geometry_trigonometry

Geometry & Trigonometry Suite - Solve geometry problems: calculate area, height from sine, angle in degrees, and increase factor. Use this skill for mathematics tasks involving calculate area calculate height from length and sine calculate phi deg calculate increase factor. Combines 4 tools from 1 SCP server(s).

Best use case

geometry_trigonometry is best used when you need a repeatable AI agent workflow instead of a one-off prompt.

Geometry & Trigonometry Suite - Solve geometry problems: calculate area, height from sine, angle in degrees, and increase factor. Use this skill for mathematics tasks involving calculate area calculate height from length and sine calculate phi deg calculate increase factor. Combines 4 tools from 1 SCP server(s).

Teams using geometry_trigonometry should expect a more consistent output, faster repeated execution, less prompt rewriting.

When to use this skill

  • You want a reusable workflow that can be run more than once with consistent structure.

When not to use this skill

  • You only need a quick one-off answer and do not need a reusable workflow.
  • You cannot install or maintain the underlying files, dependencies, or repository context.

Installation

Claude Code / Cursor / Codex

$curl -o ~/.claude/skills/geometry_trigonometry/SKILL.md --create-dirs "https://raw.githubusercontent.com/SpectrAI-Initiative/InnoClaw/main/.claude/skills/geometry_trigonometry/SKILL.md"

Manual Installation

  1. Download SKILL.md from GitHub
  2. Place it in .claude/skills/geometry_trigonometry/SKILL.md inside your project
  3. Restart your AI agent — it will auto-discover the skill

How geometry_trigonometry Compares

Feature / Agentgeometry_trigonometryStandard Approach
Platform SupportNot specifiedLimited / Varies
Context Awareness High Baseline
Installation ComplexityUnknownN/A

Frequently Asked Questions

What does this skill do?

Geometry & Trigonometry Suite - Solve geometry problems: calculate area, height from sine, angle in degrees, and increase factor. Use this skill for mathematics tasks involving calculate area calculate height from length and sine calculate phi deg calculate increase factor. Combines 4 tools from 1 SCP server(s).

Where can I find the source code?

You can find the source code on GitHub using the link provided at the top of the page.

SKILL.md Source

# Geometry & Trigonometry Suite

**Discipline**: Mathematics | **Tools Used**: 4 | **Servers**: 1

## Description

Solve geometry problems: calculate area, height from sine, angle in degrees, and increase factor.

## Tools Used

- **`calculate_area`** from `server-25` (streamable-http) - `https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations`
- **`calculate_height_from_length_and_sine`** from `server-25` (streamable-http) - `https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations`
- **`calculate_phi_deg`** from `server-25` (streamable-http) - `https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations`
- **`calculate_increase_factor`** from `server-25` (streamable-http) - `https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations`

## Workflow

1. Calculate area
2. Calculate height from sine
3. Convert angle to degrees
4. Calculate increase factor

## Test Case

### Input
```json
{
    "length": 10,
    "width": 5,
    "angle": 30
}
```

### Expected Steps
1. Calculate area
2. Calculate height from sine
3. Convert angle to degrees
4. Calculate increase factor

## Usage Example

> **Note:** Replace `sk-b04409a1-b32b-4511-9aeb-22980abdc05c` with your own SCP Hub API Key. You can obtain one from the [SCP Platform](https://scphub.intern-ai.org.cn).

```python
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-25": "https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations"
}

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-25"] = await connect("https://scp.intern-ai.org.cn/api/v1/mcp/25/Geometry_and_mathematical_calculations", stack)

        # Execute workflow steps
        # Step 1: Calculate area
        result_1 = await sessions["server-25"].call_tool("calculate_area", arguments={})
        data_1 = parse(result_1)
        print(f"Step 1 result: {json.dumps(data_1, indent=2, ensure_ascii=False)[:500]}")

        # Step 2: Calculate height from sine
        result_2 = await sessions["server-25"].call_tool("calculate_height_from_length_and_sine", arguments={})
        data_2 = parse(result_2)
        print(f"Step 2 result: {json.dumps(data_2, indent=2, ensure_ascii=False)[:500]}")

        # Step 3: Convert angle to degrees
        result_3 = await sessions["server-25"].call_tool("calculate_phi_deg", arguments={})
        data_3 = parse(result_3)
        print(f"Step 3 result: {json.dumps(data_3, indent=2, ensure_ascii=False)[:500]}")

        # Step 4: Calculate increase factor
        result_4 = await sessions["server-25"].call_tool("calculate_increase_factor", 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())
```

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