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			33 lines
		
	
	
		
			1.5 KiB
		
	
	
	
		
			HTML
		
	
	
	
	
	
| <p>You have an undirected, connected graph of <code>n</code> nodes labeled from <code>0</code> to <code>n - 1</code>. You are given an array <code>graph</code> where <code>graph[i]</code> is a list of all the nodes connected with node <code>i</code> by an edge.</p>
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| 
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| <p>Return <em>the length of the shortest path that visits every node</em>. You may start and stop at any node, you may revisit nodes multiple times, and you may reuse edges.</p>
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| 
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| <p> </p>
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| <p><strong>Example 1:</strong></p>
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| <img alt="" src="https://assets.leetcode.com/uploads/2021/05/12/shortest1-graph.jpg" style="width: 222px; height: 183px;" />
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| <pre>
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| <strong>Input:</strong> graph = [[1,2,3],[0],[0],[0]]
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| <strong>Output:</strong> 4
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| <strong>Explanation:</strong> One possible path is [1,0,2,0,3]
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| </pre>
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| 
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| <p><strong>Example 2:</strong></p>
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| <img alt="" src="https://assets.leetcode.com/uploads/2021/05/12/shortest2-graph.jpg" style="width: 382px; height: 222px;" />
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| <pre>
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| <strong>Input:</strong> graph = [[1],[0,2,4],[1,3,4],[2],[1,2]]
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| <strong>Output:</strong> 4
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| <strong>Explanation:</strong> One possible path is [0,1,4,2,3]
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| </pre>
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| 
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| <p> </p>
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| <p><strong>Constraints:</strong></p>
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| 
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| <ul>
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| 	<li><code>n == graph.length</code></li>
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| 	<li><code>1 <= n <= 12</code></li>
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| 	<li><code>0 <= graph[i].length < n</code></li>
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| 	<li><code>graph[i]</code> does not contain <code>i</code>.</li>
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| 	<li>If <code>graph[a]</code> contains <code>b</code>, then <code>graph[b]</code> contains <code>a</code>.</li>
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| 	<li>The input graph is always connected.</li>
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| </ul>
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