entity · derived
Peer to peer
Derived node: assembled mechanically from the claims carrying peer-to-peer. A roster, not an adjudicated definition.
Every claim under this term
- 2922176-003 : Platform disruptors such as Uber and Airbnb did not decentralize their industries by eliminating intermediaries; they decentralized by replacing incumbent intermediaries with algorithmic ones.
- 2922176-019 : Platform companies embrace an unmediated, flat, and inclusive culture in which trust and value are generated through the platform itself rather than through the management of workers and physical asse
- 3227933-013 : Peer-to-peer transactions are possible because a distributed consensus model has network nodes verify, validate and audit transactions before and after execution, and this is often safer than routing
- 3373393-028 : Decentralized Autonomous Organizations have begun to challenge the core belief that governance necessitates agency, because blockchain enables the removal of agents as intermediaries through code, pee
- 3709041-002 : Blockchain technology incentivizes direct transactions between creator and consumer, including compensation, which eliminates the need for intermediation.
- 3782201-013 : An open source design is necessary to run any program in a peer to peer environment, because decentralization means the source code must be shared by all if it is not controlled centrally.
- 3782205-032 : In peer to peer systems the redundant and eternal storage of the blockchain takes the place of the central bank.
- 3808852-007 : The transition from client-server computing to peer-to-peer networking was the most significant step in the evolution of decentralized technology, because removing centralized hosts lets nodes make di
- 3808852-008 : Network effects proliferate in peer-to-peer networks because, unlike client-server architecture with linearly increasing per-unit costs, peer-to-peer network costs decrease with each added node.
- 3808859-006 : Digitization was the precondition for peer-to-peer transactions at scale, and the digital transformation of business enabled, for the first time in history, decentralized production at lower cost.
- 3808859-009 : Peer-to-peer architecture inverts the role of the audience: higher demand for a file produces more seeding nodes, which lowers the per-file delivery cost, whereas in client-server architecture demand
- 3808859-010 : A peer-to-peer computing architecture is more efficient than client-server because client-server carries linearly increasing per-unit costs while peer-to-peer costs fall with each added node, which al
- 3808859-011 : Distributed routing makes a peer-to-peer network resistant to shutdown: BitTorrent could not be taken down even when authorities shut down specific servers, because nodes could update their own routin
- 3808859-015 : The networked information economy, built on peer-to-peer exchange of information, may be replacing the centralized industrial information economy of the late nineteenth century, because cheaper access
- 3808859-037 : Future peer-to-peer networks will thrive on dissimilarity rather than redundancy: nodes contributing dissimilar resources and capabilities let the network perform tasks no individual peer could perfor