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<p>You are given a <strong>0-indexed</strong> integer array <code>players</code>, where <code>players[i]</code> represents the <strong>ability</strong> of the <code>i<sup>th</sup></code> player. You are also given a <strong>0-indexed</strong> integer array <code>trainers</code>, where <code>trainers[j]</code> represents the <strong>training capacity </strong>of the <code>j<sup>th</sup></code> trainer.</p>
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<p>The <code>i<sup>th</sup></code> player can <strong>match</strong> with the <code>j<sup>th</sup></code> trainer if the player's ability is <strong>less than or equal to</strong> the trainer's training capacity. Additionally, the <code>i<sup>th</sup></code> player can be matched with at most one trainer, and the <code>j<sup>th</sup></code> trainer can be matched with at most one player.</p>
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<p>Return <em>the <strong>maximum</strong> number of matchings between </em><code>players</code><em> and </em><code>trainers</code><em> that satisfy these conditions.</em></p>
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<p> </p>
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<p><strong>Example 1:</strong></p>
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<pre>
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<strong>Input:</strong> players = [4,7,9], trainers = [8,2,5,8]
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<strong>Output:</strong> 2
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<strong>Explanation:</strong>
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One of the ways we can form two matchings is as follows:
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- players[0] can be matched with trainers[0] since 4 <= 8.
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- players[1] can be matched with trainers[3] since 7 <= 8.
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It can be proven that 2 is the maximum number of matchings that can be formed.
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</pre>
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<p><strong>Example 2:</strong></p>
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<pre>
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<strong>Input:</strong> players = [1,1,1], trainers = [10]
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<strong>Output:</strong> 1
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<strong>Explanation:</strong>
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The trainer can be matched with any of the 3 players.
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Each player can only be matched with one trainer, so the maximum answer is 1.
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</pre>
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<p> </p>
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<p><strong>Constraints:</strong></p>
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<ul>
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<li><code>1 <= players.length, trainers.length <= 10<sup>5</sup></code></li>
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<li><code>1 <= players[i], trainers[j] <= 10<sup>9</sup></code></li>
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</ul>
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