1,000+ Opportunities
Find the right grant
Search federal, foundation, and corporate grants with AI — or browse by agency, topic, and state.
This listing may be outdated. Verify details at the official source before applying.
Find similar grantsThis program supports innovative ways of communicating scientific outcomes of place-based research projects on pathways for sustainability to educate and engage with non-academic audiences.
Get a weekly digest of new grants like this
A free weekly digest of new foundation and federal funding opportunities as they're added to Granted. Unsubscribe anytime.
Or search similar grants →According to the current listing, eligibility includes: Researchers, including PhD students, affiliated with universities and/or research institutions. Projects must be led by a researcher. Confirm the full requirements in the official notice before applying.
Pathways Communication Grants Program is funded by Future Earth Pathways Initiative. Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
Past winners and funding trends for this program
Grand Challenge on Quantum Sensors for Inertial Navigation is sponsored by European Commission — Horizon Europe. Expected Outcome: This topic is the first phase of a two-phase competitive structure supported by Horizon Europe, implemented via a Coordination and Support Action (CSA) in close collaboration with the European Investment Bank (EIB). Phase 1 (this topic): A CSA focused on readiness-analysis in terms of exploitation and investments, benchmarking the commercial viability of quantum enabled navigation systems. The aim is to deliver concrete outputs that improve the conditions for use of the supported projects through credible technical, industrialisation and financial roadmaps, validated against investor requirements (e.g. EIB, InvestEU). Activities also include analyses of investor-readiness and supply-chain sovereignty. Phase 2: For further information, see the indirectly managed action “HORIZON-CL4 Quantum Top-Up to InvestEU: Grand Challenge Phase 2” in the Cluster 4 part of the Horizon Europe 2026/2027 Work Programme. This CSA is designed to allow the best possible application in Phase 2 and the current CSA results may therefore inform applications by beneficiaries to investment support managed by the EIB under InvestEU (separate procedures). Under Phase 1 projects are expected to establish a comprehensive technical and financial roadmap that demonstrates the potential of the proposed Q-INS solutions, and at least deliver evidence-based design and benchmarking packages for reduced-scale systems ( such as documentation, test/benchmark reports and evidence of pre-existing or externally financed prototypes) in one of the following two categories: Category 1 (cold-atoms Q-INS) : Q-INS based on cold-atom interferometry (or other technology of at least equivalent performance) featuring long-term navigation accuracy (<10 m/hour) due to reduced drift with respect to commercial Inertial Measurement Units (IMUs). End-user requirements together with documented benchmark evidence from existing or externally financed prototypes will be collected for demonstrations in maritime or aviation applications. Category 2 ( Chip-scale Q-INS ): Low C-SWAP Q-INS measuring acceleration, rotation rate, and/or magnetic field, aimed at the implementation of chip-scale sensors based on defect centres and vacancies in crystals or on warm atomic vapours (including nuclear magnetic resonance), for applications e.g. in small satellites, UAVs, and autonomous transport. Proposals should target systems that are already sufficiently mature to enable credible benchmarking and industrial road-mapping. Specific expected outcomes include: A detailed technical roadmap, including system architecture, integration strategy, performance milestones, risk assessments and industrialisation plan for scalable production The industrialisation plan should be validated in conjunction with the EIB requirements, including commercialization timelines, and should include at least the following: Detailed Q-INS architecture based on quantum sensing techniques hybridised with classical IMUs, Compliance assessment for SWaP-C requirements, environmental resilience, and real-world integration, An assessment of dependencies on non-EU suppliers of critical components and proposal of effective mitigation measures in view of a sovereign supply chain, Potential list of end-users to capture system requirements and use-case constraints A comprehensive financial roadmap and viability assessment covering business models, market analyses, commercialization pathways, revenue projections and investment criteria Documented lab-validation/benchmarking of an existing or externally financed prototype (no EU funding of R&I or prototype development in this CSA), with preliminary benchmark results. An application strategy identifying target sectors (maritime, aviation, space, autonomous systems) and quantifiable advantages over classical IMUs. Scope: The Grand Challenge on Quantum Sensors for Inertial Navigation aims to advance the development of quantum-enabled navigation systems for use in GNSS-deni Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space Keywords: Quantum Technologies (e.g. computing and communication), EuroHPC, Quantum Inertial Navigation, Quantum Technologies
The Engineering & Technical Career Readiness MicroGrant 2026 from eGrove Education awards five educational institutions across the United States and Canada an in-kind package valued at up to $35,000 each: a free site license for the Spatial Vis technical sketching and spatial visualization training software (covering up to 2,000 students), virtual professional development for implementing educators, and ongoing support for a full school year. Spatial visualization is the ability to think in 3D and is a foundational, often undertaught skill for engineering, CAD, drafting, design, advanced manufacturing, skilled trades, architecture, and construction pathways. eGrove Education reports that a controlled classroom trial showed students using Spatial Vis increased visualization ability and comfort with CAD and shop tools, and improved their ability to communicate design ideas. Through this MicroGrant the company seeks to expand access to research-based instructional tools that strengthen engineering and technical education and workforce readiness. Applications are open to middle schools, high schools, CTE programs, community colleges, and other educational institutions preparing students for engineering and technical career pathways. The application is a short online form. Submissions are due October 5, 2026 (extended from the original September 28, 2026 deadline), and winners will be announced in mid-October 2026. Note that this is an in-kind product-and-services award (software, professional development, and implementation support), not a cash grant.
Future CoRe (NSF 25-543) advertises $280 million and 400 to 600 awards across 11 programs, with a September 10, 2026 target date. The directorate behind it is running 43 percent below its own four-year average, $1 billion of NSF's budget is locked in a central account, and the two-proposal cap is enforced with no exceptions. Here is how to read the gap between what the solicitation promises and what the directorate is actually paying for.
Read articleNSF 26-516 folds Atmospheric and Geospace Sciences, Earth Sciences and Ocean Sciences into a single GEO Core solicitation: $110 million, 200 to 350 awards, proposals accepted anytime. Geosciences piloted no-deadline review nine years ago and knows what it does to submission volume. Here is the per-award math, the ship-time and permitting traps, and the two-year data-archive clock that now governs every award.
Read articleThe Department of Energy's Office of Critical Minerals and Energy Innovation is spending to break America's 95% dependence on foreign rare earths. The strategy is unusual: recover critical materials from the waste streams of coal plants, smelters, and refineries that already exist. Here is the full funding architecture — the $75M just awarded, the $500M battery-materials round, the $1B pipeline behind them — and how an industrial operator should position for what comes next.
Read article