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How can we develop a comprehensive and reliable real-time system for tracking space debris to mitigate collision risks for satellites effectively?
How can in-orbit services improve fuel efficiency to prolong satellite operational lifespan and reduce costs?
How can communication satellites be aligned with greater precision to enhance data transmission while minimizing operational disruptions?
How can we develop cost-effective, autonomous collision avoidance systems that can operate within the spatial and power limits of small satellites?
How can we develop efficient rapid response systems for in-orbit satellite servicing to minimize downtime and maximize operational effectiveness?
How can satellite operators implement trustworthy, standardized methods of verifying and auditing in-orbit servicing activities to meet regulatory, insurance, and client requirements?
How can we develop autonomous systems capable of repairing satellite components in orbit to extend service life and mitigate space debris?
How can we accurately and affordably diagnose early-stage radiation-induced damage in orbit, enabling data-driven servicing decisions and minimizing costly mission failures?
How can we create and implement secure, standardized, and auditable protocols for the seamless transfer of operational control and ownership of satellites between entities while they remain in orbit?