Difference between revisions of "2024 AMC 8"

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'''2024 AMC 8''' problems and solutions. '''The test is held from January 18th, 2024 to January 24th, 2024.''' The first link contains the full set of test problems. The second link contains the answer key. The rest contain each individual problem and its solution.
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'''2024 AMC 8''' problems and solutions. '''The test was held from January 18th, 2024 to January 24th, 2024.''' The first link contains the full set of test problems. The second link contains the answer key. The rest contain each individual problem and its solution.
  
 
*[[2024 AMC 8 Problems]]
 
*[[2024 AMC 8 Problems]]
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==See also==
 
==See also==
  
{{Succession box|
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{{AMC8 box|year=2024|before=[[2023 AMC 8]]|after=[[2025 AMC 8]]}}
|header=2024 AMC 8 ([[2024 AMC 8 Problems|Problems]],[http://www.artofproblemsolving.com/Forum/resources.php?c=182&cid=42&year=2024 Resources])
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* [[AMC 8]]
|before=[[2023 AMC 8]]
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* [[AMC 8 Problems and Solutions]]
|title=[[AMC 8]]
 
|after=[[2025 AMC 8]]}}
 
 
* [[Mathematics competitions]]
 
* [[Mathematics competitions]]
 
* [[Mathematics competition resources]]
 
* [[Mathematics competition resources]]
* [[Math books]]
 
Let <math>P</math> be the parabola with equation <math>y=ax^2+bx+c</math> and let <math>Q=(d,e).</math> There are real numbers <math>r</math> and <math>s</math> such that the line through <math>Q</math> with slope <math>m</math> does not intersect <math>P</math> if and only if <math>r<m<s.</math> What is <math>r+s</math>?
 

Latest revision as of 20:28, 7 September 2024

2024 AMC 8 problems and solutions. The test was held from January 18th, 2024 to January 24th, 2024. The first link contains the full set of test problems. The second link contains the answer key. The rest contain each individual problem and its solution.


See also

2024 AMC 8 (ProblemsAnswer KeyResources)
Preceded by
2023 AMC 8
Followed by
2025 AMC 8
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All AJHSME/AMC 8 Problems and Solutions