A4 Could not agree more @WillTownTech Another area here – IP Connectivity including IPv4 Preservation and IPv6 Migration, Rural Broadband and Security – lots we can do here to come together to make a difference! #BizTalks #TechForGood #SDGs
COMPUTING
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Collaboration’s Role in 5G Ecosystem Development
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It's #BizTalks Q5! How important is #collaboration to the #5G ecosystem? #MWC23 #ATTinfluencer @ATTBusiness cc @mclynd @DDambrosio10 @Xbond49 @MikeNashTech @mikeflache
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Bing performs multiple sequential searches from one prompt
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Example showing Bing can perform multiple sequential searches, with LLM response generation in between, from a single user prompt:
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5G and Wired Broadband Integration for Enterprise Solutions
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It's #BizTalks Q3! How do you see #5G & Wired #broadband working together? #MWC23 #ATTinfluencer @ATTBusiness #fiber #data #AI #automation #100DaysOfCode @Shi4Tech @tobiaskintzel @Eli_Krumova #TechForGood
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5G Technology Spotlight at MWC23 Conference
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Stunning shot Dez @dez_blanchfield – barbie & #BizTalks what's not to like? #5G #attinfluencer #MWC23
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5G Technology and Hoverboard Innovation: The Future is Here
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Here we go 🙂 #BizTalks #5G #ATTinfluencer #future #hoverboad ! pic.twitter.com/yCyu2j4zhr
— Sen. Sally Eaves (@sallyeaves) 22 février 2023Here we go 🙂 #BizTalks #5G #ATTinfluencer #future #hoverboad !
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Quantum Computing Scalability Expands Problem-Solving Potential
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As this is scaled up, it has the potential to significantly broaden the range of problems to which quantum computers can be applied. Imagine a traditional computer that could only run computations of 20 computation steps, versus one that could run arbitrary length programs.
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Scaling quantum error correction for longer computations
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With further scaling, the error rates on "logical" qubits can hopefully be driven down sufficiently that we can run arbitrary-length quantum computations on a quantum computer, instead of ones with a limited number of steps.
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Physical Qubits Combined Into Noise-Resistant Logical Qubits
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What this work shows is that it is possible to group together many physical qubits and use all of their states to make a "logical" qubit, whose state is significantly less noisy (see the discussion in the blog post on surface codes, phase-flip errors and bit-flip errors).
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Google Demonstrates Logical Qubit Prototype for Fault-Tolerant Computing
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Developing useful large-scale quantum computers will require qubits with much lower error rates. Our latest results, published in @Nature
, demonstrate a prototype of a logical qubit, a milestone on the path toward scalable fault-tolerant quantum computing: https://
goo.gle/3KvE25V