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F di P t ti ll T f tiFunding Potentially Transformative Research (PTR) at the National ( )
Science Foundation
Clifford J. GabrielActing Executive OfficerActing Executive Officer
Directorate for Mathematical and Physical SciencesNational Science Foundation
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NSF Mi iNSF Mission• Advancing scientific discovery• Advancing scientific discovery,
innovation, and education beyond the f ti f t k l d dfrontiers of current knowledge, and empowering future generations in science and engineering
• Through competitive merit-reviewedThrough competitive, merit reviewed grants and cooperative agreements,
i il t i itiprimarily to universities
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Office of Cyberinfrastructure
Office of Equal EmploymentNSF Organizational Chart
Directorand
Deputy Director
National Science Board(NSB)
Office of Equal Employment Opportunity Programs
Office of the General Counsel
Offi f I t ti A ti iti
Office of theInspector General
(OIG)
Deputy Director Office of Integrative Activities
Office of International Science & Engineering
Office of Legislative &(OIG) Office of Legislative &Public Affairs
Office of Polar Programs
Mathematical& PhysicalSciences
Geosciences(GEO)
Engineering(ENG)
Computer &Information Science &
BiologicalSciences Sciences
(MPS)(GEO)(ENG)Engineering
(CISE)(BIO)
Social, Behavioral
& EconomicSciences
Education & Human
Resources
Budget, Finance & Award
Management
Information& Resource ManagementSciences
(SBE) (EHR) (BFA) (IRM)
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NSF PROPOSAL STATISTICS
(FY 2008)$6.08 Billion
(FY 2008)
44,428 proposal actions~248,000 reviews
45 000 reviewers~45,000 reviewers11,149 awards
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NSF Merit Review ProcessNSF Merit Review Process
NSF Minimumof 3
viaDGAAwardNSF
Program
of 3 ReviewsRequired
Proposal Processing
Unit
DGA
f Vis
itors
ProgramOfficer
Analysis&
Recom.
DDReviews
a
Panel
BothNSF
Org/PIs submits via FastLane
omm
ittee
o
Both
Submittingorganization
Decline
NSFProgramOfficer
Co
g
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NSF Merit Review Criteria
• What is the intellectual merit of the proposed activity?
• What are the broader impacts of• What are the broader impacts of the proposed activity?p p y
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Transformative ResearchWorking Definition
• Transformative research involves ideas, discoveries, or tools that radically change , y gour understanding of an important existing scientific or engineering concept orscientific or engineering concept or educational practice or leads to the creation of a new paradigm or field ofcreation of a new paradigm or field of science, engineering, or education. Such research challenges current understanding or provides pathways to new frontiers.p p y
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Transformative ResearchWorking Definition (cont’d.)
• Transformative research results often do not fit within established models or theories and may initially be unexpected or difficult to interpret; their transformativedifficult to interpret; their transformative nature and utility might not be recognized until years lateruntil years later.
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Transformative ResearchWorking Definition (cont’d.)
Characteristics of transformative research are that it:– Challenges conventional wisdom,
Leads to unexpected insights that enable new– Leads to unexpected insights that enable new techniques or methodologies, and/orR d fi th b d i f i– Redefines the boundaries of science, engineering, or education.
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Examples of Transformative Research
Th ti t l d ift d l t fi t t i l d th d t 50• The continental drift model—at first controversial and then proved correct 50 years later based on new analytical methods and sampling of the ocean floor.
• The idea that polar ice sheets could serve as neutrino detectors, originally tested in Greenland.
• The discovery of the widespread exchange of genetic information in the environment, both among microbes and between microbes and higher organisms, which alters evolutionary changes such as in the development of disease resistance.
• The use of magnetic resonance imaging as a tool for monitoring brain function, which greatly expanded the limits of behavioral research.
• The careful refinement of distance measures in the Universe, intended to fine-tune cosmological parameters, which instead gave rise to radically new physics, and the concept of dark energy.
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NSF Supports Potentially pp yTransformative Research or
PTRDon’t know if research is truly
transformational until years after a s o a o a u yea s a einitial support
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NSF’s Approach to Supporting PTR
• Learn how to facilitate PTR
L d th it th h• Lead the community through opportunities for PTR proposal submissions
I f t f P t ti ll• Infuse support of Potentially Transformative Research (PTR) throughout NSF and all its programs
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LearnLearnNational Science Board study (2007)• Need a clear definition of transformative research.• Substantial external perception that NSF does not
support transformative research. • Often does not fit within existing research or centers
programs.• Tends not fare well when a review system is dominated
b t hi hl i t d i t di d iby experts highly invested in current paradigms or during times of limited budgets.
• Recommended the creation of a stand alone• Recommended the creation of a stand alone Transformative Research Initiative.
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LearnLearn
NSF work group on support of PTR (2008)• NSF has a long history of supporting PTR through core
programs and special solicitations• Improvements can be made in training NSF Program
Officers• Improvements can be made in interactions with the
i tifi d i i itiscientific and engineering communities• Need to provide tools and environment to enable
Program Officers to support PTRProgram Officers to support PTR
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PI’s and Reviewer’sViews on PRT at NSF
Results of a 2007 Survey of NSF Proposers• 56% believed to a great or moderate % g
extent that NSF welcomes transformative researchresearch,
• 42% believed to a great or moderate extent that NSF tended to fund transformative research
• 45% would submit transformative proposals to NSFproposals to NSF.
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PI’s and Reviewer’sViews on PRT at NSF
65% believed they had submitted proposals to NSF for transformative p presearch within a three year period. These data are in contrast to the finding that 61%data are in contrast to the finding that 61% of the respondents thought that less than 10% of the proposals they have reviewed10% of the proposals they have reviewed over a three year period constituted transformative research.
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LeadLead
• Notice sent to all NSF supported institutions expressing NSF’s desire to p gsupport PTR (2007)
• Program Officer training associated with• Program Officer training associated with PTR established (2008)
• Outreach to science and engineering communities through “NSF Days,”communities through NSF Days, professional societies, and other university/college visitsuniversity/college visits.
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InfuseInfuse• Core component of NSF’s intellectual p
merit review criterion (2007)How important is the proposed activity to advancingHow important is the proposed activity to advancing knowledge and understanding within its own field or across different fields? How well qualified is the proposer (individual or team) to conduct the project? (If appropriate, the reviewer will comment on the quality of prior work ) To what extent does thequality of prior work.) To what extent does the proposed activity suggest and explore creative, original, or potentially transformative concepts? Howoriginal, or potentially transformative concepts? How well conceived and organized is the proposed activity? Is there sufficient access to resources?
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InfuseInfuse• Panel/reviewer instructions
– Creativity/training on the part of Program Officers
• Solicitations emphasizing PTRp g– Cyber-enabled Discovery and Innovation– Science and Technology Centers– SOLAR– Many others
Offi i R h Di h• Offices in Research Directorates that facilitate the support of PTR– MPS’s Office of Multidisciplinary Activities– BIO’s Emerging Frontiers Division
ENG’s Office of Emerging Frontiers in Research and Innovation– ENG s Office of Emerging Frontiers in Research and Innovation
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InfuseInfuse
• In Fiscal Year 2010, NSF plans to have $92 million (~$2 million per division) to ( p )supplement or provide incentives to support additional PTRsupport additional PTR.
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New Tool: EArly-concept Grants for Exploratory Research (EAGER)
E l t k i it l t t t d• Exploratory work in its early stages on untested, but potentially transformative, research ideas or approachesapproaches
• Radically different approaches, new expertise,Radically different approaches, new expertise, or novel disciplinary or interdisciplinary perspectives
• Budget consistent with project scope and existing programmatic activities (up to $300K for(up to $300K forexisting programmatic activities (up to $300K for (up to $300K for 2 years)2 years)
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More EAGERMore EAGERP Offi l d d• Program Officer approval needed:
PI needs to convince appropriatenessappropriateness forEAGER submission Vs “regular” NSF proposals
• Require internal review/with optional external with optional external inputinput
• 5-8 page project description• No cost extensions/supplements -- existing NSF
policiespolicies
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Earth & EnvironmentBiology
Astronomy ComputingBiology
MaterialsEngineering MathematicsEducation
And so much more!
NSF Research Areas
People & Society PolarNano Physics