Statements (83)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:Space_Launch_System
|
gptkbp:academic_programs |
experienced engineering team
|
gptkbp:advances |
leveraging technology advancements
|
gptkbp:benefits |
positive project outcomes
|
gptkbp:challenges |
addressing engineering challenges
|
gptkbp:collaboration |
exploring international collaborations
|
gptkbp:commercial_viability |
aiming for commercial viability
|
gptkbp:community_engagement |
engaging with the community
|
gptkbp:competitors |
gptkb:Space_X_Falcon_9
|
gptkbp:customer_base |
commercial satellite operators
|
gptkbp:customer_feedback |
incorporating customer feedback
|
gptkbp:customer_satisfaction |
prioritizing customer satisfaction
|
gptkbp:design_purpose |
to provide affordable access to space
|
gptkbp:development |
Rocket Lab engineers
|
gptkbp:diameter |
4 meters
|
gptkbp:durability |
partially reusable
|
gptkbp:educational_programs |
supporting educational initiatives
|
gptkbp:engine |
ongoing engine development
|
gptkbp:engine_type |
gptkb:Team_Rocket
|
gptkbp:environmental_concerns |
designed with environmental impact in mind
|
gptkbp:first_flight |
2024
planned test flights |
gptkbp:fuel_type |
RP-1 and Liquid Oxygen
|
gptkbp:funding |
secured project funding
|
gptkbp:future_plans |
expansion of launch capabilities
|
gptkbp:guidance_system |
gptkb:navigation_system
|
gptkbp:height |
40 meters
|
gptkbp:historical_achievement |
tracking project milestones
|
https://www.w3.org/2000/01/rdf-schema#label |
Neutron launch vehicle
|
gptkbp:innovation |
developing innovation strategy
implementing engineering innovations |
gptkbp:intended_use |
gptkb:Space_Launch_System
|
gptkbp:involved_technology |
integrating advanced technologies
|
gptkbp:is_tested_for |
conducting launch vehicle testing
|
gptkbp:is_visible_from |
ensuring project transparency
|
gptkbp:launch_date |
up to 12 launches per year
|
gptkbp:launch_price |
gptkb:$5_million
|
gptkbp:launch_site |
Mahia Peninsula, New Zealand
|
gptkbp:launch_vehicle |
innovative launch vehicle design
medium-lift launch vehicle Rocket Lab launch vehicles enhancing launch vehicle reliability expanding launch vehicle capabilities optimizing launch vehicle performance |
gptkbp:launch_vehicle_design_philosophy |
innovative design philosophy
|
gptkbp:launch_window |
flexible launch windows
|
gptkbp:launched |
efficient launch operations
|
gptkbp:manufacturer |
gptkb:Rocket_Lab
|
gptkbp:market |
conducting market analysis
|
gptkbp:market_position |
strategic market positioning
|
gptkbp:mission |
vertical launch
targeting high success rate planning future missions |
gptkbp:mission_type |
commercial and government missions
|
gptkbp:number_of_stages |
2
|
gptkbp:operational_range |
up to 2,000 km altitude
|
gptkbp:orbit_type |
Low Earth Orbit (LEO)
|
gptkbp:partnership |
forming industry partnerships
|
gptkbp:partnerships |
collaborations with satellite companies
|
gptkbp:payload_capacity |
4.5 meters
integrated payloads 8,000 kg to LEO deploys payloads into orbit |
gptkbp:production_status |
in development
|
gptkbp:project |
achieving project goals
projected timeline for completion providing project updates clear project vision |
gptkbp:project_execution |
efficient project execution
|
gptkbp:propulsion |
1,000 k N
|
gptkbp:public_interest |
high public interest
|
gptkbp:regulatory_compliance |
seeking regulatory approvals
|
gptkbp:related_vehicle |
gptkb:Electron_rocket
|
gptkbp:risk_management |
implementing risk management strategies
|
gptkbp:safety_features |
redundant systems
|
gptkbp:specification |
detailed technical specifications available
|
gptkbp:stakeholders |
engaging stakeholders
|
gptkbp:supply_chain |
effective supply chain management
developing supply chain partnerships |
gptkbp:sustainability_efforts |
aligning with sustainability goals
|
gptkbp:target_market |
small satellite market
|
gptkbp:bfsParent |
gptkb:Rocket_Lab_Mission_Control
|
gptkbp:bfsLayer |
7
|