Use the recursion tree method to solve the following recurrence T(n) by finding the tightest function f(n) such that T(n) = O(f(n)). T(n) ≤4 T(n/3) + O(n)
Use the recursion tree method to solve the following recurrence T(n) by finding the tightest function f(n) such that T(n) = O(f(n)). T(n) ≤4 T(n/3) + O(n)
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
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f(n) such that T(n) = O(f(n)).
T(n) ≤ 4.T(n/3) +0(n³)"
Transcribed Image Text:Use the recursion tree method to solve the following recurrence T(n) by finding the tightest function
f(n) such that T(n) = O(f(n)).
T(n) ≤ 4.T(n/3) +0(n³)
Expert Solution
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Step 1
Answer:
To solve the recurrence relation T(n) = 4T(n / 3) + O(n ^ 3) using the recursion tree method, we can draw a tree in which each node represents the cost of a subproblem at a certain level of recursion. The root of the tree represents the original problem of size n, and each level of the tree represents a smaller subproblem of size n / 3.
At each level of the tree, we have four subproblems, each of size n / 3. Therefore, the total cost of each level of the tree is O((n / 3) ^ 3) = O(n ^ 3 / 27). We can represent the cost of each level by a geometric series:
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Can you try to draw out the tree to make it more clear.
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