math-progress-monitor

Assess mathematical problem-solving progress and decide whether to persist, pivot, or decompose.

8|1|Updated Jan 4, 2026
One-click install
npx skills add https://github.com/scooter-lacroix/Maestro --skill math-progress-monitor
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: math-progress-monitor
Source: https://github.com/scooter-lacroix/Maestro/tree/main/maestro/skills/math/math/math-progress-monitor
Command: npx skills add https://github.com/scooter-lacroix/Maestro --skill math-progress-monitor

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes references (resource) components.

What problem does it solve?

This Skill helps users assess their progress and strategy during complex problem-solving, particularly in mathematics, to determine whether to persist, pivot, or decompose the problem.

Core Features & Use Cases

  • Progress Assessment: Evaluates current attempts, learnings, and complexity.
  • Strategy Evaluation: Checks for potential sunk costs and suggests alternative approaches.
  • Use Case: When a student is struggling with a difficult calculus problem and unsure if their current method is effective, this Skill can guide them through a structured self-assessment to decide on the best next step.

Quick Start

Use the math-progress-monitor skill to check my progress on the current math problem.

Frequently Asked Questions about math-progress-monitor

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

FAQPage Schema
How do I assess my math problem-solving progress when I'm stuck?

To assess math problem-solving progress, inventory your current attempts, extract learnings, and check complexity. This structured evaluation determines whether to persist, pivot, or decompose the problem.

What is metacognitive control in mathematics and how does it help?

Metacognitive control in mathematics involves monitoring your problem-solving strategy to evaluate if your current approach is effective. It helps you decide whether to continue, switch methods, or break down the problem.

How do I decide whether to persist or pivot during complex math calculations?

To decide whether to persist or pivot during complex math calculations, analyze your current attempts, evaluate problem complexity, and perform a sunk cost assessment. This reveals if your method is viable.

When should I decompose a math problem instead of continuing?

You should decompose a math problem when a complexity check reveals it is too difficult to solve directly. Decomposition analysis breaks the problem into manageable parts to find a clearer path.

Can I use this metacognitive assessment for advanced calculus problems?

Yes, you can use this metacognitive assessment for advanced calculus problems. It guides you through spot-checking verification and analyzing attempts to determine if your current strategy is working.

What is the best way to avoid sunk cost when solving difficult math strategies?

The best way to avoid sunk cost when solving difficult math problems is to perform a structured progress assessment. Evaluating your learnings and current attempts helps you pivot away from ineffective strategies.