Electromagnetic Field Analysis
SkillProductivityElectromagnetic Field Analysis - Analyze EM fields: vacuum permittivity, total charge, radiation pressure, and photon calculations. Use this skill for electromagnetics tasks involving calculate vacuum permittivity calculate total charge calculate radiation pressure calculate total power. Combines 4 tools from 2 SCP server(s).
Available today. Use it from your connected AI after setup.
No other account needed.
Connect ahel once, and every AI you use reads what you have installed.
Then ask your AI: use the Electromagnetic Field Analysis skill
What this skill tells your AI
The instructions your AI receives, as published by spectrai-initiative/innoclaw in .claude/skills/electromagnetic_analysis/SKILL.md and read by ahel’s review.
Discipline: Electromagnetics | Tools Used: 4 | Servers: 2
Description
Analyze EM fields: vacuum permittivity, total charge, radiation pressure, and photon calculations.
Tools Used
calculate_vacuum_permittivityfromserver-21(streamable-http) -https://scp.intern-ai.org.cn/api/v1/mcp/21/Electrical_Engineering_and_Circuit_Calculationscalculate_total_chargefromserver-21(streamable-http) -https://scp.intern-ai.org.cn/api/v1/mcp/21/Electrical_Engineering_and_Circuit_Calculationscalculate_radiation_pressurefromserver-23(streamable-http) -https://scp.intern-ai.org.cn/api/v1/mcp/23/Optics_and_Electromagneticscalculate_total_powerfromserver-23(streamable-http) -https://scp.intern-ai.org.cn/api/v1/mcp/23/Optics_and_Electromagnetics
Workflow
- Calculate vacuum permittivity
- Sum total charge
- Calculate radiation pressure
- Calculate total power
Test Case
Input
{
"charge_values": [
1e-06,
2e-06
],
"wavelength": 5e-07
}
Expected Steps
- Calculate vacuum permittivity
- Sum total charge
- Calculate radiation pressure
- Calculate total power
Usage Example
Note: Replace
sk-b04409a1-b32b-4511-9aeb-22980abdc05cwith your own SCP Hub API Key. You can obtain one from the SCP Platform.
import asyncio
import json
from contextlib import AsyncExitStack
from mcp import ClientSession
from mcp.client.streamable_http import streamablehttp_client
from mcp.client.sse import sse_client
SERVERS = {
"server-21": "https://scp.intern-ai.org.cn/api/v1/mcp/21/Electrical_Engineering_and_Circuit_Calculations",
"server-23": "https://scp.intern-ai.org.cn/api/v1/mcp/23/Optics_and_Electromagnetics"
}
async def connect(url, stack):
transport = streamablehttp_client(url=url, headers={"SCP-HUB-API-KEY": "sk-b04409a1-b32b-4511-9aeb-22980abdc05c"})
read, write, _ = await stack.enter_async_context(transport)
ctx = ClientSession(read, write)
session = await stack.enter_async_context(ctx)
await session.initialize()
return session
def parse(result):
try:
if hasattr(result, 'content') and result.content:
c = result.content[0]
if hasattr(c, 'text'):
try: return json.loads(c.text)
except: return c.text
return str(result)
except: return str(result)
async def main():
async with AsyncExitStack() as stack:
# Connect to required servers
sessions = {}
sessions["server-21"] = await connect("https://scp.intern-ai.org.cn/api/v1/mcp/21/Electrical_Engineering_and_Circuit_Calculations", stack)
sessions["server-23"] = await connect("https://scp.intern-ai.org.cn/api/v1/mcp/23/Optics_and_Electromagnetics", stack)
# Execute workflow steps
# Step 1: Calculate vacuum permittivity
result_1 = await sessions["server-21"].call_tool("calculate_vacuum_permittivity", arguments={})
data_1 = parse(result_1)
print(f"Step 1 result: {json.dumps(data_1, indent=2, ensure_ascii=False)[:500]}")
# Step 2: Sum total charge
result_2 = await sessions["server-21"].call_tool("calculate_total_charge", arguments={})
data_2 = parse(result_2)
print(f"Step 2 result: {json.dumps(data_2, indent=2, ensure_ascii=False)[:500]}")
# Step 3: Calculate radiation pressure
result_3 = await sessions["server-23"].call_tool("calculate_radiation_pressure", arguments={})
data_3 = parse(result_3)
print(f"Step 3 result: {json.dumps(data_3, indent=2, ensure_ascii=False)[:500]}")
# Step 4: Calculate total power
result_4 = await sessions["server-23"].call_tool("calculate_total_power", arguments={})
data_4 = parse(result_4)
print(f"Step 4 result: {json.dumps(data_4, indent=2, ensure_ascii=False)[:500]}")
# Cleanup
print("Workflow complete!")
if __name__ == "__main__":
asyncio.run(main())
Signals
- GitHub stars
- 391
- Forks
- 28
- Last commit
- Aug 2026
Advanced
- Catalog kind
- skill
- Gateway key
electromagnetic-analysis-spectrai-initiative- Source
- github.com/spectrai-initiative/innoclaw