problem-classifier

Classify mathematical modeling subproblems into standard types and output a structured report.

Updated Jul 6, 2026
One-click install
npx skills add https://github.com/echo-ice/mathmodeling-ssl --skill problem-classifier-echo-ice
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: problem-classifier
Source: https://github.com/echo-ice/mathmodeling-ssl/tree/main/.codex/skills/problem-classifier
Command: npx skills add https://github.com/echo-ice/mathmodeling-ssl --skill problem-classifier-echo-ice

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes scripts (resource) components.

What problem does it solve?

This Skill streamlines the classification of subproblems into standard mathematical modeling types, simplifying the decision-making process in modeling projects.

Core Features & Use Cases

  • Subproblem Classification: Automatically categorizes subproblems into common modeling types such as evaluation, prediction, optimization, etc.
  • Task Type Identification: Determines the core task type of each subproblem, aiding in method selection.
  • Use Case: With a complex modeling project, this Skill helps quickly identify the types of models needed for each subquestion, ensuring a structured and efficient approach.

Quick Start

Run the 'problem-classifier' skill to classify subproblems based on the parsed data from the 'problem-parser'.

Frequently Asked Questions about problem-classifier

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

FAQPage Schema
How do I classify subproblems into standard mathematical modeling types?▼

You can automate the classification of subproblems into standard mathematical modeling types by running a problem-classifier workflow that requires parsed subproblems as input and outputs a structured classification report for method selection.

How does mathematical modeling subproblem classification work?▼

Mathematical modeling subproblem classification works by taking parsed subproblems as input and automatically determining their core task type, such as evaluation or optimization, to simplify method selection and decision-making in structured analysis workflows.

Do I need parsed subproblems before classifying mathematical modeling types?▼

Yes, you need parsed subproblems as input before classifying mathematical modeling types, because the workflow depends on data from a problem-parser to accurately identify the core task type and generate the structured classification report.

What is the best way to identify task types for complex modeling projects?▼

The best way to identify task types for complex modeling projects is to apply an automated subproblem classification workflow that categorizes each component into standard mathematical modeling types, ensuring a structured and efficient approach to method selection.

Can I use subproblem classification for structured analysis and method selection?▼

Yes, you can use subproblem classification for structured analysis and method selection, as it automatically categorizes modeling subproblems into standard types to streamline the decision-making process in your modeling workflows.

What are the limitations of automating mathematical modeling subproblem classification?▼

A limitation of automating mathematical modeling subproblem classification is that it strictly requires pre-parsed subproblems from a problem-parser, meaning it cannot process raw or unstructured project data directly to generate the classification report.