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Certification Course · Quantum Computing Certification Program

Quantum Computing Certification Program

Duration: 30+ hours of Live sessions | Mode: Online

Fee
₹8,500
Schedule
Weekend Batch (Saturday & Sunday)
Seats
100
Enrolled
33
Trainer
Edvicon
Rating
★ 4.5
100 seats
QP

Overview

About this course

Course Overview:
The Quantum Computing Certification Program, offered by Edvicon in collaboration with iHUB IIT Roorkee, is a comprehensive 30-hour, industry-oriented program designed to introduce learners to the fundamentals and real-world applications of quantum computing. Through live expert-led sessions, hands-on practice with IBM Quantum Composer, and a structured 15-module curriculum, participants will gain practical knowledge of quantum algorithms, quantum communication, quantum error correction, post-quantum cryptography, and quantum machine learning. The program is ideal for students and professionals looking to build future-ready skills and earn a prestigious certification from iHUB IIT Roorkee & Edvicon.

Outcomes

What you'll achieve

  • Certification from iHUB IIT Roorkee and Edvicon EdTech Pvt. Ltd.
  • Industry-oriented curriculum designed by domain experts
  • Hands-on exposure to quantum computing tools and platforms
  • Introduction to quantum algorithms and quantum communication
  • Practical understanding of post-quantum cryptography
  • Access to IBM Quantum Composer for experimentation
  • Future-focused learning aligned with emerging technology trends
  • Suitable for engineering, computer science, and technology students

Curriculum

Download the course curriculum

Voices

Learner testimonials

● Introduction to Quantum Computing 

● Classical Bits (Cbits) and Quantum Bits (Qubits) 

● Quantum Processing Units (QPUs) 

M1

Module 1

Foundations of Quantum Computing

● Linear Algebra Fundamentals 

● Dirac Notation and Quantum States 

M2

Module 2

Mathematical Foundations

● Spin and Qubits 

● Quantum States and Measurement 

M3

Module 3

Quantum Information

● Entanglement Concepts 

● Bell’s Inequality 

M4

Module 4

Quantum Entanglement

● Classical Logic 

● Logic Gates and Circuits 

M5

Module 5

Classical Computing Foundations

● Quantum Gates 

● Quantum Circuit Design 

M6

Module 6

Quantum Gates and Circuits

● Superdense Coding 

● Quantum Teleportation 

M7

Module 7

Quantum Communication

● Introduction to Quantum Algorithms 

● Applications and Use Cases 

M8

Module 8

Quantum Algorithms

● Error Detection and Correction Techniques 

● Reliability in Quantum Systems

M9

Module 9

Quantum Error Correction

● Introduction to Post-Quantum Security 

● Quantum Threats to Modern Cryptography 

M1

Module 10

Post-Quantum Cryptography

● Lattice Cryptographic Systems 

● Security Applications

M1

Module 11

Lattice-Based Cryptography

● Principles and Applications

M1

Module 12

Code-Based Cryptography

● Quantum-Resistant Hashing Techniques

M1

Module 13

Hash-Based Cryptography

● Global PQC Standards 

● Industry Adoption

M1

Module 14

Post-Quantum Cryptography Standardization

● Introduction to Quantum Machine Learning 

● Future Applications of Quantum AI

M1

Module 15

Quantum Machine Learning

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