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Michael Levitt and co-laureates developed a method for fusing large-scale classical computing models with small-scale quantum models. Their Nobel-winning work has improved predictions of chemical processes. #Basic2Breakthrough science.osti.gov/About/Honor…
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Donna Strickland co-developed chirped pulse amplification – ultrashort-pulse, high-intensity laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision laser technique. #Basic2Breakthrough @UWaterloo @UofR: nobelprize.org/womenwhochang…
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Who will be the next @DOE Nobel laureate? John Goodenough developed layered oxides to make cathodes for lithium ion batteries – achieving safe, high-density storage in rechargeable batteries. @UTAustin @eeregov #Basic2Breakthrough: energy.gov/science/articles/…
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Gérard Mourou co-developed chirped pulse amplification – stretched, amplified, then compressed laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision technique. #Basic2Breakthrough #Nobel @Umich @UofR science.osti.gov/About/Honor…
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Jennifer A. Doudna developed CRISPR/Cas9, using part of the bacterial immune system as a tool that could be used to cut DNA molecules as desired for new weapons in the fight against genetic diseases. #Nobel #Basic2Breakthrough @UCBerkeley @BerkeleyLab science.osti.gov/About/Honor…
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Congrats to @TAMUChemistry's @SarbajitBanerj1 and the entire REMIND team on this incredible first for @TAMU that began years ago as an X-grant -- whoop! #Basic2Breakthrough #BeCurious
#TAMU is set to lead its first @ENERGY-funded Energy Frontier Research Center to focus on REMIND, an initiative that strives to transform computing to behave more like a human brain for rapid & efficient processing. #DOEfunded Read more: tx.ag/EFRCBrainLikeComputing
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Donna Strickland co-developed chirped pulse amplification – ultrashort-pulse, high-intensity laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision laser technique. #Basic2Breakthrough @UWaterloo @UofR science.osti.gov/About/Honor…
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Michael Levitt and co-Laureates developed a method for fusing large-scale classical computing models with small-scale quantum models. Their Nobel-winning work has improved predictions of chemical processes. #Basic2Breakthrough #Chemistry science.osti.gov/About/Honor…
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Gérard Mourou co-developed chirped pulse amplification – stretched, amplified, then compressed laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision technique. #Basic2Breakthrough #Nobel @Umich @UofR science.osti.gov/About/Honor…
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Who will be the next @ENERGY Nobel laureate? #DYK John Goodenough developed layered oxides to make cathodes for lithium ion batteries – achieving safe, high-density storage in rechargeable batteries. @UTAustin @eeregov #Basic2Breakthrough science.osti.gov/About/Honor…
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Jennifer A. Doudna developed CRISPR/Cas9, using part of the bacterial immune system as a tool that could be used to cut DNA molecules as desired for new weapons in the fight against genetic diseases. #Nobel #Basic2Breakthrough @UCBerkeley @BerkeleyLab science.osti.gov/About/Honor…
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Michael Levitt and co-Laureates developed a method for fusing large-scale classical computing models with small-scale quantum models. Their Nobel-winning work has improved predictions of chemical processes. #Basic2Breakthrough #Chemistry science.osti.gov/About/Honor…
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Donna Strickland co-developed chirped pulse amplification – ultrashort-pulse, high-intensity laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision laser technique. #Basic2Breakthrough @UWaterloo @UofR science.osti.gov/About/Honor…
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Who will be the next @ENERGY Nobel laureate? #DYK John Goodenough developed layered oxides to make cathodes for lithium ion batteries – achieving safe, high-density storage in rechargeable batteries. @UTAustin @eeregov #Basic2Breakthrough science.osti.gov/About/Honor…
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Gérard Mourou co-developed chirped pulse amplification – stretched, amplified, then compressed laser pulses that do not destroy the amplifying material. Millions of eye surgeries now use this precision technique. #Basic2Breakthrough #Nobel @Umich @UofR science.osti.gov/About/Honor…
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Jennifer A. Doudna developed CRISPR/Cas9, using part of the bacterial immune system as a tool that could be used to cut DNA molecules as desired for new weapons in the fight against genetic diseases. #Nobel #Basic2Breakthrough @UCBerkeley @BerkeleyLab science.osti.gov/About/Honor…
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What do artificial intelligence, quantum information science, microelectronics, 5G, and low-carbon solutions have in common? They're all technologies of the future that rely on advances in discovery science supported by @ENERGY. #Basic2Breakthrough youtube.com/watch?v=v942xxcJ…
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Congrats to Dr. Ryder, Dr. Zhou and @TAMUChemistry doctoral students and Department of Energy Office of Science Graduate Student Research (SCGSR) Program Fellows Greg Day and Hannah Drake -- whoop! @doescience #Basic2Breakthrough #BeCurious
We are delighted to have our research on controlled templation featured on the front cover of @CGD_ACS! Work by my past student (Dr. Greg Day) and current student (Hannah Drake) co-supervised with @TAMUChemistry and Prof. Hongcai Zhou (@GroupZhou) #Science pubs.acs.org/doi/abs/10.1021…
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What does the "quantum revolution" really mean? @ORNL breaks down how their researchers are leading the way in four key areas of quantum research that will power the next generation of science and tech. #Basic2Breakthrough youtube.com/watch?v=Lx9F1ZU9…
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Quantum physics is all about the small, but we're making large investments! @ENERGY announced $61 M for scientific infrastructure & research to advance quantum information science, create quantum devices, and develop a quantum internet. #Basic2Breakthrough energy.gov/articles/us-depar…
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