Quantum Circuits | Understanding Quantum Information & Computation | Lesson 03

This is part of the Understanding Quantum Information & Computation series. Watch the full playlist here:    • Understanding Quantum Information & Comput...   This lesson introduces the quantum circuit model, as well as some mathematical concepts that are important to quantum information including inner products, orthogonality, and projections. Fundamental limitations of quantum information, including the no-cloning theorem, are also discussed. Additional materials for this course, including written text, Qiskit implementations, slides in pdf format, and a badging exam, can be found on IBM Quantum Learning by following this link: https://learning.quantum.ibm.com/cour... Timecodes for lesson sections: 0:00 — Introduction 1:06 — Lesson overview 2:28 — Circuits 7:25 — Quantum circuits 18:27 — Inner products 24:15 — Orthogonality and orthonormality 32:35 — Projections 36:22 — Projective measurements 43:47 — Irrelevance of global phases 48:13 — No-cloning theorem 53:37 — Discriminating non-orthogonal states 59:59 — Conclusion #ibmquantum #learnquantum #qiskit

Entanglement in Action |Understanding Quantum Information & Computation | Lesson 04
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Entanglement in Action |Understanding Quantum Information & Computation | Lesson 04

Multiple Systems | Understanding Quantum Information & Computation | Lesson 02
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Multiple Systems | Understanding Quantum Information & Computation | Lesson 02

Scott Aaronson - The TRUTH About Quantum Computing
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Scott Aaronson - The TRUTH About Quantum Computing

Quantum Query Algorithms | Understanding Quantum Information & Computation | Lesson 05
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Quantum Query Algorithms | Understanding Quantum Information & Computation | Lesson 05

The Race to Harness Quantum Computing's Mind-Bending Power | The Future With Hannah Fry
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The Race to Harness Quantum Computing's Mind-Bending Power | The Future With Hannah Fry

The mind-bending reality of quantum mechanics - with Jim Al Khalili
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The mind-bending reality of quantum mechanics - with Jim Al Khalili

Power BI DAX Functions Tutorial for Beginners | FULL COURSE
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Power BI DAX Functions Tutorial for Beginners | FULL COURSE

Knicks Fans Brand Elmo a Traitor & Trump Storms Out of "Meet the Press" Interview | The Daily Show
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Knicks Fans Brand Elmo a Traitor & Trump Storms Out of "Meet the Press" Interview | The Daily Show

Bell's Theorem, a Glitch in Reality
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Bell's Theorem, a Glitch in Reality

Single Systems | Understanding Quantum Information & Computation | Lesson 01
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Single Systems | Understanding Quantum Information & Computation | Lesson 01

The EPR Paradox & Bell's inequality explained simply
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The EPR Paradox & Bell's inequality explained simply

But what is quantum computing?  (Grover's Algorithm)
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But what is quantum computing? (Grover's Algorithm)

Exclusive - Inside India’s Most Powerful Quantum Computer in Bengaluru
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Exclusive - Inside India’s Most Powerful Quantum Computer in Bengaluru

Density Matrices | Understanding Quantum Information & Computation | Lesson 09
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Density Matrices | Understanding Quantum Information & Computation | Lesson 09

Russell's Paradox - a simple explanation of a profound problem
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Russell's Paradox - a simple explanation of a profound problem

Quantum Computing: Hype vs. Reality | World Science Festival
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Quantum Computing: Hype vs. Reality | World Science Festival

Terence Tao: Nobody Understands Why AI Actually Works
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Terence Tao: Nobody Understands Why AI Actually Works

Quantum Algorithmic Foundations | Understanding Quantum Information & Computation | Lesson 06
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Quantum Algorithmic Foundations | Understanding Quantum Information & Computation | Lesson 06

The Most Important Gates in Quantum Computing Explained
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The Most Important Gates in Quantum Computing Explained

Correcting Quantum Errors | Understanding Quantum Information & Computation | Lesson 13
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Correcting Quantum Errors | Understanding Quantum Information & Computation | Lesson 13