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The first near real-time tree-based blockchain - 100% new code - learned from others - 8^11 coins. Conditional payment, smart(er) contracts, social integration, social payment, public/private, API, apps.

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floaks tree-based blockchain information

floaks blockchain in more detail

  • User
    Transferring from address x to address y. How does it work?
  • Node level Number of nodes ^ Explanation
    Genesis 1 The root block, superblock of level 1 nodes
    1 8^1 Super block of level 2 nodes, baby block of genesis block
    2 8^2 Super block of level 3 nodes, baby block of level 1 nodes
    3 8^3 Super block of level 4 nodes, baby block of level 2 nodes
    4 8^4 Super block of level 5 nodes, baby block of level 3 nodes
    5 8^5 Super block of level 6 nodes, baby block of level 4 nodes
    6 8^6 Super block of level 7 nodes, baby block of level 5 nodes
    7 8^7 Super block of level 8 nodes, baby block of level 6 nodes
    8 8^8 Super block of level 9 nodes, baby block of level 7 nodes
    9 8^9 Super block of level 10 nodes, baby block of level 8 nodes
    10 8^10 Super block of level 11 nodes, baby block of level 9 nodes
    11 8^11 Total number of floaks, coins are only located here, host of contracts, apps
    # Total number of blocks
    • floaks coins only exists in level 11. The number of blocks in level 11 is the same as the number of available coins.
  • Traversal between sender and receiver (with random child nodes between 1-8):

    From (sender)

    Genesis 2 4 6 1 4 7 8 1 4 5 2

    To (receiver)

    Genesis 3 5 1 2 5 8 1 2 5 1 3

    The maximum number of blocks affected when inorder traverse floaks is: (11+11) + 1 (genesis block) = 23. (average is ~17)

References:
On Trees, Chains and Fast Transactions in the Blockchain
A Bounded-Space Tree Traversal Algorithm