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📰 ---Question: A cybersecurity consultant needs to assign 5 distinct encryption keys to 3 different servers, ensuring each server gets at least one key. How many ways can this be done? 📰 Solution: The problem requires distributing 5 distinct keys to 3 distinct servers with each server receiving at least one key. This is a classic inclusion-exclusion problem. The total number of ways to assign the keys without restriction is $3^5$. Subtract the cases where at least one server gets no keys: $\binom{3}{1} \cdot 2^5$. Add back the cases where two servers get no keys (since they were subtracted twice): $\binom{3}{2} \cdot 1^5$. Thus, the total is: 📰 3^5 - \binom{3}{1} \cdot 2^5 + \binom{3}{2} \cdot 1^5 = 243 - 96 + 3 = 150. 📰 First Calculate The Total Number Of Ways To Select Any 4 Species From 10 8527007 📰 King Edward 5244125 📰 Big Update Median Salary And The Truth Finally Emerges 📰 Frances Most Iconic Figurefrancine Smith Shatters Expectations In This Revelatory Deep Dive 7942980 📰 Month Add Oracle 📰 They Said Stay Alivebut This Horror Movie Turned Every Breath Into Terror 9670309 📰 Usd Gold Price 📰 You Wont Stop Watchingthis Scream Meme Is The Frustrating Obsession We All Share 6813169 📰 Lost Skies Steam 9257749 📰 Soft Water Systems Cost 6702160 📰 How To Be More Articulate 📰 Benefits Of 529 📰 Central Time Zone Hacks Every Commuter Should Know Today Dont Miss Out 792684 📰 Secured Visa 2878630 📰 Spank Twinks 1957869