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HomeLeetCode ProblemsMaximum Genetic Difference Query
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How to Solve Maximum Genetic Difference Query Problem

Master the Maximum Genetic Difference Query LeetCode problem with undetectable real-time assistance. Get instant solutions and explanations during your coding interviews.

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Hard#1938
LeetCode Problem

Maximum Genetic Difference Query

There is a rooted tree consisting of n nodes numbered 0 to n - 1. Each node's number denotes its unique genetic value (i.e. the genetic value of node x is x). The genetic difference between two genetic values is defined as the bitwise-XOR of their values. You are given the integer array parents, where parents[i] is the parent for node i. If node x is the root of the tree, then parents[x] == -1. You are also given the array queries where queries[i] = [nodei, vali]. For each query i, find the maximum genetic difference between vali and pi, where pi is the genetic value of any node that is on the path between nodei and the root (including nodei and the root). More formally, you want to maximize vali XOR pi. Return an array ans where ans[i] is the answer to the ith query.

ArrayHash TableBit ManipulationDepth-First SearchTrie

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Problem Breakdown

Understanding the Maximum Genetic Difference Query Problem

Let's break down this LeetCode problem and understand what makes it challenging in interview settings.

Problem Statement

There is a rooted tree consisting of n nodes numbered 0 to n - 1. Each node's number denotes its unique genetic value (i.e. the genetic value of node x is x). The genetic difference between two genetic values is defined as the bitwise-XOR of their values. You are given the integer array parents, where parents[i] is the parent for node i. If node x is the root of the tree, then parents[x] == -1. You are also given the array queries where queries[i] = [nodei, vali]. For each query i, find the maximum genetic difference between vali and pi, where pi is the genetic value of any node that is on the path between nodei and the root (including nodei and the root). More formally, you want to maximize vali XOR pi. Return an array ans where ans[i] is the answer to the ith query.

HardProblem #1938
LeetCode

Maximum Genetic Difference Query

Related Topics

ArrayHash TableBit ManipulationDepth-First SearchTrie

How Phantom Code Helps

Get real-time assistance for Maximum Genetic Difference Query problems during coding interviews. Phantom Code provides instant solutions and explanations.

Examples

# Example 1

Input
parents = [-1,0,1,1], queries = [[0,2],[3,2],[2,5]]
Output
[2,3,7]

# Example 2

Input
parents = [3,7,-1,2,0,7,0,2], queries = [[4,6],[1,15],[0,5]]
Output
[6,14,7]

Constraints

2 <= parents.length <= 105
0 <= parents[i] <= parents.length - 1 for every node i that is not the root.
parents[root] == -1
1 <= queries.length <= 3 * 104
0 <= nodei <= parents.length - 1
0 <= vali <= 2 * 105

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Solve Maximum Genetic Difference Query — There is a rooted tree consisting of n nodes numbered 0 to n - 1. Each node's nu...

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Frequently Asked Questions

Common questions about solving Maximum Genetic Difference Query and using Phantom Code during coding interviews.

How does Phantom Code help me solve coding problems like Maximum Genetic Difference Query during interviews?
Phantom Code generates complete solutions instantly with proper complexity analysis, letting you focus on explaining your approach and demonstrating problem-solving skills rather than getting stuck on implementation details during high-pressure situations.
What if the interviewer asks follow-up questions or modifications to problems like Maximum Genetic Difference Query?
Phantom Code adapts in real-time. Screenshot the modified problem or use audio mode to capture the interviewer's follow-up, and get an updated solution within seconds — including edge cases and optimizations.
Can Phantom Code help me communicate my solution for problems like Maximum Genetic Difference Query?
Yes. Phantom Code provides step-by-step approach explanations with 3 progressive thoughts, so you can walk through your solution naturally. It also provides time and space complexity analysis to discuss trade-offs.
How does Phantom Code assist with different programming languages for Maximum Genetic Difference Query type problems?
Phantom Code supports 11 programming languages including Python, Java, C++, JavaScript, TypeScript, Go, Rust, Ruby, Swift, Kotlin, and C#. Set your preferred language and get idiomatic solutions.
What coding mistakes does Phantom Code help me avoid during Maximum Genetic Difference Query interviews?
Phantom Code catches common mistakes like off-by-one errors, missing edge cases, incorrect base conditions, and suboptimal approaches. It provides clean, well-structured code that handles all edge cases.
Is Phantom Code detectable when solving problems like Maximum Genetic Difference Query during live interviews?
No. Phantom Code runs as an invisible desktop overlay that doesn't appear in screen shares, recordings, or proctoring software. It works with Zoom, HackerRank, CodeSignal, CoderPad, and all major platforms.
How does Phantom Code help when I'm struggling with Maximum Genetic Difference Query style questions under pressure?
The AI provides structured guidance: first the approach (what algorithm/data structure to use and why), then the implementation with clean code, and finally complexity analysis. This helps you think clearly even under pressure.
Does Phantom Code work for the coding platforms used in Maximum Genetic Difference Query interviews?
Yes. Phantom Code works with all major coding platforms including LeetCode, HackerRank, CodeSignal, CoderPad, HackerEarth, and any browser-based coding environment.
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