Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Quantum Mechanics: Stern-Gerlach Experiment and Qubits
Graph Chatbot
Related lectures (31)
Previous
Page 2 of 4
Next
Quantum Random Number Generation
Explores quantum random number generation, discussing the challenges and implementations of generating good randomness using quantum devices.
Quantum Mechanics: Self-adjoint Operators and Quantum Information
Offers a crash course on quantum mechanics, emphasizing self-adjoint operators and quantum information.
Quantum Entanglement and Teleportation
Explores quantum entanglement, teleportation, Bell's inequalities, and superdense coding in quantum information.
Bloch sphere representation and Larmor precession
Covers the Bloch sphere representation and Larmor precession in spin 1/2 systems.
Qubits: Tensor Products and Entangled States
Explains tensor products and entangled states in quantum mechanics, focusing on pairs of qubits and their mathematical representations.
Quantum Metrology: Fundamentals and Applications
Explores quantum metrology fundamentals, applications, and technologies like quantum ghost imaging, computing, and key distribution.
Quantum Information: Bloch Sphere and Gates
Covers the basics of quantum information, including the Bloch sphere representation and quantum gates.
Double Slit Experiment and Quantum Information Processing
Explores the historical development of quantum mechanics and information theory, focusing on the double slit experiment and quantum phenomena.
Quantum Measurement: General Description
Explores the general description of quantum measurements, including post-measurement states and Kraus operators.
Superconducting Qubits: Principles and Applications
Covers the principles and applications of superconducting qubits in quantum science.