Addressing widespread diseases caused by contaminated water is critical for achieving the 2030 Agenda. Current efforts fall short in scale, speed and equity, leaving the most vulnerable behind. Any viable solution must function in low-resource settings with limited specialists, transport, laboratory capacity and broadband. Proposals should specify quantifiable biological, social or environmental outcomes, openly discuss potential risks, and present a realistic pathway for long-term maintenance and local ownership beyond short research pilots.
widespread
diseases
caused
contaminated
water
mathematics-logic
Astronomy, cultural practices, wildlife, and human sleep may be affected by large satellite fleets. A workable solution must reconcile connectivity goals with brightness limits, orbital design, and international compliance. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
science-space
satellite
preserving
dark
skies
during
expansion
low-income
communities
solution
technology-computing
economics-resources
climate-environment
society-governance
systems
quantum
infrastructure
safe
Lunar infrastructure and resource extraction could create new strategic inequalities. The challenge is developing rules that enable science and commercial activity while protecting shared interests and preventing territorial competition. The design must remain functional when standards, trade routes, data access, and diplomatic cooperation are unreliable. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
economics-resources
oceania
australia
access
lunar
equitable
scientific
resources
under
geopolitical
fragmentation
create
infrastructure
technology-computing
climate-environment
society-governance
systems
quantum
Lunar infrastructure and resource extraction could create new strategic inequalities. The challenge is developing rules that enable science and commercial activity while protecting shared interests and preventing territorial competition. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
economics-resources
asia
india
lunar
equitable
access
scientific
resources
low-income
communities
create
infrastructure
resource
technology-computing
climate-environment
society-governance
systems
quantum
open
United States, North America
Autonomous spacecraft may make split-second avoidance decisions using imperfect data and proprietary software. The unresolved problem is assigning responsibility, proving fault, and compensating affected parties across jurisdictions. The design must remain functional when standards, trade routes, data access, and diplomatic cooperation are unreliable. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
technology-computing
north-america
united-states
autonomous
spacecraft
liability
collisions
under
geopolitical
fragmentation
data
may
make
economics-resources
climate-environment
society-governance
systems
infrastructure
Autonomous spacecraft may make split-second avoidance decisions using imperfect data and proprietary software. The unresolved problem is assigning responsibility, proving fault, and compensating affected parties across jurisdictions. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
technology-computing
autonomous
spacecraft
liability
collisions
low-income
communities
may
make
split-second
avoidance
economics-resources
climate-environment
society-governance
systems
quantum
infrastructure
science-space
Severe solar storms can disrupt satellites, power grids, navigation, aviation, and communication networks. Future resilience requires better forecasting, hardened systems, coordinated shutdown procedures, and affordable protection for developing countries. Affected communities must have meaningful control over data, revenue, deployment decisions, and the right to refuse harmful applications. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
science-space
protection
space
weather
infrastructure
community
ownership
deployment
severe
solar
technology-computing
economics-resources
climate-environment
society-governance
systems
quantum
safe
without
open
United States, North America
Thousands of satellites may provide connectivity while increasing collision risk, radio interference, light pollution, and disposal complexity. The challenge is creating enforceable coordination and end-of-life standards across commercial and state operators. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
climate-environment
north-america
united-states
managing
orbital
congestion
mega-constellations
low-income
communities
thousands
satellites
may
provide
technology-computing
economics-resources
society-governance
systems
quantum
open
Brazil, South America
Research environments may unintentionally create or amplify resistance traits that escape through waste, personnel, or supply chains. Robust solutions must combine laboratory engineering, surveillance, waste treatment, and international reporting. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
economics-resources
south-america
brazil
supply-chain
resistance
controlling
antimicrobial
synthetic
biology
laboratories
low-income
communities
research
create
technology-computing
climate-environment
society-governance
systems
Industrial agriculture, pollution, and habitat loss may eliminate microorganisms with future medical and ecological value before they are studied. The challenge is creating ethical, distributed microbial conservation infrastructure. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
health-biology
microbial
future
preserving
diversity
medicine
low-income
communities
industrial
agriculture
pollution
technology-computing
economics-resources
climate-environment
society-governance
systems
infrastructure
quantum
AI-designed biological molecules may be created faster than their safety, ecological, and clinical properties can be characterized. The open problem is building evaluation pipelines proportionate to capability and deployment risk. The approach must scale before formal institutions, infrastructure, and land-use systems fully catch up with population growth. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
mathematics-logic
asia
india
ai-designed
standards
proteins
rapidly
urbanizing
regions
deployment
approach
biological
technology-computing
society-governance
economics-resources
climate-environment
systems
infrastructure
AI-designed biological molecules may be created faster than their safety, ecological, and clinical properties can be characterized. The open problem is building evaluation pipelines proportionate to capability and deployment risk. Affected communities must have meaningful control over data, revenue, deployment decisions, and the right to refuse harmful applications. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
mathematics-logic
ai-designed
deployment
standards
proteins
community
ownership
biological
molecules
may
technology-computing
economics-resources
climate-environment
society-governance
systems
infrastructure
quantum
science-space
open
South Africa, Africa
AI-designed biological molecules may be created faster than their safety, ecological, and clinical properties can be characterized. The open problem is building evaluation pipelines proportionate to capability and deployment risk. The design must remain functional when standards, trade routes, data access, and diplomatic cooperation are unreliable. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
mathematics-logic
africa
south-africa
standards
ai-designed
proteins
under
geopolitical
fragmentation
deployment
biological
molecules
technology-computing
economics-resources
climate-environment
society-governance
systems
infrastructure
Large-scale fermentation may compete with food, land, and water if it depends on agricultural inputs. Future systems need safe, affordable, low-carbon feedstocks that do not shift environmental burdens to poorer regions. The solution must produce useful coordination and accountability while minimizing collection of sensitive personal and behavioral data. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
climate-environment
asia
india
feedstocks
biomanufacturing
non-food
mass
surveillance
large-scale
fermentation
may
compete
food
technology-computing
economics-resources
society-governance
systems
without
Large-scale fermentation may compete with food, land, and water if it depends on agricultural inputs. Future systems need safe, affordable, low-carbon feedstocks that do not shift environmental burdens to poorer regions. The design must remain functional when standards, trade routes, data access, and diplomatic cooperation are unreliable. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
climate-environment
asia
india
feedstocks
biomanufacturing
non-food
under
geopolitical
fragmentation
large-scale
fermentation
may
compete
technology-computing
economics-resources
society-governance
systems
infrastructure
Large-scale fermentation may compete with food, land, and water if it depends on agricultural inputs. Future systems need safe, affordable, low-carbon feedstocks that do not shift environmental burdens to poorer regions. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
climate-environment
feedstocks
biomanufacturing
non-food
low-income
communities
large-scale
fermentation
may
compete
food
technology-computing
economics-resources
society-governance
systems
infrastructure
quantum
safe
open
Brazil, South America
Genomic medicine could improve treatment while enabling insurers, employers, states, or platforms to infer sensitive traits. The challenge is ensuring people benefit from precision medicine without losing control over biological information. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
technology-computing
south-america
brazil
medicine
personalized
genetic
discrimination
low-income
communities
genomic
improve
treatment
while
economics-resources
climate-environment
society-governance
systems
quantum
Engineered microbes, insects, crops, and gene drives may offer major ecological benefits but could spread beyond intended boundaries. The unresolved problem is developing reversible, monitorable, and internationally governed release frameworks. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
mathematics-logic
release
engineered
safe
environmental
organisms
low-income
communities
microbes
insects
crops
technology-computing
economics-resources
climate-environment
society-governance
systems
quantum
infrastructure
open
Brazil, South America
Future outbreaks may involve pathogens for which no profitable commercial market exists. A useful solution requires distributed manufacturing, adaptable platforms, pre-negotiated procurement, and equitable access before an outbreak occurs. The solution must work with limited capital, intermittent services, and local maintenance capacity. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
economics-resources
south-america
brazil
manufacturing
pathogens
market
rapid
vaccine
existing
low-income
communities
solution
future
technology-computing
climate-environment
society-governance
systems
quantum
Biological design tools are becoming more accessible while oversight remains fragmented across countries and institutions. The challenge is detecting dangerous activity without suppressing legitimate research or creating an intrusive global surveillance system. The solution must produce useful coordination and accountability while minimizing collection of sensitive personal and behavioral data. The research opportunity is to define measurable success criteria, test the approach in realistic settings, identify failure modes, and create a pathway from prototype to accountable deployment.
mathematics-logic
asia
india
surveillance
monitoring
synthetic
biology
risk
mass
while
research
biological
technology-computing
society-governance
climate-environment
economics-resources
systems
without