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  2. Red–black tree - Wikipedia

    en.wikipedia.org/wiki/Redblack_tree

    In computer science, a redblack tree is a self-balancing binary search tree data structure noted for fast storage and retrieval of ordered information. The nodes in a red-black tree hold an extra "color" bit, often drawn as red and black, which help ensure that the tree is always approximately balanced.

  3. File:Red-black tree example with sockets.svg - Wikipedia

    en.wikipedia.org/wiki/File:Red-black_tree...

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  4. File:Red-black trees and 2–3–4 trees.svg - Wikipedia

    en.wikipedia.org/wiki/File:Red-black_trees_and_2...

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  5. Self-balancing binary search tree - Wikipedia

    en.wikipedia.org/wiki/Self-balancing_binary...

    Binary tree sort, in particular, is likely to be slower than merge sort, quicksort, or heapsort, because of the tree-balancing overhead as well as cache access patterns.) Self-balancing BSTs are flexible data structures, in that it's easy to extend them to efficiently record additional information or perform new operations.

  6. 2–3–4 tree - Wikipedia

    en.wikipedia.org/wiki/2–3–4_tree

    One property of a 2–3–4 tree is that all external nodes are at the same depth. 2–3–4 trees are closely related to redblack trees by interpreting red links (that is, links to red children) as internal links of 3-nodes and 4-nodes, although this correspondence is not one-to-one. [2]

  7. File:Red-black tree example (B-tree analogy).svg - Wikipedia

    en.wikipedia.org/wiki/File:Red-black_tree...

    Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation License, Version 1.2 or any later version published by the Free Software Foundation; with no Invariant Sections, no Front-Cover Texts, and no Back-Cover Texts.

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  9. Left-leaning red–black tree - Wikipedia

    en.wikipedia.org/wiki/Left-leaning_redblack_tree

    A left-leaning red-black tree satisfies all the properties of a red-black tree: Every node is either red or black. A NIL node is considered black. A red node does not have a red child. Every path from a given node to any of its descendant NIL nodes goes through the same number of black nodes. The root is black (by convention).