Calculate volumes of geometric shapes for engineering design and mathematical analysis.
Scanned 9/11/2026
npx -y skills add InternScience/DrClaw --skill geometric-volume-calculation --agent claude-codeInstalls into .claude/skills of the current project.
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---
name: geometric-volume-calculation
description: Calculate volumes of geometric shapes for engineering design and mathematical analysis.
license: MIT license
metadata:
skill-author: PJLab
---
# Geometric Volume Calculation
## Usage
```python
import asyncio
import json
from mcp.client.streamable_http import streamablehttp_client
from mcp import ClientSession
import math
class GeometryClient:
def __init__(self, server_url: str, api_key: str):
self.server_url = server_url
self.api_key = api_key
self.session = None
async def connect(self):
try:
self.transport = streamablehttp_client(url=self.server_url, headers={"SCP-HUB-API-KEY": self.api_key})
self.read, self.write, self.get_session_id = await self.transport.__aenter__()
self.session_ctx = ClientSession(self.read, self.write)
self.session = await self.session_ctx.__aenter__()
await self.session.initialize()
return True
except:
return False
async def disconnect(self):
if self.session:
await self.session_ctx.__aexit__(None, None, None)
if hasattr(self, 'transport'):
await self.transport.__aexit__(None, None, None)
def parse_result(self, result):
try:
if hasattr(result, 'content') and result.content:
return json.loads(result.content[0].text)
return str(result)
except:
return {"error": "parse error"}
## Initialize and use
client = GeometryClient("https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations", "<your-api-key>")
await client.connect()
# Calculate sphere volume
radius = 5.0 # cm
volume_sphere = (4/3) * math.pi * radius**3
print(f"Sphere volume: {volume_sphere:.2f} cm³")
# Calculate cylinder volume
height = 10.0 # cm
volume_cylinder = math.pi * radius**2 * height
print(f"Cylinder volume: {volume_cylinder:.2f} cm³")
await client.disconnect()
```
### Use Cases
- CAD design, manufacturing, architectural planning, volume estimation
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