The problem of open science remaining incomplete 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.
sustainable
open
science
remaining
incomplete
other
Addressing citizen science remaining limited 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.
limited
capacity
citizen
science
remaining
mathematics-logic
The problem of western science dominating 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.
western
science
dominating
scaling
successful
other
AI and laboratory automation can identify promising compounds that fail during scale-up, processing, or deployment. The open problem is connecting discovery models to cost, supply, safety, and lifecycle constraints. 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
discovery
materials
systems
predict
real-world
manufacturability
low-income
communities
identify
deployment
economics-resources
climate-environment
society-governance
quantum
infrastructure
science-space
governance
Advanced nanomaterials may enter clothing, food packaging, medicine, construction, and electronics before their long-term environmental behavior is understood. The unresolved problem is lifecycle risk assessment and transparent public regulation. 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.
society-governance
safe
nanomaterial
governance
consumer
products
low-income
communities
advanced
nanomaterials
may
technology-computing
economics-resources
climate-environment
systems
quantum
infrastructure
science-space
Many future products will use composites, coatings, adhesives, and additives that make recycling technically or economically impossible. The challenge is creating high-performance materials whose full lifecycle is designed from the beginning. 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
materials
designing
recyclable
default
low-income
communities
future
products
will
composites
technology-computing
climate-environment
society-governance
systems
quantum
infrastructure
science-space
States may increasingly use prediction to allocate policing, welfare, migration, health, and education resources. Future rights frameworks must address errors, feedback loops, opacity, and the danger of being treated as a probability rather than a person. 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.
social-civic-problems
rights
constitutional
people
governed
predictive
systems
low-income
communities
must
states
technology-computing
economics-resources
climate-environment
society-governance
infrastructure
quantum
science-space
Future challenges such as AI, climate engineering, cyber conflict, and biotechnology cross borders but may be governed by incompatible national rules. The open problem is creating minimum safety floors without requiring complete political agreement. 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
coordination
countries
reject
shared
standards
low-income
communities
future
such
climate-environment
economics-resources
society-governance
systems
infrastructure
quantum
science-space
safe
If machines and software generate large economic value with fewer workers, existing payroll and income tax structures may weaken. Governments need alternatives that fund public goods without punishing productive investment. 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
fair
taxation
autonomous
production
low-income
communities
machines
software
generate
large
technology-computing
climate-environment
society-governance
systems
quantum
infrastructure
science-space
Traditional credentials are too slow for rapidly changing technical work, while unverified short courses create noise. Future education needs trustworthy, modular, employer-connected, and worker-controlled skill validation. 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.
social-civic-problems
training
systems
update
faster
occupations
change
low-income
communities
work
create
technology-computing
economics-resources
climate-environment
society-governance
quantum
infrastructure
science-space
Many valuable outputs may be generated through open-source contributions, community data, and user interaction rather than conventional employment. National accounts and compensation systems do not yet capture these flows fairly. 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
economic
measurement
produces
unpaid
digital
labor
low-income
communities
valuable
outputs
technology-computing
climate-environment
society-governance
systems
quantum
infrastructure
science-space
science being doubted 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.
science
being
doubted
building
effective
other
Future workers may combine employment, freelancing, caregiving, entrepreneurship, and AI-assisted production. Benefits must follow people across contracts without making innovation or small-business hiring impossible. 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
benefits
people
portable
working
platforms
low-income
communities
must
future
workers
technology-computing
climate-environment
society-governance
systems
quantum
infrastructure
science-space
Climate adaptation may favor a narrow set of crops and processing methods, threatening culinary heritage and local nutrition. Future food policy should preserve cultural diversity while meeting changing ecological conditions. 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
food
climate
long-term
preservation
cultures
under
pressure
low-income
communities
local
technology-computing
economics-resources
society-governance
systems
infrastructure
quantum
science-space
Alternative proteins may improve land efficiency but face allergen, contamination, cultural, and market barriers. Solutions must include rigorous standards and locally appropriate product development. 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
proteins
safe
insects
microbial
mainstream
diets
low-income
communities
must
alternative
technology-computing
climate-environment
society-governance
systems
quantum
infrastructure
science-space
Climate shocks could affect several staple crops at once, exposing dependence on narrow food portfolios. Societies need diverse, culturally acceptable, affordable diets supported by resilient production and storage. 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
resilient
diets
under
simultaneous
crop
failures
low-income
communities
climate
shocks
technology-computing
economics-resources
society-governance
systems
quantum
infrastructure
science-space
Future food production may move partly into restaurants, factories, and homes. Regulators must manage contamination, labeling, allergens, waste, and quality without blocking small innovators. 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.
society-governance
food
safety
regulation
cultivated
meat
household
scale
low-income
communities
must
technology-computing
economics-resources
climate-environment
systems
quantum
infrastructure
science-space
open
Brazil, South America
Higher temperatures may make ordinary housing unsafe even where electricity is available. The future challenge is combining passive design, cooling networks, public spaces, and equitable energy pricing. 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
south-america
brazil
housing
cooling
heat-safe
people
cannot
afford
mechanical
low-income
communities
higher
technology-computing
economics-resources
climate-environment
society-governance
systems
Autonomous transport could improve mobility but also increase congestion, surveillance, and unequal access if deployed mainly for affluent users. The challenge is coordinating street space, public transit, safety, and ownership models. 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
autonomous
designing
cities
vehicles
increasing
exclusion
low-income
communities
transport
improve
technology-computing
economics-resources
climate-environment
society-governance
systems
quantum
infrastructure
Offshore energy, aquaculture, data centers, and habitation may expand beyond coastal jurisdictions. The challenge is governing pollution, labor, safety, taxation, rescue, and ecological effects in legally complex areas. 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
managing
floating
infrastructure
international
waters
low-income
communities
offshore
energy
aquaculture
technology-computing
economics-resources
climate-environment
society-governance
systems
quantum
science-space