What you will learn.

Explore quantum computing to enable calculations that are not possible with traditional computing technology.

  • Code on Real Quantum Computer

  • Perform linear algebra operations that represent quantum gates.

  • Use Python libraries to send a circuit to a quantum computer and analyze the results

  • Conceptually understand important quantum algorithms such as Grover's algorithm

  • Implement quantum key distribution (QKD) in Python

  • Run a Variational Quantum Eigensolver to simulate a molecule

About the Course

Are you a high school student who wants to develop in-depth, real world skills in quantum computing? This first-of-its kind course is for you!

Students will develop a foundational understanding of quantum computing, including basic linear algebra, quantum mechanics, quantum computation and information, and quantum algorithms. They will even have the chance to code on a real quantum computer. Students will receive a certificate upon completion of the course. This course consists of two modules consisting lectures and Lasbs. Lectures serve as an opportunity to provide conceptual understanding about a topic, whereas labs are a chance for students to gain hands-on experience. The goal of the course is to provide students with foundational knowledge and skills in quantum computing. Students will spend the first half of the course developing a conceptual understanding of key quantum topics and concepts, including quantum mechanics and quantum circuits, as well as developing skills in math and Python that will be utilized in the second semester. The second half of the course will focus on coding quantum circuits and quantum algorithms, leading to students coding on a real quantum computer.

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