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U.S. National Science Foundation

Directorate for Mathematical and Physical Sciences
     Division of Astronomical Sciences
     Division of Chemistry
     Division of Materials Research
     Division of Mathematical Sciences
     Division of Physics

Full Proposal Deadline(s) (due by 5 p.m. submitting organization’s local time):

     April 17, 2025

     January 22, 2026

     Fourth Thursday in January, Annually Thereafter

Important Information And Revision Notes

Given the February 2025 release of the first phase of the Carnegie Classification, the eligibility criterion for institutions applying to the NSF solicitation 25-535 is “Institutions not currently classified in the category Research 1: Very High Spending and Doctorate Production”. Please see the program webpage for additional information.

Annual submission deadlines have been changed.

The program synopsis, project description, additional solicitation-specific criteria have been modified.

Any proposal submitted in response to this solicitation should be submitted in accordance with the NSF Proposal & Award Policies & Procedures Guide (PAPPG) that

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RSS feed source: National Science Foundation

Synopsis

Infrastructure systems comprise complex connections between physical components, organizational structures and operational methods that support the needs of people and communities at the local, regional, national, and global scales.  Such systems form the backbone of society, providing essential services as well as ensuring public health and welfare, economic prosperity and national security, and are expected to function under all operational conditions. 

Meanwhile, infrastructure systems are capital intensive and vulnerable to disruptions from extreme events, including natural disasters, social crises, and malicious attacks. Disruptions in one system can have cascading impacts on others in space and over time. Moreover, short- versus long-term trade-offs, unintended consequences, and maladaptation are not often accounted for. How systems function at the “extreme,” which can be due to disruptors from the introduction of innovation, the convergence of technologies, sudden changes to their utilization and access, dramatic changes in operating

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The U.S. National Science Foundation (NSF) has announced six major awards through its EPSCoR Research Infrastructure Improvement Program: Focused EPSCoR Collaborations (FEC), investing $29.2 million across 11 jurisdictions to strengthen research capacity and drive translational research across the nation.

These four-year awards aim to catalyze transformative research and infrastructure enhancement in states historically underfunded in federal research. The selected projects span critical areas, including use-inspired research in the study of Earth systems, wildfire management, water resource management, ecosystem and human health risks, functionality of electronic devices, biotechnology and artificial intelligence-driven health care.

“These EPSCoR FEC awards are an example of NSF’s commitment to ensuring that all states and jurisdictions across the United States have the opportunity to be part of our research enterprise and benefit from the jobs and economic prosperity that result from American innovation,” said Brian Stone, performing the duties of the NSF director. “These multi-state collaborative teams are tackling real-world research challenges that matter to the citizens of their regions while also building competitive research environments for the entire nation.”

This year’s FEC awards include:

Optical properties of mineral dust aerosols: Building capacity for use-inspired applications through experimental and theoretical investigations (Nevada System of Higher Education – Desert Research Institute, University of Oklahoma Norman Campus and University of Wyoming) Mineral dust aerosols are significant in the atmosphere, affecting radiative forcing, ecosystem fertilization,

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The U.S. National Science Foundation Directorate for Technology, Innovation and Partnerships (NSF TIP) announced an inaugural investment of nearly $32 million to five teams across the U.S. through the NSF Use-Inspired Acceleration of Protein Design (NSF USPRD) initiative. This effort aims to accelerate the translation of artificial intelligence-based approaches to protein design and enable new applications of importance to the U.S. bioeconomy.

“NSF is pleased to bring together experts from both industry and academia to confront and overcome barriers to the widespread adoption of AI-enabled protein design,” said Erwin Gianchandani, NSF assistant director for TIP. “Each of the five awardees will focus on developing novel approaches to translate protein design techniques into practical, market-ready solutions. These efforts aim to unlock new uses for this technology in biomanufacturing, advanced materials, and other critical industries. Simply put, NSF USPRD represents a strategic investment in maintaining American leadership in biotechnology at a time of intense global competition.”

Researchers have made significant progress in predicting the 3D structures of proteins and are now leveraging this knowledge to design proteins with specific, desirable characteristics. These advances have been driven by macromolecular modeling, access to training data, applications of AI and machine learning, and high-throughput methods for protein characterization. The NSF USPRD investment seeks to build on this foundation by bringing together cross-disciplinary and cross-sector experts nationwide. The goal is to

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