javalenciacai/qaskills

test-design-istqb

Apply ISTQB Foundation Level test design techniques including equivalence partitioning, boundary value analysis, decision tables, and state transition testing to create comprehensive test cases.

First seen Mar 4, 2026

Installation

$ npx skills add javalenciacai/qaskills --skill test-design-istqb

Similar popular skills

Related neighbors and high-traction skills in the same topics — useful to compare before installing.

Also in this package

Other skills from javalenciacai/qaskills · top by installs.

npx skills add javalenciacai/qaskills

Browse all from javalenciacai/qaskills

More details

Agent compatibility

Declared targets from SKILL.md / docs. Unmarked agents are not listed — the skill may still install via the CLI.

Claude Code Not declared
Cursor Not declared
Codex Not declared
GitHub Copilot Not declared
Windsurf Not declared
Gemini CLI Not declared
Cline Not declared
OpenCode Not declared

Repository health

Stars 5
License LICENSE
Default branch main
Open issues 0
Status Active

Package contents

Files included with this skill beyond the listing page.

  • skill md SKILL.md 4,445 B
  • docs SUMMARY.md 219 B

History

  1. First seen on skills.sh
  2. First recorded snapshot · 17 installs

SKILL.md

Test Design - ISTQB Techniques

Expert skill for designing comprehensive test cases using ISTQB Foundation Level test design techniques.

When to Use

Use this skill when you need to:

  • Design test cases from requirements
  • Apply black-box testing techniques
  • Create test data specifications
  • Ensure comprehensive test coverage
  • Generate test scenarios for positive, negative, and edge cases

ISTQB Test Design Techniques

1. Equivalence Partitioning

What it is: Divide input domains into classes where all members should be treated the same.

How to apply:

  1. Identify all inputs and outputs
  2. Determine valid and invalid partitions
  3. Create one test case per partition
  4. Cover both valid and invalid classes

Example:

Requirement: Age must be 18-65
Partitions:
- Invalid: < 18 (e.g., 17)
- Valid: 18-65 (e.g., 30)
- Invalid: > 65 (e.g., 66)

2. Boundary Value Analysis

What it is: Test at the edges of equivalence partitions where defects often hide.

How to apply:

  1. Identify boundaries in requirements
  2. Test: min-1, min, min+1, max-1, max, max+1
  3. Focus on limits, ranges, and thresholds

Example:

Requirement: Password 8-20 characters
Test values: 7, 8, 9, 19, 20, 21 characters

3. Decision Tables

What it is: Test combinations of conditions and their resulting actions.

How to apply:

  1. Identify conditions (inputs/states)
  2. List possible actions (outputs/behaviors)
  3. Create table with all meaningful combinations
  4. Generate test cases from each column

Example:

Condition 1: Premium customer? (Y/N)
Condition 2: Order > $100? (Y/N)

| Premium | Order>$100 | Discount |
|---------|-----------|----------|
| Y       | Y         | 20%      |
| Y       | N         | 10%      |
| N       | Y         | 10%      |
| N       | N         | 0%       |

= 4 test cases

4. State Transition Testing

What it is: Test how system behavior changes based on state and events.

How to apply:

  1. Identify all states
  2. Map valid transitions
  3. Identify invalid transitions
  4. Test all valid paths
  5. Test invalid transitions for error handling

Example:

Order States: Draft → Submitted → Approved → Shipped → Delivered

Valid transitions:
- Draft → Submitted
- Submitted → Approved
- Approved → Shipped
- Shipped → Delivered

Invalid transitions to test:
- Draft → Shipped (should reject)
- Delivered → Draft (should reject)

5. Error Guessing

What it is: Use experience to anticipate common defects.

Common areas:

  • Empty/null values
  • Special characters
  • Boundary conditions
  • Concurrent access
  • Network failures
  • Timeout scenarios

Test Case Template

Test Case ID: TC-XXX
Title: [Clear, descriptive title]
Preconditions: [System state before test]
Test Data: [Specific values to use]

Steps:
1. [Action]
2. [Action]
3. [Action]

Expected Results:
1. [Expected outcome]
2. [Expected outcome]
3. [Expected outcome]

Actual Results: [Filled during execution]
Status: [Pass/Fail]
Notes: [Any observations]

Coverage Checklist

Ensure test design includes:

  • ✓ Positive scenarios (happy path)
  • ✓ Negative scenarios (error handling)
  • ✓ Edge cases (boundaries)
  • ✓ Data validation tests
  • ✓ State transitions
  • ✓ Error messages verification
  • ✓ Performance considerations
  • ✓ Security aspects
  • ✓ Usability/UX validation

Test Design Output

Deliverables:

  1. Test cases with clear steps and expected results
  2. Test data specifications with valid/invalid examples
  3. Traceability matrix linking requirements to tests
  4. Coverage analysis showing technique application
  5. Risk assessment highlighting critical test areas

Best Practices

  • Start with happy path, then add negative cases
  • Use meaningful test case IDs with prefixes
  • Keep test cases atomic (one objective per test)
  • Make steps reproducible by anyone
  • Include cleanup/teardown procedures
  • Review test cases with team
  • Update tests when requirements change