math-olympiad

Solve olympiad-style problems with adversarial verification and produce PDF-ready write-ups.

Updated Apr 19, 2026
One-click install
npx skills add https://github.com/cjrfoto/claude-config --skill math-olympiad-cjrfoto
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: math-olympiad
Source: https://github.com/cjrfoto/claude-config/tree/main/plugins/marketplaces/claude-plugins-official/plugins/math-olympiad/skills/math-olympiad
Command: npx skills add https://github.com/cjrfoto/claude-config --skill math-olympiad-cjrfoto

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

The skill provides a structured workflow to solve olympiad-style problems and subject the result to adversarial verification, increasing reliability beyond traditional solvers.

Core Features & Use Cases

  • Robust interpretation checks to ensure the intended problem reading.
  • Parallel solver attempts with internal self-improvement and self-verification to strengthen solution quality.
  • Adversarial verification, voting-based result confirmation, and presentation-ready output generation.

Quick Start

Provide a problem statement and let the solver generate a fully verified write-up ready for publication.

Frequently Asked Questions about math-olympiad

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I solve olympiad problems with rigorous proof verification?▼

Olympiad problems are solved using a multi-stage workflow that includes interpretation checks, parallel solver attempts, and adversarial verification to catch errors. This process generates a final PDF-ready write-up for proofs.

Can I use adversarial verification for USAMO and Putnam proofs?▼

Adversarial verification works on USAMO and Putnam proofs by applying a structured workflow of interpretation, solving, and voting-based result confirmation. This ensures rigorous checking and increases reliability for complex olympiad-style problems.

What is the best way to generate a PDF-ready write-up for IMO proofs?▼

The best way to generate a PDF-ready write-up for IMO proofs is through a workflow that implements solver attempts, cleaning, adversarial verification, and voting. This structured process ensures correctness and transparency before final presentation.

How does adversarial verification catch errors in mathematical proofs?▼

Adversarial verification catches errors by subjecting solver attempts to a multi-stage process of self-improvement, self-verification, and voting-based confirmation. This identifies flaws in reasoning and strengthens solution quality before final revision.

Does this olympiad solver require specific problem formatting to start?▼

You need to provide a problem statement to start the olympiad solver. The workflow begins with robust interpretation checks to ensure the intended problem reading before attempting parallel solver generation and verification.

Why use a multi-stage workflow for olympiad-style problem solving?▼

A multi-stage workflow is used for olympiad-style problem solving to increase reliability beyond traditional solvers. It separates interpretation, solving, adversarial verification, and presentation to ensure mathematical correctness and transparency.