/**/eventsLoaded([{"total":5255,"nid":"46511","tid":"846","vid":"tags","category":null,"name":"HPC, Simulation, and Data Science","title":"Manufacturing, energy initiative to fund 11 new projects","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/manufacturing-energy-initiative-fund-11-new-projects","pub_date":"June 22, 2020","terms":"851:Computing,946:HPC Innovation Center,846:HPC, Simulation, and Data Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46511\/manufacturing-energy-initiative-fund-11-new-projects","alias_path":"\/article\/46511\/manufacturing-energy-initiative-fund-11-new-projects","body_value":"The U.S. Department of Energy (DOE) today announced the recipients of the fall 2019 awards for the High Performance Computing for Energy Innovation (HPC4EI) initiative, including four newly funded projects led out of Lawrence Livermore National Laboratory. The 11 projects selected for a total of $3.3 million in funding under the High Performance Computing for Manufacturing\u2026","body_mini_value":"The U.S. Department of Energy (DOE) today announced the recipients of the fall 2019 awards for the High Performance Computing for Energy\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/HPC4E875x500px.jpg?itok=EbPqEiA_","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/HPC4E875x500px.jpg?itok=UnS9V_H0","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/HPC4E875x500px.jpg?itok=Ll0gF9at","alt":"HPC4EI Project"},{"total":5255,"nid":"46506","tid":"846","vid":"tags","category":null,"name":"HPC, Simulation, and Data Science","title":"Lab breaks ground for exascale facility upgrades","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/lab-breaks-ground-exascale-facility-upgrades","pub_date":"June 22, 2020","terms":"851:Computing,846:HPC, Simulation, and Data Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46506\/lab-breaks-ground-exascale-facility-upgrades","alias_path":"\/article\/46506\/lab-breaks-ground-exascale-facility-upgrades","body_value":"To meet the needs of tomorrow\u2019s supercomputers, the National Nuclear Security Administration\u2019s (NNSA\u2019s) Lawrence Livermore National Laboratory (LLNL) has broken ground on its Exascale Computing Facility Modernization (ECFM) project, which will substantially upgrade the mechanical and electrical capabilities of the Livermore Computing Center. The upgrades will enable the\u2026","body_mini_value":"To meet the needs of tomorrow\u2019s supercomputers, the National Nuclear Security Administration\u2019s (NNSA\u2019s) Lawrence Livermore National\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/computingFacility_875x500px.jpg?itok=SdeOpkjW","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/computingFacility_875x500px.jpg?itok=wQ5Hqss9","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/computingFacility_875x500px.jpg?itok=Ofu8ao6p","alt":"HPC"},{"total":5255,"nid":"46501","tid":"881","vid":"tags","category":null,"name":"Physical and Life Sciences","title":"New way to study how elements mix in giant planets","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/new-way-study-how-elements-mix-giant-planets","pub_date":"June 19, 2020","terms":"896:Lasers,891:Lasers and Optical S\u0026T,901:National Ignition Facility and Photon Science,881:Physical and Life Sciences","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46501\/new-way-study-how-elements-mix-giant-planets","alias_path":"\/article\/46501\/new-way-study-how-elements-mix-giant-planets","body_value":"There are giants among us \u2014 gas and ice giants, to be specific. They orbit the same star, but their environmental conditions and chemical makeup are wildly different from those of Earth. These enormous planets \u2014 Jupiter, Saturn, Neptune and Uranus \u2014 can be seen as natural laboratories for the physics of matter at extreme temperatures and pressures. Now, an international\u2026","body_mini_value":"There are giants among us \u2014 gas and ice giants, to be specific. They orbit the same star, but their environmental conditions and chemical\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/mec_xrts_875x500r.jpg?itok=Q7dSKkcS","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/mec_xrts_875x500r.jpg?itok=W3RKn2qa","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/mec_xrts_875x500r.jpg?itok=oxmA8sVG","alt":"shock wave"},{"total":5255,"nid":"46496","tid":"496","vid":"tags","category":null,"name":"Biosciences and Biotechnology","title":"Signaling breast cancer metastasis","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/signaling-breast-cancer-metastasis","pub_date":"June 18, 2020","terms":"761:Bioscience and Bioengineering,496:Biosciences and Biotechnology,881:Physical and Life Sciences","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46496\/signaling-breast-cancer-metastasis","alias_path":"\/article\/46496\/signaling-breast-cancer-metastasis","body_value":"Metastasis accounts for approximately 90 percent of mortality in breast cancer patients. During the last few decades, there has been significant progress in understanding genetic, molecular and signaling mechanisms underpinning cancer cell migration. Biologists from Lawrence Livermore National Laboratory (LLNL) found another mechanism that affects the maintenance and\u2026","body_mini_value":"Metastasis accounts for approximately 90 percent of mortality in breast cancer patients. During the last few decades, there has been\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/breastCancerCells_875x500px4.jpg?itok=U-vjhGgG","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/breastCancerCells_875x500px4.jpg?itok=wu_JdLE6","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/breastCancerCells_875x500px4.jpg?itok=SemgKS1p","alt":"breast cancer cells"},{"total":5255,"nid":"46491","tid":"846","vid":"tags","category":null,"name":"HPC, Simulation, and Data Science","title":"Deep learning-based surrogate models outperform simulators and could hasten scientific discoveries","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/deep-learning-based-surrogate-models-outperform-simulators-could-hasten-scientific","pub_date":"June 17, 2020","terms":"851:Computing,846:HPC, Simulation, and Data Science,896:Lasers,891:Lasers and Optical S\u0026T,901:National Ignition Facility and Photon Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46491\/deep-learning-based-surrogate-models-outperform-simulators-could-hasten-scientific-discoveries","alias_path":"\/article\/46491\/deep-learning-based-surrogate-models-outperform-simulators-could-hasten-scientific-discoveries","body_value":"Surrogate models supported by neural networks can perform as well, and in some ways better, than computationally expensive simulators and could lead to new insights in complicated physics problems such as inertial confinement fusion (ICF), Lawrence Livermore National Laboratory (LLNL) scientists reported. In a paper published by the Proceedings of the National Academy of\u2026","body_mini_value":"Surrogate models supported by neural networks can perform as well, and in some ways better, than computationally expensive simulators and\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/LLNL_ICF_875x500r.jpg?itok=oS-rF8Ew","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/LLNL_ICF_875x500r.jpg?itok=HmueUOhO","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/LLNL_ICF_875x500r.jpg?itok=mJLKQ5A_","alt":"icf"},{"total":5255,"nid":"46486","tid":"336","vid":"tags","category":null,"name":"Physics","title":"Experiments expose how powerful magnetic fields are generated in the aftermath of supernovae","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/experiments-expose-how-powerful-magnetic-fields-are-generated-aftermath-supernovae","pub_date":"June 16, 2020","terms":"896:Lasers,891:Lasers and Optical S\u0026T,901:National Ignition Facility and Photon Science,881:Physical and Life Sciences,336:Physics","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46486\/experiments-expose-how-powerful-magnetic-fields-are-generated-aftermath-supernovae","alias_path":"\/article\/46486\/experiments-expose-how-powerful-magnetic-fields-are-generated-aftermath-supernovae","body_value":"In a paper recently published by Physical Review Letters, a team of researchers including scientists from Lawrence Livermore National Laboratory (LLNL) detail the first quantitative measurements of the magnetic field structure of plasma filamentation driven by the Weibel instability, using a novel optical Thompson scattering technique. These experiments study the processes\u2026","body_mini_value":"In a paper recently published by Physical Review Letters, a team of researchers including scientists from Lawrence Livermore National\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/supernova875.jpg?itok=yu3VdjVW","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/supernova875.jpg?itok=p_2hYnkM","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/supernova875.jpg?itok=VCIoPeOV","alt":"supernova"},{"total":5255,"nid":"46481","tid":"856","vid":"tags","category":null,"name":"Community Outreach","title":"Lawrence Livermore National Security accepting applications for 2020 Community Gift Program","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/lawrence-livermore-national-security-accepting-applications-2020-community-gift","pub_date":"June 15, 2020","terms":"856:Community Outreach","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46481\/lawrence-livermore-national-security-accepting-applications-2020-community-gift-program","alias_path":"\/article\/46481\/lawrence-livermore-national-security-accepting-applications-2020-community-gift-program","body_value":"Lawrence Livermore National Security, LLC (LLNS) is now accepting applications for its annual Community Gift Program for 2020. Established in 2008, the LLNS Community Gift Program provides annual awards to support nonprofit organizations addressing STEAM (science, technology, engineering, arts and mathematics) education, community service and philanthropic needs of local\u2026","body_mini_value":"Lawrence Livermore National Security, LLC (LLNS) is now accepting applications for its annual Community Gift Program for 2020\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/llns-51371.jpg?itok=qfcXY3hC","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/llns-51371.jpg?itok=ZdiOyABH","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/llns-51371.jpg?itok=MD6vo5uF","alt":"LLNS"},{"total":5255,"nid":"46476","tid":"911","vid":"tags","category":null,"name":"Industry Collaborations","title":"DOE announces COVID-19 innovation portal and assistance program","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/doe-announces-covid-19-innovation-portal-assistance-program","pub_date":"June 12, 2020","terms":"911:Industry Collaborations,916:Technology Transfer","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46476\/doe-announces-covid-19-innovation-portal-assistance-program","alias_path":"\/article\/46476\/doe-announces-covid-19-innovation-portal-assistance-program","body_value":"The Department of Energy\u2019s (DOE\u2019s) Office of Technology Transitions has announced new resources for innovators to combat COVID-19 through its Lab Partnering Service (LPS) and the COVID-19 Technical Assistance Program (CTAP). Supported by DOE\u2019s Office of Technology Transitions (OTT), these initiatives will allow America\u2019s innovators to readily access vital resources and\u2026","body_mini_value":"The Department of Energy\u2019s (DOE\u2019s) Office of Technology Transitions has announced new resources for innovators to combat COVID-19 through\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/IPO875.jpg?itok=_dsiSfUr","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/IPO875.jpg?itok=RgsDSfd0","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/IPO875.jpg?itok=26Qn4Hbb","alt":"IPO"},{"total":5255,"nid":"46471","tid":"161","vid":"tags","category":null,"name":"Engineering","title":"Modeling neuronal cultures on \u0027brain-on-a-chip\u0027 devices","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/modeling-neuronal-cultures-brain-chip-devices","pub_date":"June 12, 2020","terms":"761:Bioscience and Bioengineering,496:Biosciences and Biotechnology,161:Engineering,881:Physical and Life Sciences","alias":"http:\/\/contenthub.llnl.gov\/\/article\/46471\/modeling-neuronal-cultures-brain-chip-devices","alias_path":"\/article\/46471\/modeling-neuronal-cultures-brain-chip-devices","body_value":"For the past several years, Lawrence Livermore National Laboratory (LLNL) scientists and engineers have made significant progress in development of a three-dimensional \u201cbrain-on-a-chip\u201d device capable of recording neural activity of human brain cell cultures grown outside the body. Now, LLNL researchers have a way to computationally model the activity and structures of\u2026","body_mini_value":"For the past several years, Lawrence Livermore National Laboratory (LLNL) scientists and engineers have made significant progress in\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2020-06\/chip_875x500px.jpg?itok=8LemQaeg","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2020-06\/chip_875x500px.jpg?itok=ngVPG4Oh","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2020-06\/chip_875x500px.jpg?itok=uFRSM4pG","alt":"chip"}]);