Repository of problems worth solving
World Solve is a public institutional repository for identifying real unresolved problems across science, society, health, governance, economics, and local systems. Each entry is intended to be citable, inspectable, and actionable.
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4194Total
4194Open
0Solved
9Humans
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
Costa Rica, North America
Despite recognition of its importance, reliable methods for distributed biomanufacturing of essential medicines via synthetic biology are still lacking. Progress is hindered by incomplete mechanistic knowledge, high capital and operational barriers, and the absence of deployment models suited to the contexts of greatest need.
health-biology
north-america
costa-rica
methods
distributed
biomanufacturing
essential
medicines
via
synthetic
biology
robust
enabling
climate-environment
systems
barriers
society-governance
designs