How to Solve Minimum Edge Reversals So Every Node Is Reachable Leetcode Problem - Interview Coder Guide
Get Monthly InterviewCoder for $99 $25!
First 100 customers only
24
:
00
:
00
Used by 87,000+ developers who passed their interviews

How to Solve Minimum Edge Reversals So Every Node Is Reachable Problem

Master the Minimum Edge Reversals So Every Node Is Reachable LeetCode problem with undetectable real-time assistance. Get instant solutions and explanations during your coding interviews.

Interview Coder generates complete solutions and debugging hints that you can use while explaining your approach, so you stay calm and in control.

undetectable
real-time
works on major platforms
Hard#3105
LeetCode Problem

Minimum Edge Reversals So Every Node Is Reachable

There is a simple directed graph with n nodes labeled from 0 to n - 1. The graph would form a tree if its edges were bi-directional. You are given an integer n and a 2D integer array edges, where edge...

Dynamic ProgrammingDepth-First SearchBreadth-First Search+1 more

Interview Coder will help you solve this problem in real-time during your interview

✨ Get instant solutions, explanations, and code generation

Problem Breakdown

Understanding the Minimum Edge Reversals So Every Node Is Reachable Problem

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

Problem Statement

There is a simple directed graph with n nodes labeled from 0 to n - 1. The graph would form a tree if its edges were bi-directional. You are given an integer n and a 2D integer array edges, where edges[i] = [ui, vi] represents a directed edge going from node ui to node vi. An edge reversal changes the direction of an edge, i.e., a directed edge going from node ui to node vi becomes a directed edge going from node vi to node ui. For every node i in the range [0, n - 1], your task is to independently calculate the minimum number of edge reversals required so it is possible to reach any other node starting from node i through a sequence of directed edges. Return an integer array answer, where answer[i] is the minimum number of edge reversals required so it is possible to reach any other node starting from node i through a sequence of directed edges.

HardProblem #3105
LeetCode

Minimum Edge Reversals So Every Node Is Reachable

Related Topics
Dynamic ProgrammingDepth-First SearchBreadth-First SearchGraph
How Interview Coder Helps

Get real-time assistance for Minimum Edge Reversals So Every Node Is Reachable problems during coding interviews. Interview Coder provides instant solutions and explanations.

Examples

Example 1
INPUT
n = 4, edges = [[2,0],[2,1],[1,3]]
OUTPUT
[1,1,0,2]
EXPLANATION

The image above shows the graph formed by the edges. For node 0: after reversing the edge [2,0], it is possible to reach any other node starting from node 0. So, answer[0] = 1. For node 1: after reversing the edge [2,1], it is possible to reach any other node starting from node 1. So, answer[1] = 1. For node 2: it is already possible to reach any other node starting from node 2. So, answer[2] = 0. For node 3: after reversing the edges [1,3] and [2,1], it is possible to reach any other node starting from node 3. So, answer[3] = 2.

Example 2
INPUT
n = 3, edges = [[1,2],[2,0]]
OUTPUT
[2,0,1]
EXPLANATION

The image above shows the graph formed by the edges. For node 0: after reversing the edges [2,0] and [1,2], it is possible to reach any other node starting from node 0. So, answer[0] = 2. For node 1: it is already possible to reach any other node starting from node 1. So, answer[1] = 0. For node 2: after reversing the edge [1, 2], it is possible to reach any other node starting from node 2. So, answer[2] = 1.

Constraints

2 <= n <= 105
edge

How Interview Coder Helps with Leetcode Problems

Trust anchors reduce friction for conversion. Reinforce undetectability claims, platform compatibility, user counts, and the free trial to remove perceived risk.

87,000+
developers use Interview Coder
and early launch metrics showed rapid adoption
95%
success rate
of users pass their interviews
100%
undetectable
native desktop architecture
Real-time
assistance
instant solutions during interviews

See Interview Coder in Action

Watch how Interview Coder helps solve LeetCode problems during live interviews

Play

Undetectability Checklist

Run compatibility test before interviews
Use recommended Zoom version settings
Enable advanced screen capture options
Verify native desktop architecture
Test with screen recording software

Platform Compatibility

Zoom
Supported
Google Meet
Supported
HackerRank
Supported
CodeSignal
Supported
CoderPad
Supported
Teams
Supported

User results and traction

More than 87,000 developers use Interview Coder and early launch metrics showed rapid adoption. Social proof signals that this approach helps real candidates land offers across a range of companies.

Undetectability and technical details

Our native desktop architecture avoids common detection vectors used by browser extensions. We provide a clear checklist so you can run basic checks and confirm the app will be invisible during live interviews.

Platform compatibility and limitations

We work with Zoom, HackerRank, CodeSignal, CoderPad and other web based platforms, with a known list of app version caveats. Check the compatibility note and request a browser link if a specific desktop app is unsupported.

Frequently Asked Questions

Common questions about solving Minimum Edge Reversals So Every Node Is Reachable and using Interview Coder during coding interviews.

Interview Coder 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.

Interview Coder - AI Interview Assistant Logo

Ready to Get Started?

Download Interview Coder now and join thousands of developers who have aced their coding interviews