3021 |
AMC 8 1990 A Q22 |
Several students are seated at a large circular ta... |
1489.67 |
3022 |
AMC 8 2010 A Q5 |
Alice needs to replace a light bulb located \(10\)... |
1489.54 |
3023 |
AMC 8 1997 A Q23 |
There are positive integers that have these proper... |
1488.79 |
3024 |
AMC 10 2006 B Q7 |
Which of the following is equivalent to \( \displa... |
1488.75 |
3025 |
AMC 10 2008 A Q5 |
Which of the following is equal to the product
\[... |
1488.68 |
3026 |
AMC 10 2013 A Q11 |
A student council must select a two-person welcomi... |
1488.67 |
3027 |
AMC 8 2000 A Q16 |
In order for Mateen to walk a kilometer (\(1000\)m... |
1488.66 |
3028 |
AMC 10 2002 B Q7 |
The dimensions of a rectangular box in inches are ... |
1488.47 |
3029 |
AMC 12 1980 A Q24 |
For some real number \(r\), the polynomial \(8x^3-... |
1488.45 |
3030 |
AMC 12 2023 B Q1 |
Mrs. Jones is pouring orange juice for her 4 kids ... |
1488.33 |
3031 |
AMC 8 2008 A Q13 |
Mr. Harman needs to know the combined weight in po... |
1488.30 |
3032 |
AMC 10 2007 A Q17 |
Suppose that \( m\) and \( n\) are positive intege... |
1488.15 |
3033 |
AMC 8 1990 A Q16 |
\( 1990-1980+1970-1960+\cdots-20+10 = \)
$$ \te... |
1487.96 |
3034 |
AMC 12 2013 A Q8 |
Given that \(x\) and \(y\) are distinct nonzero re... |
1487.94 |
3035 |
AMC 12 2008 A Q2 |
What is the reciprocal of \( \frac{1}{2}+\frac{2}{... |
1487.85 |
3036 |
AMC 10 2001 A Q10 |
If \( x\), \( y\), and \( z\) are positive with \(... |
1487.84 |
3037 |
AMC 8 1989 Q |
A "stair-step" figure is made of alternating black... |
1487.73 |
3038 |
AMC 8 1991 A Q7 |
The value of \(\frac{(487,000)(12,027,300)+(9,621,... |
1487.47 |
3039 |
AMC 10 2010 A Q12 |
Logan is constructing a scaled model of his town. ... |
1487.28 |
3040 |
AMC 12 1980 A Q3 |
If the ratio of \(2x-y\) to \(x+y\) is \(\frac{2}{... |
1487.23 |