3 3 9 9

99 of 100 targets have a solution.

\(1 = \frac{ 39 }{ 39 }\)
\(2 = \frac{ 33 }{ \sqrt{9} } - 9 \)
\(3 = \frac{ 99 }{ 33 }\)
\(4 = \frac{ 39 }{ 3 } - 9 \)
\(5 = \frac{ 39 + 3! }{ 9 }\)
\(6 = ( \frac{ 99 }{ 33 } )!\)
\(7 = 9 - \frac{ 9 - 3 }{ 3 }\)
\(8 = \frac{ 33 - 9 }{ \sqrt{9 } }\)
\(9 = \sqrt{93 - 3 - 9 }\)
\(10 = \frac{ 39 - 9 }{ 3 }\)
\(11 = \frac{ \frac{ 99 }{ 3 } }{ 3 }\)
\(12 = 39 - 3 \cdot 9 \)
\(13 = \frac{ 39 \cdot 3 }{ 9 }\)
\(14 = \frac{ 33 + 9 }{ \sqrt{9 } }\)
\(15 = 33 - 9 - 9 \)
\(16 = \frac{ 39 + 9 }{ 3 }\)
\(17 = \frac{ 93 + 9 }{ 3 ! }\)
\(18 = \sqrt{( 39 - 3 ) \cdot 9 }\)
\(19 = \frac{ 3 }{ 3 } + 9 + 9 \)
\(20 = \frac{ 33 }{ \sqrt{9} } + 9 \)
\(21 = 33 - 9 - \sqrt{9 }\)
\(22 = \frac{ 39 }{ 3 } + 9 \)
\(23 = \frac{ 3!^{3} - 9 }{ 9 }\)
\(24 = 33 - \sqrt{9 \cdot 9 }\)
\(25 = \frac{ 93 }{ 3 } - \sqrt{9 }!\)
\(26 = \frac{ 39 \cdot 3! }{ 9 }\)
\(27 = 39 - 3 - 9 \)
\(28 = \frac{ 93 - 9 }{ 3 }\)
\(29 = \frac{ 93 - 3! }{ \sqrt{9 } }\)
\(30 = \frac{ 99 }{ 3 } - 3 \)
\(31 = \frac{ 93 \cdot 3 }{ 9 }\)
\(32 = 33 - \frac{ 9 }{ 9 }\)
\(33 = 33 - 9 + 9 \)
\(34 = \frac{ 9 }{ 9 } + 33 \)
\(35 = \frac{ 99 + 3! }{ 3 }\)
\(36 = 39 - \frac{ 9 }{ 3 }\)
\(37 = 39 - \frac{ \sqrt{9}! }{ 3 }\)
\(38 = 39 - \frac{ 3 }{ \sqrt{9 } }\)
\(39 = \sqrt{39 \cdot 39 }\)
\(40 = \frac{ 93 }{ 3 } + 9 \)
\(41 = \frac{ \sqrt{9}! }{ 3 } + 39 \)
\(42 = \frac{ 9 }{ 3 } + 39 \)
\(43 = \frac{ 3!! }{ 9 + 9 } + 3 \)
\(44 = \frac{ \sqrt{9}!! }{ 9 } - 3! \cdot 3 !\)
\(45 = 39 - 3 + 9 \)
\(46 = \frac{ 3!! }{ 9 + 9 } + 3 !\)
\(47 = \frac{ \sqrt{9}!! }{ 9 } - 33 \)
\(48 = 9 \cdot 9 - 33 \)
\(49 = \frac{ \sqrt{9}!! }{ 3 \cdot 3! } + 9 \)
\(50 = \frac{ \frac{ 9! }{ 3!! } }{ 9 } - 3 !\)
\(51 = 33 + 9 + 9 \)
\(52 = \sqrt{9}! \cdot 9 - \frac{ 3! }{ 3 }\)
\(53 = \sqrt{9}! \cdot 9 - \frac{ 3 }{ 3 }\)
\(54 = 93 - 39 \)
\(55 = \frac{ 3 }{ 3 } + \sqrt{9}! \cdot 9 \)
\(56 = \frac{ \frac{ 9! }{ ( 3 + 3 )! } }{ 9 }\)
\(57 = ( 9 - 3 ) \cdot 9 + 3 \)
\(58 = ( \frac{ 3! }{ 3 } )^{\sqrt{9}!} - \sqrt{9 }!\)
\(59 = \frac{ \frac{ 9! }{ 3!! } }{ 9 } + 3 \)
\(60 = \sqrt{9} \cdot 9 + 33 \)
\(61 = ( \frac{ 3! }{ 3 } )^{\sqrt{9}!} - \sqrt{9 }\)
\(62 = \frac{ 93 \cdot 3! }{ 9 }\)
\(63 = ( 3 + 3 ) \cdot 9 + 9 \)
\(64 = ( \frac{ 9 }{ 9 } + 3 )^{3 }\)
\(65 = \frac{ 3!! }{ 9 } - 3! - 9 \)
\(66 = 99 - 33 \)
\(67 = \frac{ \sqrt{3^{3!} + 9!} }{ 9 }\)
\(68 = \frac{ 3!! }{ 9 } - 3 - 9 \)
\(69 = \frac{ 3!! }{ 3 + 9 } + 9 \)
\(70 = \frac{ 9! }{ \frac{ 3!^{3!} }{ 9 } }\)
\(71 = \frac{ ( 3 + 3 )! }{ 9 } - 9 \)
\(72 = 99 - 3^{3 }\)
\(73 = ( \frac{ 3! }{ 3 } )^{\sqrt{9}!} + 9 \)
\(74 = \frac{ 3!! }{ 9 } + 3 - 9 \)
\(75 = 9 \cdot 9 - 3 - 3 \)
\(76 = \frac{ 3!! - 9 }{ 9 } - 3 \)
\(77 = \frac{ ( 9 - 3 )! }{ 9 } - 3 \)
\(78 = 39 + 39 \)
\(79 = \frac{ ( 3 + 3 )! - 9 }{ 9 }\)
\(80 = 9 \cdot 9 - \frac{ 3 }{ 3 }\)
\(81 = 93 - 3 - 9 \)
\(82 = \frac{ 3 }{ 3 } + 9 \cdot 9 \)
\(83 = \frac{ ( 9 - 3 )! }{ 9 } + 3 \)
\(84 = 93 - 3 \cdot \sqrt{9 }\)
\(85 = \frac{ 3!! - 9 }{ 9 } + 3 !\)
\(86 = \frac{ 3!! }{ 9 } - 3 + 9 \)
\(87 = 93 + 3 - 9 \)
\(88 = ?\)
\(89 = \frac{ ( 3 + 3 )! }{ 9 } + 9 \)
\(90 = ( 39 - 9 ) \cdot 3 \)
\(91 = 93 - \frac{ \sqrt{9}! }{ 3 }\)
\(92 = 93 - \frac{ 3 }{ \sqrt{9 } }\)
\(93 = \sqrt{93 \cdot 93 }\)
\(94 = \frac{ 3 }{ \sqrt{9} } + 93 \)
\(95 = \frac{ \sqrt{9}! }{ 3 } + 93 \)
\(96 = \frac{ 9 }{ 3 } + 93 \)
\(97 = 99 - \frac{ 3! }{ 3 }\)
\(98 = 99 - \frac{ 3 }{ 3 }\)
\(99 = 93 - 3 + 9 \)
\(100 = \frac{ 3 }{ 3 } + 99 \)