1. Give a recursive algorithm in pseudocode to compute the diameter of a binary tree. Recall that diameter is defined as the number of nodes on the longest path between any two nodes in the tree. Nodes have left and right references, but nothing else. You must use the height function, defined as follows, in your solution. Your solution will return the diameter of the tree as an integer. function height (Node n) 1. if n = null 2. return -1 3. return 1 + max (height (n.left), height (n.right)) Write your solution below. function diameter (Node n)

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
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Chapter1: Computer Networks And The Internet
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1. Give a recursive algorithm in pseudocode to compute the diameter of a binary tree. Recall that
diameter is defined as the number of nodes on the longest path between any two nodes in the tree.
Nodes have left and right references, but nothing else. You must use the height function,
defined as follows, in your solution. Your solution will return the diameter of the tree as an integer.
function height (Node n)
1. if n = null
2.
return -1
3. return 1 + max (height (n.left), height (n.right))
Write your solution below.
function diameter (Node n)
Transcribed Image Text:1. Give a recursive algorithm in pseudocode to compute the diameter of a binary tree. Recall that diameter is defined as the number of nodes on the longest path between any two nodes in the tree. Nodes have left and right references, but nothing else. You must use the height function, defined as follows, in your solution. Your solution will return the diameter of the tree as an integer. function height (Node n) 1. if n = null 2. return -1 3. return 1 + max (height (n.left), height (n.right)) Write your solution below. function diameter (Node n)
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