
web.archive.org/web/20220126134407/https:/docs.microsoft.com/en-us/shows/azure-friday/quantum-inspired-algorithms-and-the-azure-quantum-optimization-service
Preview meta tags from the web.archive.org website.
Linked Hostnames
1Thumbnail

Search Engine Appearance
Quantum-inspired algorithms and the Azure Quantum optimization service
Delbert Murphy joins Scott Hanselman to show how quantum-inspired algorithms mimic quantum physics to solve difficult optimization problems. Quantum-Inspired Optimization (QIO) takes state-of-the-art algorithmic techniques from quantum physics and makes these capabilities available in Azure on conventional hardware, and callable from a Python client. You can use QIO to solve problems with hundreds of thousands of variables, combined into millions of terms, in a few minutes, with this easy-to-consume Azure service.[0:00:00]– Introduction [0:00:40]– What problems can you solve with quantum-inspired optimization?[0:05:35]– A concrete example: Secret Santa[0:08:52]– Demo, Part I: Solving Secret Santa with QIO[0:17:58]– Demo, Part II: Running the code[0:21:12]– Quantum-inspired algorithms[0:24:33]– Wrap-up Solve optimization problems by using quantum-inspired optimizationWhat are quantum-inspired algorithms?Ising formulations of many NP problems (Cornell University)A Tutorial on Formulating and Using QUBO Models (Cornell University)Sample code: delbert/secret-santa (GitHub)Azure Quantum optimization service samples (GitHub)Create a free account (Azure)
Bing
Quantum-inspired algorithms and the Azure Quantum optimization service
Delbert Murphy joins Scott Hanselman to show how quantum-inspired algorithms mimic quantum physics to solve difficult optimization problems. Quantum-Inspired Optimization (QIO) takes state-of-the-art algorithmic techniques from quantum physics and makes these capabilities available in Azure on conventional hardware, and callable from a Python client. You can use QIO to solve problems with hundreds of thousands of variables, combined into millions of terms, in a few minutes, with this easy-to-consume Azure service.[0:00:00]– Introduction [0:00:40]– What problems can you solve with quantum-inspired optimization?[0:05:35]– A concrete example: Secret Santa[0:08:52]– Demo, Part I: Solving Secret Santa with QIO[0:17:58]– Demo, Part II: Running the code[0:21:12]– Quantum-inspired algorithms[0:24:33]– Wrap-up Solve optimization problems by using quantum-inspired optimizationWhat are quantum-inspired algorithms?Ising formulations of many NP problems (Cornell University)A Tutorial on Formulating and Using QUBO Models (Cornell University)Sample code: delbert/secret-santa (GitHub)Azure Quantum optimization service samples (GitHub)Create a free account (Azure)
DuckDuckGo
Quantum-inspired algorithms and the Azure Quantum optimization service
Delbert Murphy joins Scott Hanselman to show how quantum-inspired algorithms mimic quantum physics to solve difficult optimization problems. Quantum-Inspired Optimization (QIO) takes state-of-the-art algorithmic techniques from quantum physics and makes these capabilities available in Azure on conventional hardware, and callable from a Python client. You can use QIO to solve problems with hundreds of thousands of variables, combined into millions of terms, in a few minutes, with this easy-to-consume Azure service.[0:00:00]– Introduction [0:00:40]– What problems can you solve with quantum-inspired optimization?[0:05:35]– A concrete example: Secret Santa[0:08:52]– Demo, Part I: Solving Secret Santa with QIO[0:17:58]– Demo, Part II: Running the code[0:21:12]– Quantum-inspired algorithms[0:24:33]– Wrap-up Solve optimization problems by using quantum-inspired optimizationWhat are quantum-inspired algorithms?Ising formulations of many NP problems (Cornell University)A Tutorial on Formulating and Using QUBO Models (Cornell University)Sample code: delbert/secret-santa (GitHub)Azure Quantum optimization service samples (GitHub)Create a free account (Azure)
General Meta Tags
25- titleQuantum-inspired algorithms and the Azure Quantum optimization service | Microsoft Docs
- charsetutf-8
- viewportwidth=device-width, initial-scale=1.0
- color-schemelight dark
- authormarkdefalco
Open Graph Meta Tags
6- og:titleQuantum-inspired algorithms and the Azure Quantum optimization service
- og:typewebsite
- og:urlhttps://web.archive.org/web/20220131083628/https://docs.microsoft.com/en-us/shows/azure-friday/quantum-inspired-algorithms-and-the-azure-quantum-optimization-service
- og:descriptionDelbert Murphy joins Scott Hanselman to show how quantum-inspired algorithms mimic quantum physics to solve difficult optimization problems. Quantum-Inspired Optimization (QIO) takes state-of-the-art algorithmic techniques from quantum physics and makes these capabilities available in Azure on conventional hardware, and callable from a Python client. You can use QIO to solve problems with hundreds of thousands of variables, combined into millions of terms, in a few minutes, with this easy-to-consume Azure service.[0:00:00]– Introduction [0:00:40]– What problems can you solve with quantum-inspired optimization?[0:05:35]– A concrete example: Secret Santa[0:08:52]– Demo, Part I: Solving Secret Santa with QIO[0:17:58]– Demo, Part II: Running the code[0:21:12]– Quantum-inspired algorithms[0:24:33]– Wrap-up Solve optimization problems by using quantum-inspired optimizationWhat are quantum-inspired algorithms?Ising formulations of many NP problems (Cornell University)A Tutorial on Formulating and Using QUBO Models (Cornell University)Sample code: delbert/secret-santa (GitHub)Azure Quantum optimization service samples (GitHub)Create a free account (Azure)
- og:imagehttps://web.archive.org/web/20220131083628im_/https://docs.microsoft.com/en-us/media/logos/logo-ms-social.png
Twitter Meta Tags
2- twitter:cardsummary
- twitter:site@docsmsft
Link Tags
4- canonicalhttps://web.archive.org/web/20220131083628/https://docs.microsoft.com/en-us/shows/azure-friday/quantum-inspired-algorithms-and-the-azure-quantum-optimization-service
- stylesheethttps://web-static.archive.org/_static/css/banner-styles.css?v=1B2M2Y8A
- stylesheethttps://web-static.archive.org/_static/css/iconochive.css?v=1B2M2Y8A
- stylesheet/web/20220131083628cs_/https://docs.microsoft.com/_themes/docs.theme/master/en-us/_themes/styles/232e221b.site-ltr.css
Links
16- https://web.archive.org/web/20220131083628/https://aka.ms/azfr/693/01
- https://web.archive.org/web/20220131083628/https://aka.ms/azfr/693/02
- https://web.archive.org/web/20220131083628/https://aka.ms/azfr/693/03
- https://web.archive.org/web/20220131083628/https://aka.ms/azfr/693/04
- https://web.archive.org/web/20220131083628/https://aka.ms/azfr/693/05