Cybersecurity Quantum Computing Foundation
About the Course
The Quantum Computing Foundation (SCQCF) training course delivers a comprehensive and practical introduction to the principles, models, and real-world implications of quantum computing technologies.
This course explains how quantum systems differ from classical computing and covers foundational concepts such as qubits, superposition, entanglement, interference, and quantum measurement.
It also introduces key quantum computing architectures, quantum algorithms, and the emerging quantum technology ecosystem.
Participants develop a strong conceptual foundation in how quantum computing works, where it provides advantages over classical systems, and how it is expected to impact fields such as cybersecurity, optimization, artificial intelligence, and scientific research. The course also addresses current limitations, risks, and readiness challenges associated with real-world quantum adoption.
By the end of this program, learners gain the knowledge required to evaluate quantum computing claims, participate in informed technical and strategic discussions, and assess organizational preparedness for future quantum developments.
Duration: 1 Day
Mode: Online Session
- Introduction to Quantum Computing
- Classical vs Quantum Computing Models
- Qubits, Superposition, and Entanglement
- Quantum Gates, Circuits, and Algorithms
- Quantum Computing Architectures and Ecosystem
- Impact of Quantum Computing on Cybersecurity
- Quantum Readiness, Risks, and Adoption Challenges
- No prior quantum computing, advanced mathematics, or physics experience is required.
- This course is designed for beginners and professionals from diverse backgrounds.
Upon successful completion of the Quantum Computing Foundation (SCQCF) training course, participants will be able to:
- Understand the fundamental principles of quantum computing and how it differs from classical computing.
- Explain core quantum concepts, including qubits, superposition, entanglement, quantum gates, and basic quantum algorithms.
- Recognize the applications of quantum computing and its impact on cybersecurity, AI, optimization, and scientific research.
- Evaluate the opportunities, risks, and challenges associated with quantum computing adoption and quantum readiness.
- Participate confidently in informed technical and strategic discussions on emerging quantum technologies.
Soenil Soebedar is a cybersecurity expert with over three decades of IT experience across Europe, specializing in penetration testing, digital forensics, cryptography (PKI), and cybersecurity architecture. He has led and delivered cybersecurity initiatives for leading organizations across banking, government, energy, healthcare, telecom, and education. As the founder of SOEBIT BV and a senior cybersecurity consultant, he brings extensive real-world expertise in securing enterprise IT environments.