| 01 - Access IBM quantum computers.mp4 | 11.2 MB | ||
| 01 - Access IBM quantum computers.srt | 8.8 KB | ||
| 01 - Classical bits vs. quantum bits.mp4 | 51.9 MB | ||
| 01 - Classical bits vs. quantum bits.srt | 10.4 KB | ||
| 01 - Controlled-NOT (CNOT) gate.mp4 | 16.1 MB | ||
| 01 - Controlled-NOT (CNOT) gate.srt | 5.2 KB | ||
| 01 - Hadamard gate.mp4 | 30.8 MB | ||
| 01 - Hadamard gate.srt | 8.4 KB | ||
| 01 - Learn quantum computing.mp4 | 21 MB | ||
| 01 - Learn quantum computing.srt | 2.2 KB | ||
| 01 - Overview of matrix operations.mp4 | 22.4 MB | ||
| 01 - Overview of matrix operations.srt | 8.2 KB | ||
| 01 - Represent multiple qubits.mp4 | 26.3 MB | ||
| 01 - Represent multiple qubits.srt | 8.3 KB | ||
| 01 - Superdense coding.mp4 | 40.8 MB | ||
| 01 - Superdense coding.srt | 8.9 KB | ||
| 01 - What is quantum entanglement.mp4 | 68.9 MB | ||
| 01 - What is quantum entanglement.srt | 12 KB | ||
| 01 - Your next quantum steps.mp4 | 8.6 MB | ||
| 01 - Your next quantum steps.srt | 2.5 KB | ||
| 02 - Controlled-NOT (CNOT) gate with Qiskit.mp4 | 8.6 MB | ||
| 02 - Controlled-NOT (CNOT) gate with Qiskit.srt | 5 KB | ||
| 02 - Hadamard gate with Qiskit.mp4 | 8.8 MB | ||
| 02 - Hadamard gate with Qiskit.srt | 4.9 KB | ||
| 02 - Measuring a qubit.mp4 | 33.9 MB | ||
| 02 - Measuring a qubit.srt | 5.7 KB | ||
| 02 - Quantum logic gates.mp4 | 31.4 MB | ||
| 02 - Quantum logic gates.srt | 10.1 KB | ||
| 02 - Represent entangled qubits.mp4 | 19.9 MB | ||
| 02 - Represent entangled qubits.srt | 3.9 KB | ||
| 02 - Represent multiple qubits with Qiskit.mp4 | 9.4 MB | ||
| 02 - Represent multiple qubits with Qiskit.srt | 6.4 KB | ||
| 02 - Superdense coding with Qiskit.mp4 | 6.8 MB | ||
| 02 - Superdense coding with Qiskit.srt | 5.3 KB | ||
| 02 - Use Qiskit with real quantum hardware.mp4 | 19.7 MB | ||
| 02 - Use Qiskit with real quantum hardware.srt | 12.3 KB | ||
| 02 - What you should know.mp4 | 27.2 MB | ||
| 02 - What you should know.srt | 6.5 KB | ||
| 03 - How much information is in a qubit.mp4 | 16.8 MB | ||
| 03 - How much information is in a qubit.srt | 3.6 KB | ||
| 03 - Measure a qubit with Qiskit.mp4 | 18.5 MB | ||
| 03 - Measure a qubit with Qiskit.srt | 15.3 KB | ||
| 03 - Measurement on an arbitrary basis.mp4 | 35.8 MB | ||
| 03 - Measurement on an arbitrary basis.srt | 11.4 KB | ||
| 03 - Mitigate quantum measurement errors.mp4 | 19 MB | ||
| 03 - Mitigate quantum measurement errors.srt | 4.9 KB | ||
| 03 - Pauli-X gate.mp4 | 28.9 MB | ||
| 03 - Pauli-X gate.srt | 9 KB | ||
| 03 - Qiskit and GitHub Codespaces.mp4 | 15.1 MB | ||
| 03 - Qiskit and GitHub Codespaces.srt | 4.9 KB | ||
| 03 - Quantum teleportation.mp4 | 47.9 MB | ||
| 03 - Quantum teleportation.srt | 10.9 KB | ||
| 03 - Simulate a bell state with Qiskit.mp4 | 8.4 MB | ||
| 03 - Simulate a bell state with Qiskit.srt | 5.4 KB | ||
| 03 - Toffoli gate.mp4 | 13.6 MB | ||
| 03 - Toffoli gate.srt | 4.2 KB | ||
| 04 - Challenge Entangle three qubits.mp4 | 5.7 MB | ||
| 04 - Challenge Entangle three qubits.srt | 1.8 KB | ||
| 04 - Overview of vectors.mp4 | 59.7 MB | ||
| 04 - Overview of vectors.srt | 22.6 KB | ||
| 04 - Pauli-X gate with Qiskit.mp4 | 11.7 MB | ||
| 04 - Pauli-X gate with Qiskit.srt | 7.4 KB | ||
| 04 - Phase shift gates.mp4 | 30.6 MB | ||
| 04 - Phase shift gates.srt | 7.8 KB | ||
| 04 - Quantum teleportation with Qiskit.mp4 | 18.6 MB | ||
| 04 - Quantum teleportation with Qiskit.srt | 11.3 KB | ||
| 04 - Toffoli gate with Qiskit.mp4 | 6.6 MB | ||
| 04 - Toffoli gate with Qiskit.srt | 3.9 KB | ||
| 04 - Why quantum computing.mp4 | 66.1 MB | ||
| 04 - Why quantum computing.srt | 12.1 KB | ||
| 05 - Challenge Real quantum teleportation.mp4 | 7 MB | ||
| 05 - Challenge Real quantum teleportation.srt | 2.1 KB | ||
| 05 - Overview of complex numbers.mp4 | 46.2 MB | ||
| 05 - Overview of complex numbers.srt | 18.1 KB | ||
| 05 - Pauli-Y gate.mp4 | 38.6 MB | ||
| 05 - Pauli-Y gate.srt | 11.4 KB | ||
| 05 - Phase shift gates with Qiskit.mp4 | 4.7 MB | ||
| 05 - Phase shift gates with Qiskit.srt | 2.9 KB | ||
| 05 - Solution Entangle three qubits.mp4 | 9.2 MB | ||
| 05 - Solution Entangle three qubits.srt | 5.7 KB | ||
| 05 - Swap and Fredkin gates.mp4 | 13.7 MB | ||
| 05 - Swap and Fredkin gates.srt | 4.3 KB | ||
| 06 - Parameterized rotation gates.mp4 | 21.1 MB | ||
| 06 - Parameterized rotation gates.srt | 6.1 KB | ||
| 06 - Pauli-Y gate with Qiskit.mp4 | 7.1 MB | ||
| 06 - Pauli-Y gate with Qiskit.srt | 4.5 KB | ||
| 06 - Represent qubits as vectors.mp4 | 48.8 MB | ||
| 06 - Represent qubits as vectors.srt | 19.1 KB | ||
| 06 - Solution Real quantum teleportation.mp4 | 10.1 MB | ||
| 06 - Solution Real quantum teleportation.srt | 6.6 KB | ||
| 06 - Swap and Fredkin gates with Qiskit.mp4 | 7.1 MB | ||
| 06 - Swap and Fredkin gates with Qiskit.srt | 3.4 KB | ||
| 07 - Challenge Classical two-bit adder.mp4 | 9 MB | ||
| 07 - Challenge Classical two-bit adder.srt | 4.1 KB | ||
| 07 - Parameterized rotation gates with Qiskit.mp4 | 8 MB | ||
| 07 - Parameterized rotation gates with Qiskit.srt | 4.8 KB | ||
| 07 - Pauli-Z gate.mp4 | 27 MB | ||
| 07 - Pauli-Z gate.srt | 6.4 KB | ||
| 07 - Represent qubits on the Bloch sphere.mp4 | 39.9 MB | ||
| 07 - Represent qubits on the Bloch sphere.srt | 11.8 KB | ||
| 08 - Pauli-Z gate with Qiskit.mp4 | 5.8 MB | ||
| 08 - Pauli-Z gate with Qiskit.srt | 3.3 KB | ||
| 08 - Single-qubit gates on multi-qubit states.mp4 | 17.8 MB | ||
| 08 - Single-qubit gates on multi-qubit states.srt | 8.3 KB | ||
| 08 - Solution Classical two-bit adder.mp4 | 5 MB | ||
| 08 - Solution Classical two-bit adder.srt | 3.9 KB | ||
| 08 - State vectors and Bloch spheres with Qiskit.mp4 | 10.7 MB | ||
| 08 - State vectors and Bloch spheres with Qiskit.srt | 7.5 KB | ||
| 09 - Build a model Bloch sphere.mp4 | 61.1 MB | ||
| 09 - Build a model Bloch sphere.srt | 13.8 KB | ||
| 09 - Challenge Binary numbers.mp4 | 7 MB | ||
| 09 - Challenge Binary numbers.srt | 2.8 KB | ||
| 09 - Challenge Random numbers.mp4 | 10.5 MB | ||
| 09 - Challenge Random numbers.srt | 3.2 KB | ||
| 10 - Global and relative phase.mp4 | 36.2 MB | ||
| 10 - Global and relative phase.srt | 12.1 KB | ||
| 10 - Solution Binary numbers.mp4 | 4.8 MB | ||
| 10 - Solution Binary numbers.srt | 3.2 KB | ||
| 10 - Solution Random numbers.mp4 | 4.3 MB | ||
| 10 - Solution Random numbers.srt | 3.5 KB | ||
| 11 - Challenge Create a quantum circuit.mp4 | 8.7 MB | ||
| 11 - Challenge Create a quantum circuit.srt | 2.5 KB | ||
| 12 - Solution Create a quantum circuit.mp4 | 6.3 MB | ||
| 12 - Solution Create a quantum circuit.srt | 4.4 KB | ||
| Bonus Resources.txt | 409.6 B | ||
| Get Bonus Downloads Here.url | 204.8 B | ||
| ▲ 126 total files | |||
Quantum Computing Fundamentals (2023)
https://CourseWikia.com
Released 4/2023
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Skill Level: Advanced | Genre: eLearning | Language: English + srt | Duration: 4h 12m | Size: 1.31 GB
This course is integrated with GitHub Codespaces, an instant cloud developer environment that offers all the functionality of your favorite IDE without the need for any local machine setup. With GitHub Codespaces, you can get hands-on practice from any machine, at any time—all while using a tool that you’ll likely encounter in the workplace. Check out the “Using GitHub Codespaces with this course” video to learn how to get started.
In this course, electrical engineer and educator Barron Stone guides you through how to deploy quantum computing from a developer’s perspective. Learn about qubits, quantum logic gates and circuits, running quantum programs with Qiskit, three common quantum algorithms, and more. This course is a perfect companion to the course Introduction to Quantum Computing.
| torrent name | size | uploader | age | seed | leech |
|---|---|---|---|---|---|
| 458.4 MB | freecoursewb | 4 years | 0 | 0 |
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