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- W2007853289 abstract "By boldly stating a list of fourteen specific Grand Challenges for Engineering, the influential National Academy of Engineering (NAE) has, in effect, set the stage for shaping the next round of major scientific and technological initiatives. In an open electronic publication (Perry et al. 2008), and on a special web site (http://www.engineeringchallenges.org), the authors eloquently describe their rationale for selecting the Grand Challenges. Importantly, these challenges were formulated based entirely on human needs, without being influenced by lesser considerations. These fourteen challenges will undoubtedly influence science and technology policy around the world for the next decade, and set the tone for public scientific discourse. They will likely shape funding priorities of government and non-government agencies. They will help guide strategic planning at universities and research-driven corporations alike. Most significantly, when these challenges are overcome, they will have a far-reaching, transformational effect on the future of humanity.The NAE's 14 Grand Challenges for EngineeringMake solar energy economicalProvide energy from fusionDevelop carbon sequestration methodsManage the nitrogen cycleProvide access to clean waterRestore and improve urban infrastructureAdvance health informaticsEngineer better medicinesReverse-engineer the brainPrevent nuclear terrorSecure cyberspaceEnhance virtual realityAdvance personalized learningEngineer the tools of scientific discovery" @default.
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- W2007853289 date "2009-01-13" @default.
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- W2007853289 title "The Central Role of Neuroinformatics in the National Academy of Engineering’s Grandest Challenge: Reverse Engineer the Brain" @default.
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- W2007853289 doi "https://doi.org/10.1007/s12021-008-9043-9" @default.
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