deriving the electromagnetic wave equation, computing Poynting vector and radiation pressure, solving for fields at material interfaces, or connecting electrostatics and magnetostatics to the unified electromagnetic framework.

目的

To provide a structured and comprehensive procedure for analyzing electromagnetic phenomena, enabling users to apply fundamental physics principles to complex problems.

功能

  • Apply Maxwell's equations (integral and differential forms)
  • Analyze electromagnetic fields, waves, and energy transport
  • Solve boundary value problems
  • Derive electromagnetic wave equation
  • Compute Poynting vector and radiation pressure

使用场景

  • Solving boundary value problems for E and B fields in regions with sources and material interfaces
  • Deriving the electromagnetic wave equation from first principles
  • Computing energy flow (Poynting vector) and momentum density of electromagnetic fields
  • Applying boundary conditions at interfaces between different media

非目标

  • Quantum electrodynamics (QED)
  • Non-linear optics
  • Plasma physics
  • Relativistic electrodynamics

安装

/plugin install agent-almanac@pjt222-agent-almanac

质量评分

已验证
95 /100
about 22 hours ago 分析

信任信号

最近提交1 day ago
星标14
许可证MIT
状态
查看源代码

类似扩展

Solve Electromagnetic Induction

99

Solve problems involving changing magnetic flux using Faraday's law, Lenz's law, motional EMF, mutual and self-inductance, and RL circuit transients. Use when computing induced EMF from time-varying B-fields or moving conductors, determining current direction via Lenz's law, analyzing inductance and energy storage in magnetic fields, or solving RL circuit differential equations for switching transients.

技能
pjt222

Design Electromagnetic Device

96

Design practical electromagnetic devices including electromagnets, DC and brushless motors, generators, and transformers by bridging theory to application. Use when sizing a solenoid or toroidal electromagnet for a target field or force, selecting motor topology and computing torque and efficiency, designing a transformer for a given voltage ratio and power rating, or analyzing losses from copper resistance, core hysteresis, and eddy currents.

技能
pjt222

Analyze Magnetic Field

75

Calculate and visualize magnetic fields produced by current distributions using the Biot-Savart law, Ampere's law, and magnetic dipole approximations. Use when computing B-fields from arbitrary current geometries, exploiting symmetry with Ampere's law, analyzing superposition of multiple sources, or characterizing magnetic materials through permeability, B-H curves, and hysteresis behavior.

技能
pjt222

Derive Theoretical Result

99

Derive a theoretical result step-by-step from first principles or established theorems, with every step explicitly justified and special cases checked. Use when deriving a formula or theorem from first principles, proving a mathematical statement by logical deduction, re-deriving a textbook result for verification or adaptation, extending a known result to a more general setting, or producing a self-contained derivation for a paper or thesis.

技能
pjt222

Qutip

99

Quantum physics simulation library for open quantum systems. Use when studying master equations, Lindblad dynamics, decoherence, quantum optics, or cavity QED. Best for physics research, open system dynamics, and educational simulations. NOT for circuit-based quantum computing—use qiskit, cirq, or pennylane for quantum algorithms and hardware execution.

技能
K-Dense-AI

Database Lookup

97

Search 78 public scientific, biomedical, materials science, and economic databases via REST APIs. Covers physics/astronomy (NASA, NIST, SDSS, SIMBAD), earth/environment (USGS, NOAA, EPA), chemistry/drugs (PubChem, ChEMBL, DrugBank, FDA, KEGG, ZINC, BindingDB), materials (Materials Project, COD), biology/genomics (Reactome, UniProt, STRING, Ensembl, NCBI Gene, GEO, GTEx, PDB, AlphaFold, InterPro, BioGRID, Gene Ontology, dbSNP, gnomAD, ENCODE, Human Protein Atlas, Human Cell Atlas), disease/clinical (COSMIC, Open Targets, ClinicalTrials.gov, OMIM, ClinVar, GDC/TCGA, cBioPortal, DisGeNET, GWAS Catalog), regulatory (FDA, USPTO, SEC EDGAR), economics/finance (FRED, World Bank, US Treasury), demographics (US Census, Eurostat, WHO). Use when looking up compounds, genes, proteins, pathways, variants, clinical trials, patents, economic indicators, or any public database API query.

技能
K-Dense-AI