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Bill Fulkerson

Implementing a quantum approximate optimization algorithm on a 53-qubit NISQ device - 0 views

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    A large team of researchers working with Google Inc. and affiliated with a host of institutions in the U.S., one in Germany and one in the Netherlands has implemented a quantum approximate optimization algorithm (QAOA) on a 53-qubit noisy intermediate-scale quantum (NISQ) device. In their paper published in the journal Nature Physics,, the group describes their method of studying the performance of their QAOA on Google's Sycamore superconducting 53-qubit quantum processor and what they learned from it. Boaz Barak with Harvard University has published a News & Views piece on the work done by the team in the same journal issue.
Bill Fulkerson

Team warns negative emissions technologies may not solve climate crisis - 0 views

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    team led by researchers at the University of Virginia cautions that when it comes to climate change, the world is making a bet it might not be able to cover.
Bill Fulkerson

Modern tomatoes can't get same soil microbe boost as ancient ancestors - 0 views

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    A Purdue University-led team of scientists has evidence that tomatoes may be more sensitive to these types of diseases because they've lost the protection offered by certain soil microbes. The researchers found that wild relatives and wild-type tomatoes that associate more strongly with a positive soil fungus grew larger, resisted disease onset and fought disease much better than modern plants.
Bill Fulkerson

Setting the bar for variational quantum algorithms using high-performance classical sim... - 0 views

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    The IBM Quantum team envisions a future where quantum computers interact frictionlessly with high performance computing resources, taking over for the specific problems where quantum can offer a computational advantage. Pushing the envelope of classical computing is crucial to this goal, especially as we develop new quantum algorithms and try to understand which problems are worth tackling with a quantum computer.
Bill Fulkerson

Feared microbes' hospital hangouts are revealed : Research Highlights - 0 views

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    A sweeping effort to map a hospital's microorganisms has found that infectious pathogens hide in a place that's all about cleaning: the sink. Niranjan Nagarajan at the Genome Institute of Singapore and his colleagues sampled bacteria from bed rails, sinks and other sites in a Singapore hospital. Microbes that tend to grow in slimy 'biofilms' and cause hospital-acquired infections were prevalent on sink traps and faucet aerators, whereas skin-dwelling bacteria were abundant on objects, such as door knobs and bed rails, that are often touched. Frequently touched sites harboured multidrug-resistant microbes such as methicillin-resistant Staphylococcus aureus, which might persist in the hospital environment for more than eight years, the team suggested.
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