Maxim's fusion power system
GPTKB entity
Statements (60)
Predicate | Object |
---|---|
gptkbp:instanceOf |
fusion power system
|
gptkbp:addresses |
climate change
|
gptkbp:aimsTo |
carbon emissions
clean energy |
gptkbp:competesWith |
fission power systems
|
gptkbp:developedBy |
Maxim_Corporation
|
gptkbp:firstClaim |
electricity generation
|
gptkbp:hasCollaboratedWith |
government agencies
research institutions private sector companies |
gptkbp:hasContent |
traditional energy sources
|
gptkbp:hasRelatedPatent |
solve energy crisis
|
https://www.w3.org/2000/01/rdf-schema#label |
Maxim's fusion power system
|
gptkbp:isAvenueFor |
regulatory compliance
scalability market potential economic feasibility |
gptkbp:isBasedOn |
magnetic_confinement
|
gptkbp:isCelebratedFor |
future energy demands
|
gptkbp:isConsidered |
a sustainable energy source
|
gptkbp:isDesignedFor |
minimize waste
|
gptkbp:isEvaluatedBy |
environmental impact
safety standards public acceptance |
gptkbp:isExpectedTo |
economic growth
energy efficiency energy costs energy security reliable energy supply grid stability energy independence energy diversification energy access commercial viability new jobs by 2030 energy landscape global energy goals |
gptkbp:isFacilitatedBy |
technological advancements
|
gptkbp:isInfluencedBy |
advancements in plasma physics
|
gptkbp:isPartOf |
sustainable development goals
renewable energy technologies clean technology initiatives energy research initiatives energy innovation strategies global energy transition future energy solutions Maxim's_energy_portfolio |
gptkbp:isPromotedBy |
environmental organizations
|
gptkbp:isSupportedBy |
academic research
government funding scientific community |
gptkbp:isTestedFor |
efficiency
long-term sustainability |
gptkbp:isTrainedIn |
laboratory environments
|
gptkbp:isVisitedBy |
advanced technology
international partnerships |
gptkbp:requires |
high temperatures
|
gptkbp:significantEvent |
2020
|
gptkbp:uses |
nuclear fusion
|