IBM C1000-179 Exam Details & Actual Exam Questions

  • Exam Code/Number: C1000-179
  • Exam Name/Title: Fundamentals of Quantum Computing Using Qiskit v2.X Developer
  • Certification Provider: IBM
  • Corresponding Certification: IBM Certification
  • Certification Level: Associate

IBM Fundamentals of Quantum Computing Using Qiskit v2.X Developer Exam Questions

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IBM C1000-179 Exam Overview:

Certification Vendor:IBM
Exam Name:Fundamentals of Quantum Computing Using Qiskit v2.X Developer
Exam Number:C1000-179
Available Languages:English
Exam Duration:90 minutes
Exam Price:Varies by region (~USD 200, typically via Pearson VUE)
Certificate Validity Period:3 years
Related Certifications:IBM Certified Quantum Computation using Qiskit v0.2X Developer (replaced)
Passing Score:47/68
Real Exam Qty:68
Exam Format:Scenario-based questions, Single answer, Multiple choice
Recommended Training:Qiskit Documentation
IBM Quantum Learning
Exam Registration:Pearson VUE IBM Exams
IBM Certification Portal
Exam Way:Online proctored exam (Pearson VUE)
Pre Condition:No formal prerequisite exam required; basic Python and quantum computing fundamentals recommended
Official Syllabus URL:https://www.ibm.com/training/certification

IBM C1000-179 Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Run quantum circuits15%- Execution on IBM Quantum systems
  • 1. Session-based execution (dedicated, priority, batch modes)
    • 2. Running circuits using Qiskit Runtime primitives
      Topic 2: Visualize quantum circuits, measurements, and states11%- Quantum visualization techniques
      • 1. Visualize quantum states
        • 2. Visualize quantum measurements
          • 3. Visualize quantum circuits
            Topic 3: Create quantum circuits18%- Circuit construction and optimization
            • 1. Construct basic quantum circuits
              • 2. Construct parameterized circuits
                • 3. Construct dynamic circuits
                  • 4. Transpile and optimize circuits
                    Topic 4: Retrieve and analyze results10%- Post-processing quantum results
                    • 1. Interpret measurement outputs
                      • 2. Analyze circuit execution results
                        Topic 5: Use sampler primitive12%- Sampler configuration and theory
                        • 1. Theoretical understanding of sampler primitive
                          • 2. Configure sampler options (e.g., dynamical decoupling)
                            Topic 6: Use estimator primitive12%- Estimator configuration and theory
                            • 1. Configure estimator options (e.g., resilience levels)
                              • 2. Theoretical understanding of estimator primitive
                                Topic 7: Perform quantum operations16%- Quantum operators and transformations
                                • 1. Apply quantum operations
                                  • 2. Define Pauli operators


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