Difference between revisions of "User:Grogg007"

m (Visitor Count:)
m (Written Solutions)
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*: [[2023 AMC 10B Problems/Problem 15|2023 AMC 10B #15 Solution 5]] (Legendre's Formula)
 
*: [[2023 AMC 10B Problems/Problem 15|2023 AMC 10B #15 Solution 5]] (Legendre's Formula)
 
*: [[2023 AMC 10B Problems/Problem 21| 2023 AMC 10B #21 Solution 12]] (Stars & Bars, noticing a pattern)
 
*: [[2023 AMC 10B Problems/Problem 21| 2023 AMC 10B #21 Solution 12]] (Stars & Bars, noticing a pattern)
 +
*: [[2024 AMC 12A Problems/Problem 15| 2024 AMC 12A #15 Solution 4]] (Vieta's and Newton's Sums)
 
*: [[2024 AMC 12A Problems/Problem 18| 2024 AMC 12A #18 Solution 4]] (Rotations, inscribing in circle)
 
*: [[2024 AMC 12A Problems/Problem 18| 2024 AMC 12A #18 Solution 4]] (Rotations, inscribing in circle)
 
*: [[2024 AMC 10A Problems/Problem 20| 2024 AMC 10A #20 Solution 3]] (Pairing and experimenting)
 
*: [[2024 AMC 10A Problems/Problem 20| 2024 AMC 10A #20 Solution 3]] (Pairing and experimenting)

Revision as of 18:55, 12 August 2025

About Me:

- I’m Nathan

- I like math and music

- Sophomore, class of 2028

Visitor Count:

If you're an AoPS Wiki user who is visiting my page for the first time, you can increase the number below by 1. Feel free to get creative :D

$\frac{x}{7}+\left \lfloor \frac{x^2}{15} \right \rfloor = 56, x = ?$

Answer: 28 I got this idea from Aoum, who also included a visitor count on his user page. I thought it would be cool to try it out on mine too

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