Course description

Quantum Computing is transforming the future of technology by harnessing the unique properties of quantum mechanics to perform computations in entirely new ways. This course provides a comprehensive introduction to the fundamentals of quantum computing, including qubits, superposition, entanglement, quantum gates, and circuits. Students will explore how quantum algorithms such as Shor’s and Grover’s can outperform classical approaches in certain tasks. Through interactive lessons and practical examples, learners will gain the foundational knowledge needed to understand and engage with the rapidly evolving world of quantum technologies. No prior background in quantum physics is required—just curiosity and a passion for innovation.

What will i learn?

  • Understand the fundamental principles of quantum mechanics relevant to computing
  • Explain key concepts such as qubits, superposition, entanglement, and quantum gates.
  • Compare classical and quantum computing approaches to problem-solving.

Requirements

  • Basic Mathematics: Familiarity with high school-level linear algebra and probability will be helpful but not mandatory.
  • Interest in Technology: A curious mindset and eagerness to explore cutting-edge computing concepts.
  • Computer/Laptop with Internet Access: To access course materials and use online quantum computing platforms like IBM Qiskit.

Frequently asked question

This course is designed for students, tech enthusiasts, and professionals who are curious about quantum computing. No prior knowledge of quantum physics is required.

You will learn the basics of quantum mechanics, how quantum computers work, key concepts like qubits, superposition, entanglement, and how quantum algorithms differ from classical ones.

No. The course is beginner-friendly and covers all necessary foundational concepts from scratch.

Apoorva Bajaj

₹4000

₹6000

Lectures

20

Skill level

Beginner

Expiry period

Lifetime

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