island nations facing disappearance remains one of the most urgent challenges of our time. Systems currently in place are inadequate for the scale and complexity of the problem. A successful approach must work where resources are scarcest and demonstrate clear, measurable results. It should identify possible harms, respect local agency, and show how the solution can be maintained and expanded by the communities it is meant to serve.
successful
island
nations
facing
disappearance
other
Urban planning models often omit informal homes, businesses, infrastructure, and social networks. The unresolved problem is creating useful digital representations without enabling eviction, surveillance, or land speculation. 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.
local-regional
urban-planning
digital
informal
twins
accurately
represent
neighborhoods
low-income
communities
urban
planning
technology-computing
economics-resources
climate-environment
society-governance
systems
infrastructure
Addressing indigenous peoples losing their land 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.
indigenous
peoples
losing
land
2030
mathematics-logic
Addressing deserts expanding into farmland 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.
deserts
expanding
farmland
2030
developing
mathematics-logic
The problem of disappearance of wetlands continues to affect hundreds of millions of people and undermines progress on multiple Sustainable Development Goals. Existing responses remain fragmented, under-resourced and poorly adapted to local contexts. A strong solution must operate effectively under severe constraints of skilled personnel, infrastructure, electricity and connectivity. It should define clear measurable outcomes, identify possible unintended harms, and demonstrate how the intervention can be sustained by local institutions long after initial funding ends.
disappearance
wetlands
developing
scalable
systems
other
single-use plastic bottles flooding landfills remains one of the most urgent challenges of our time. Systems currently in place are inadequate for the scale and complexity of the problem. A successful approach must work where resources are scarcest and demonstrate clear, measurable results. It should identify possible harms, respect local agency, and show how the solution can be maintained and expanded by the communities it is meant to serve.
successful
single
use
plastic
bottles
climate-environment
If people live substantially longer, societies will need new models for work, learning, housing, dependency, and end-of-life care. Existing systems are not designed for decades of post-retirement life or multiple phases of dependency. 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.
social-civic-problems
asia
thailand
care
infrastructure
extreme
longevity
mass
surveillance
dependency
people
live
substantially
technology-computing
economics-resources
climate-environment
society-governance
systems
If people live substantially longer, societies will need new models for work, learning, housing, dependency, and end-of-life care. Existing systems are not designed for decades of post-retirement life or multiple phases of dependency. 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
asia
thailand
care
infrastructure
extreme
longevity
under
geopolitical
fragmentation
dependency
people
live
technology-computing
climate-environment
systems
society-governance
quantum
open
United States, North America
As digital navigation layers become permanent fixtures in daily life, physical landmarks lose meaning and people lose the ability to orient themselves without screens. The challenge is creating systems or practices that preserve spatial awareness and independent wayfinding while still allowing beneficial digital tools. Solutions must work across cultures, age groups, and infrastructure levels, avoid creating new dependencies, and remain usable when networks fail.
digital
physical
navigation
preventing
erosion
technology-computing
Urban growth, migration, and climate change will outpace traditional master planning. The challenge is designing governance that can revise land use, service delivery, and infrastructure priorities continuously without becoming arbitrary. This becomes particularly difficult in post-conflict institutions, because public institutions must remain fair, resilient, and accountable while adapting to new risks.
society-governance
asia
bangladesh
climate-change
institutions
governance
change
post-conflict
building
cities
faster
plans
urban
growth
public
climate-environment
systems
conflict
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
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
Digitizing land records can improve access while also enabling new forms of fraud, corruption, and system failure. The challenge is designing registry governance that protects ownership claims, customary rights, and dispute resolution over decades. The challenge is especially acute in informal settlements, where legacy systems, coordination failures, and weak oversight can magnify harm.
society-governance
europe
germany
land
fraud
informal
settlements
making
registries
resilient
against
data
loss
systems
technology-computing
public
across
climate-environment
As heat, flooding, drought, and erosion intensify, some communities will need to move. The challenge is designing relocation policy that protects land rights, livelihoods, identity, and consent rather than turning climate adaptation into forced displacement. The challenge is especially acute in informal settlements, where legacy systems, coordination failures, and weak oversight can magnify harm.
climate-environment
climate
relocation
informal
settlements
governance
dispossession
heat
flooding
drought
erosion
society-governance
systems
technology-computing
across
public
migration
Achieving methods for restoring the health of soils degraded by salinization and contamination at meaningful scale demands simultaneous progress in fundamental research, engineering integration and socio-technical systems that work for low- and middle-income settings. Existing efforts remain fragmented relative to the magnitude of the challenge.
economics-resources
europe
poland
methods
restoring
health
soils
degraded
salinization
contamination
scalable
solutions
achieving
climate-environment
systems
society-governance
designs
health-biology
Achieving mechanisms for rapid, transparent and equitable allocation of climate loss and damage finance at meaningful scale demands simultaneous progress in fundamental research, engineering integration and socio-technical systems that work for low- and middle-income settings. Existing efforts remain fragmented relative to the magnitude of the challenge.
climate-environment
europe
netherlands
mechanisms
rapid
transparent
equitable
allocation
climate
loss
damage
finance
systemic
economics-resources
systems
society-governance
solutions
ensuring
open
Colombia, South America
A persistent gap exists in realizing practical, scalable solutions for methods for restoring the carbon and biodiversity values of degraded peatlands and wetlands. Scientific understanding, engineering readiness and institutional capacity remain insufficient to translate promising concepts into durable impact under real-world constraints of cost, skills and governance.
society-governance
south-america
colombia
biodiversity
methods
restoring
carbon
values
degraded
peatlands
wetlands
overcoming
barriers
solutions
systems
climate-environment
scalable
practical
open
Solomon Islands, Oceania
The absence of robust, context-adapted solutions for cryptographically private national-scale health data analytics creates cascading risks across interconnected human and natural systems. Key missing elements include durable performance, low lifetime cost, and governance arrangements capable of sustaining impact beyond pilot stages.
society-governance
oceania
solomon-islands
cryptographically
private
national-scale
health
data
analytics
development
absence
robust
context-adapted
solutions
systems
climate-environment
methods
governance