Deck 8: Rational Exponents and Radicals

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Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
4x2/5(x11/55x)4 x ^ { - 2 / 5 } ( x -^ { 11 / 5 } - 5 x )

A) 4x9/5+5x2/54 x ^ { 9 / 5 } + 5 x ^ { - 2 / 5 }
B) 4x9/520x2/5\frac { 4 } { x ^ { 9 / 5 } } - \frac { 20 } { x ^ { - 2 / 5 } }
C) 4x9/520x3/54 x ^ { 9 / 5 } - 20 x ^ { 3 / 5 }
D) 4x22/520x2/54 x ^ { - 22 / 5 } - 20 x ^ { - 2 / 5 }
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Question
Write with positive exponents.
x8/7x ^ { - 8 / 7 }

A) 1x7/8\frac { 1 } { x ^ { 7 / 8 } }
B) 1x8/7\frac { 1 } { x ^ { 8 / 7 } }
C) x8/7- x ^ { 8 / 7 }
D) 1x8/7\frac { - 1 } { x ^ { 8 / 7 } }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
64(a3b6a3b6)1/364 \left( \frac { a ^ { 3 } b ^ { - 6 } } { a ^ { - 3 } b ^ { 6 } } \right) ^ { 1 / 3 }

A) 16ab2\frac { 16 a } { b ^ { 2 } }
B) 16b6a\frac { 16 b ^ { 6 } } { a }
C) 4a2b64 a ^ { 2 } b ^ { 6 }
D) 4a2b4\frac { 4 a ^ { 2 } } { b ^ { 4 } }
Question
Simplify.
y3/4y1/4\frac { y ^ { 3 / 4 } } { y ^ { 1 / 4 } }

A) yy
B) y3/4y ^ { 3 / 4 }
C) y1/2y ^ { 1 / 2 }
D) 1y\frac { 1 } { y }
Question
Simplify.
y7/6y5/6\frac { y ^ { 7 / 6 } } { y ^ { 5 / 6 } }

A) y7/5y ^ { 7 / 5 }
B) y1/3y ^ { 1 / 3 }
C) y5/7y ^ { 5 / 7 }
D) y6/3y ^ { 6 / 3 }
Question
Simplify.
(x4/3)15\left( x ^ { 4 / 3 } \right) ^ { 15 }

A) x4/45x ^ { 4 / 45 }
B) x20x ^ { 20 }
C) x49/5x ^ { 49 / 5 }
D) x4/5x ^ { 4 / 5 }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
4a1/7b5/7)3\left. 4 a ^ { 1 / 7 } b ^ { 5 / 7 } \right) ^ { 3 }

A) 4a3/7b15/74 a ^ { 3 / 7 } b ^ { 15 / 7 }
В) 64a3/7b15/764 a ^ { 3 / 7 } b 15 / 7
C) 64(ab)15/764 ( \mathrm { ab } ) ^ { 15 / 7 }
D) 12a3/7 b5/712 \mathrm { a } ^ { 3 / 7 } \mathrm {~b} ^ { 5 / 7 }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
x3/2x4/7x2/3\frac { x ^ { 3 / 2 } \cdot x ^ { - 4 / 7 } } { x ^ { - 2 / 3 } }

A) 1x11/42\frac { 1 } { x ^ { 11 / 42 } }
B) x67/42x ^ { 67 / 42 }
C) x11/42\mathrm { x } ^ { 11 / 42 }
D) 1x67/42\frac { 1 } { x ^ { 67 / 42 } }
Question
Write with positive exponents.
21/452/52 ^ { - 1 / 4 } \cdot 5 ^ { 2 / 5 }

A) 103/2010 ^ { 3 / 20 }
B) 121/452/5\frac { 1 } { 2 ^ { 1 / 4 \cdot 5 ^ { 2 / 5 } } }
C) 52/521/4\frac { 5 ^ { 2 / 5 } } { 2 ^ { 1 / 4 } }
D) 102/20- 10 ^ { 2 / 20 }
Question
Evaluate the numerical expression.
161/216^{1 / 2}

A) 16
B) 2
C) 4
D) 8
Question
Simplify.
(4a4b2b)2\left( \frac { 4 a ^ { - 4 } b ^ { 2 } } { b } \right) ^ { 2 }

A) 16b3a8\frac { 16 b ^ { 3 } } { a ^ { 8 } }
B) 16b2a8\frac { 16 b ^ { 2 } } { a ^ { 8 } }
C) 16b6a8\frac { 16 b ^ { 6 } } { a ^ { 8 } }
D) 16b4a8b2\frac { 16 b ^ { 4 } } { a ^ { 8 } b ^ { 2 } }
Question
Simplify.
y1/7y5/14y ^ { - 1 / 7 } \cdot y ^ { 5 / 14 }

A) y5/98\mathrm { y } ^ { - 5 / 98 }
B) y2/21y ^ { 2 / 21 }
C) y3/14y ^ { 3 / 14 }
D) y2/14y ^ { 2 / 14 }
Question
Write with positive exponents.
6a3/8b5/46 a ^ { - 3 / 8 } b ^ { 5 / 4 }

A) 6b5/4a3/8\frac { 6 b ^ { 5 / 4 } } { a ^ { 3 / 8 } }
B) 6ab15/2\frac { 6 } { a b ^ { 15 / 2 } }
C) b5/46a3/8\frac { b ^ { 5 / 4 } } { 6 a ^ { 3 / 8 } }
D) 16a3/8b5/4\frac { 1 } { 6 a ^ { 3 / 8 } b ^ { 5 / 4 } }
Question
Write with positive exponents.
51/45 ^ { - 1 / 4 }

A) 194\frac { 19 } { 4 }
B) 51/4- 5 ^ { 1 / 4 }
C) 54- \frac { 5 } { 4 }
D) 151/4\frac { 1 } { 51 / 4 }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
(x1/3y3/5)(x1/3y3/2)\left( x ^ { 1 / 3 } y ^ { 3 / 5 } \right) \left( x ^ { - 1 / 3 } y ^ { 3 / 2 } \right)

A) y9/10x1/9\frac { y ^ { 9 / 10 } } { x ^ { 1 / 9 } }
B) y9/10x2/3\frac { y ^ { 9 / 10 } } { x ^ { 2 / 3 } }
C) xy21/10x y ^ { 21 / 10 }
D) y21/10y ^ { 21 / 10 }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
(2x1/3y1/3)(8x1/4y1/6)\left( 2 x ^ { - 1 / 3 } y ^ { 1 / 3 } \right) \left( - 8 x ^ { 1 / 4 } y ^ { - 1 / 6 } \right)

A) 16x1/12y1/18\frac { - 16 } { x ^ { 1 / 12 } y ^ { 1 / 18 } }
B) 16x1/12y1/6\frac { 16 x ^ { 1 / 12 } } { y ^ { 1 / 6 } }
C) 16y1/6x1/12\frac { - 16 y ^ { 1 / 6 } } { x ^ { 1 / 12 } }
D) 6x1/12y1/18\frac { - 6 } { x ^ { 1 / 12 } y ^ { 1 / 18 } }
Question
Simplify.
(b7)2/7\left( \mathrm { b } ^ { 7 } \right) ^ { 2 / 7 }

A) b2b ^ { 2 }
B) b2/49b ^ { 2 / 49 }
C) b1/2b ^ { 1 / 2 }
D) b9/7b ^ { 9 / 7 }
Question
Evaluate the numerical expression.
811/481 ^ { 1 / 4 }

A) 12
B) 36
C) 3
D) 243
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
(5x5/3)3x3/5\frac { \left( - 5 x ^ { 5 / 3 } \right) ^ { 3 } } { x ^ { 3 / 5 } }

A) 125x22/5- 125 x ^ { 22 / 5 }
B) 5x22/5- 5 x ^ { 22 / 5 }
C) 125x28/5- 125 x ^ { 28 / 5 }
D) 5x28/5- 5 x ^ { 28 / 5 }
Question
Use the properties of exponents to simplify the expression. Write with positive exponents.
y5/9(y2/95y3/9)y ^ { 5 / 9 } \left( y ^ { 2 / 9 } - 5 y ^ { 3 / 9 } \right)

A) y7/95y8/9y ^ { 7 / 9 } - 5 y ^ { 8 / 9 }
B) y10/815y15/81\mathrm { y } ^ { 10 / 81 } - 5 \mathrm { y } ^ { 15 / 81 }
C) y5/25y5/3y ^ { 5 / 2 } - 5 y ^ { 5 / 3 }
D) y3/95y2/9y ^ { 3 / 9 } - 5 y ^ { 2 / 9 }
Question
Evaluate if possible.
181\sqrt { \frac { 1 } { 81 } }

A) 81
B) 16561\frac { 1 } { 6561 }
C) 19\frac { 1 } { 9 }
D) 9
Question
Evaluate if possible.
81\sqrt { 81 }

A) 9
B) 40
C) not a real number
D) 10
Question
Evaluate the numerical expression.
321/5- 32 ^ { 1 / 5 }

A) 8- 8
B) 2- 2
C) 16
D) 32
Question
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x+1f ( x ) = \sqrt { 2 x + 1 } , find the value of f(5)f ( 5 ) .

A) 10
B) 11
C) 4.54.5
D) 3.33.3
Question
Write the expression as one fraction with positive exponents.
31/5+x1/23 ^ { - 1 / 5 } + x ^ { - 1 / 2 }

A) x1/234/531/5+x1/2\frac { x ^ { 1 / 2 } 3 ^ { 4 / 5 } } { 3 ^ { 1 / 5 } + x ^ { 1 / 2 } }
B) x1/231/531/5+x1/2\frac { x ^ { 1 / 2 } 3 ^ { 1 / 5 } } { 3 ^ { 1 / 5 } + x ^ { 1 / 2 } }
C) ×1/2+34/531/5×1/2\frac { \times ^ { 1 / 2 } + 3 ^ { 4 / 5 } } { 3 ^ { 1 / 5 } \times 1 / 2 }
D) ×1/2+31/531/5x1/2\frac { \times ^ { 1 / 2 } + 3 ^ { 1 / 5 } } { 3 ^ { 1 / 5 } x ^ { 1 / 2 } }
Question
Write the expression as one fraction with positive exponents.
3y5/42y3/43 y ^ { 5 / 4 } - 2 y ^ { - 3 / 4 }

A) 3y22y3/4\frac { 3 y ^ { 2 } - 2 } { y ^ { 3 / 4 } }
B) 3y1/212y3/4\frac { 3 y ^ { 1 / 2 } - 1 } { 2 y ^ { 3 / 4 } }
C) 3y212y3/4\frac { 3 y ^ { 2 } - 1 } { 2 y ^ { 3 / 4 } }
D) 3y1/22y3/4\frac { 3 y ^ { 1 / 2 } - 2 } { y ^ { 3 / 4 } }
Question
Evaluate if possible.
121225\sqrt { \frac { 121 } { 225 } }

A) 1116\frac { 11 } { 16 }
B) 1528\frac { 15 } { 28 }
C) 45\frac { 4 } { 5 }
D) 1115\frac { 11 } { 15 }
Question
Evaluate the numerical expression.
84/38 ^ { 4 / 3 }

A) 32
B) 16
C) 128
D) 64
Question
Evaluate if possible.
225- \sqrt { 225 }

A) not a real number
B) 15
C) 15- 15
D) 112- 112
Question
Factor out the requested common factor.
The radius needed to create a sphere with a given volume V\mathrm { V } can be approximated by the equation r=0.62\mathrm { r } = 0.62 (V)1/3( V ) ^ { 1 / 3 } . Find the radius of a sphere with a volume of 125 cubic meters. Round the answer to the nearest hundredth.

A) 25.8325.83 meters
B) 6.936.93 meters
C) 4.264.26 meters
D) 3.13.1 meters
Question
Evaluate if possible.
0.0009\sqrt { 0.0009 }

A) 0.030.03
B) 0.00030.0003
C) 0.30.3
D) 0.0030.003
Question
Factor out the requested common factor.
The radius required for a cone to have a volume V\mathrm { V } and a height h\mathrm { h } is given by the equation
r=(3 Vπh)1/2\mathrm { r } = \left( \frac { 3 \mathrm {~V} } { \pi \mathrm { h } } \right) ^ { 1 / 2 }
Find the necessary radius to have a cone with the V=1256\mathrm { V } = 1256 cubic inches and h=3h = 3 inches. Use π3.14\pi \approx 3.14 and round the nearest whole number.

A) 25 inches
B) 20 inches
C) 195 inches
D) 200 inches
Question
Evaluate the numerical expression.
165/416 ^ { 5 / 4 }

A) 128
B) 32
C) 256
D) 512
Question
Evaluate if possible.
10081\sqrt { 100 } - \sqrt { 81 }

A) 19
B) 19\sqrt { 19 }
C) 1- 1
D) 1
Question
Evaluate the numerical expression.
93/2+84/39 ^ { 3 / 2 } + 8 ^ { 4 / 3 }

A) 241624 \frac { 1 } { 6 }
B) 82
C) 43
D) 481648 \frac { 1 } { 6 }
Question
Write the expression as one fraction with positive exponents.
3y3/4+3y1/43 y ^ { 3 / 4 } + 3 y ^ { - 1 / 4 }

A) 3y1/2+3y1/4\frac { 3 y ^ { 1 / 2 } + 3 } { y ^ { 1 / 4 } }
B) 3y1/2+13y1/4\frac { 3 y ^ { 1 / 2 } + 1 } { 3 y ^ { 1 / 4 } }
C) 3y+3y1/4\frac { 3 y + 3 } { y ^ { 1 / 4 } }
D) 3y+13y1/4\frac { 3 y + 1 } { 3 y ^ { 1 / 4 } }
Question
Evaluate if possible.
25+169\sqrt { 25 } + \sqrt { 169 }

A) 16
B) 194\sqrt { 194 }
C) 18
D) 194
Question
Evaluate the numerical expression.
2434/5243 ^ { 4 / 5 }

A) 81
B) 6561
C) 19,683
D) 2187
Question
Factor out the requested common factor.
Factor out 2x2 x from 10x7/56x8/510 x ^ { 7 / 5 } - 6 x ^ { 8 / 5 }

A) 2x(5x2/53x3/5)2 x \left( 5 x ^ { 2 / 5 } - 3 x ^ { 3 / 5 } \right)
B) 2×(5x6/53x7/5)2 \times \left( 5 x ^ { 6 / 5 } - 3 x ^ { 7 / 5 } \right)
C) 2×(57/538/5)2 \times \left( 5 ^ { 7 / 5 } - 3 ^ { 8 / 5 } \right)
D) 2×(56/537/5)2 \times \left( 5 ^ { 6 / 5 } - 3 ^ { 7 / 5 } \right)
Question
Write the expression as one fraction with positive exponents.
3y4/3+2y1/33 y ^ { 4 / 3 } + 2 y ^ { - 1 / 3 }

A) 3y+12y1/3\frac { 3 y + 1 } { 2 y 1 / 3 }
B) 3y5/3+12y1/3\frac { 3 y ^ { 5 / 3 } + 1 } { 2 y ^ { 1 / 3 } }
C) 3y5/3+2y1/3\frac { 3 y ^ { 5 / 3 } + 2 } { y ^ { 1 / 3 } }
D) 3y+2y1/3\frac { 3 y + 2 } { y ^ { 1 / 3 } }
Question
Find the domain of the given function.
f(x)=21x7f ( x ) = \sqrt { 21 x - 7 }

A) all real numbers xx where x>x >
B) all real numbers xx where x>17x > - \frac { 1 } { 7 }
C) all real numbers xx where x7x \geq - 7
D) all real numbers xx where xx \geq -
Question
Assume that variables represent positive real numbers. Replace the radical with rational exponents
3y7\sqrt [ 7 ] { 3 y }

A) (3y)7/2( 3 y ) ^ { 7 / 2 }
B) 3y1/73 y ^ { 1 / 7 }
C) (3y)1/7( 3 y ) ^ { 1 / 7 }
D) 37y1/7\frac { 3 } { 7 } y ^ { 1 / 7 }
Question
Assume that variables represent positive real numbers. Replace the radical with rational exponents
y5\sqrt [ 5 ] { \mathrm { y } }

A) y1/25\frac { y ^ { 1 / 2 } } { 5 }
B) y1/5y ^ { 1 / 5 }
C) y5\frac { y } { 5 }
D) y5/2y ^ { 5 / 2 }
Question
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x8f ( x ) = \sqrt { 2 x - 8 } , find the value of f(7)f ( 7 ) .

A) 14
B) 3.73.7
C) 2.42.4
D) 6
Question
Assume that variables represent positive real numbers. Replace the radical with rational exponents
y9\sqrt { \sqrt [ 9 ] { y } }

A) y9/2\mathrm { y } ^ { 9 / 2 }
B) y9\mathrm { y } ^ { 9 }
C) y2/9y ^ { 2 / 9 }
D) y1/18\mathrm { y } ^ { 1 / 18 }
Question
Find the domain of the given function.
f(x)=x1f(x)=\sqrt{x-1}
 Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D) <div style=padding-top: 35px>  A) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D) <div style=padding-top: 35px>
B) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D) <div style=padding-top: 35px>
C) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D) <div style=padding-top: 35px>
D) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D) <div style=padding-top: 35px>
Question
Assume that variables represent positive real numbers. Replace the radical with rational exponents
(x+y)35\sqrt [ 5 ] { ( x + y ) ^ { 3 } }

A) (x3+y3)1/5\left( x ^ { 3 } + y ^ { 3 } \right) ^ { 1 / 5 }
B) (x+y)3/5( x + y ) ^ { 3 / 5 }
C) (x5+y5)1/3\left( x ^ { 5 } + y ^ { 5 } \right) ^ { 1 / 3 }
D) (x+y)5/3( x + y ) ^ { 5 / 3 }
Question
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x2f ( x ) = \sqrt { 2 x - 2 } , find the value of f(3)f ( 3 ) .

A) 6
B) 4
C) 2
D) 2.42.4
Question
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x9f ( x ) = \sqrt { 2 x - 9 } , find the value of f(29)f ( 29 ) .

A) 7
B) 7.67.6
C) 58
D) 49
Question
Assume that variables represent positive real numbers. Replace the radical with rational exponents
(2x4)3( \sqrt [ 4 ] { 2 x } ) ^ { 3 }

A) (6×)1/4( 6 \times ) ^ { 1 / 4 }
B) (2x3)1/4\left( 2 x ^ { 3 } \right) ^ { 1 / 4 }
C) (2x)1/12( 2 \mathrm { x } ) ^ { 1 / 12 }
D) (2x)3/4( 2 x ) ^ { 3 / 4 }
Question
Find the domain of the given function.
f(x)=5x+25f ( x ) = \sqrt { 5 x + 25 }

A) all real numbers xx where x5x \geq 5
B) all real numbers xx where x>5x > 5
C) all real numbers xx where x5x \geq - 5
D) all real numbers xx where x>15x > \frac { 1 } { 5 }
Question
Simplify. Assume that variables represent positive real numbers.
(3)66\sqrt [ 6 ] { ( - 3 ) ^ { 6 } }

A) 3
B) 18
C) 3- 3
D) 18- 18
Question
Simplify. Assume that variables represent positive real numbers.
3x5/73 x ^ { 5 / 7 }

A) 3x75\sqrt [ 5 ] { 3 x ^ { 7 } }
В) 243x57\sqrt [ 7 ] { 243 x ^ { 5 } }
C) 3x57\sqrt [ 7 ] { 3 x ^ { 5 } }
D) 3x573 \sqrt [ 7 ] { \mathrm { x } ^ { 5 } }
Question
Simplify. Assume that variables represent positive real numbers.
(7)33\sqrt [ 3 ] { ( - 7 ) ^ { 3 } }

A) 21
B) 7
C) 21- 21
D) 7- 7
Question
Find the domain of the given function.
f(x)=3.5x+3f ( x ) = \sqrt { 3.5 x + 3 }

A) all real numbers xx where x>x > -
B) all real numbers xx where x>335x > - \frac { 3 } { 35 }
C) all real numbers xx where xx \geq -
D) all real numbers xx where x67x \geq - \frac { 6 } { 7 }
Question
Simplify. Assume that variables represent positive real numbers.
81x8y124\sqrt [ 4 ] { - 81 x ^ { 8 } y ^ { 12 } }

A) 81x2y8- 81 x ^ { 2 } y ^ { 8 }
B) not a real number
C) 3x2y3- 3 x ^ { 2 } y ^ { 3 }
D) 3x4y8- 3 x ^ { 4 } y ^ { 8 }
Question
Simplify. Assume that variables represent positive real numbers.
x3y63\sqrt [ 3 ] { \mathrm { x } ^ { 3 } \mathrm { y } ^ { 6 } }

A) y3y ^ { 3 }
B) xy2x y ^ { 2 }
C) xy3x y ^ { 3 }
D) x3y2x ^ { 3 } y ^ { 2 }
Question
Find the domain of the given function.
f(x)=3x+6f(x)=\sqrt{3 x+6}
 Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D) <div style=padding-top: 35px>  A) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D) <div style=padding-top: 35px>
B) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D) <div style=padding-top: 35px>
C) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D) <div style=padding-top: 35px>
D) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D) <div style=padding-top: 35px>
Question
Simplify. Assume that variables represent positive real numbers.
(3x)4/9( 3 x ) ^ { 4 / 9 }

A) 3x94\sqrt [ 4 ] { 3 x ^ { 9 } }
B) 3x49\sqrt [ 9 ] { 3 x ^ { 4 } }
C) 81x49\sqrt [ 9 ] { 81 x ^ { 4 } }
D) 3x493 \sqrt [ 9 ] { x ^ { 4 } }
Question
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2.5x+4f ( x ) = \sqrt { 2.5 x + 4 } , find the value of f(10)f ( 10 )

A) 29
B) 31
C) 5.75.7
D) 5.45.4
Question
Simplify. Assume that variables represent positive real numbers.
9x6y18z12\sqrt { 9 x ^ { 6 } y ^ { 18 } z ^ { 12 } }

A) 9x3y16z109 x ^ { 3 } y ^ { 16 } z ^ { 10 }
B) 3x4y16z103 x ^ { 4 } y ^ { 16 } z ^ { 10 }
C) 9x4y9z109 x ^ { 4 } y ^ { 9 } z ^ { 10 }
D) 3x3y9z63 x ^ { 3 } y ^ { 9 } z ^ { 6 }
Question
Simplify. Assume that variables represent positive real numbers.
1024x10y205\sqrt [ 5 ] { 1024 x ^ { 10 } y ^ { 20 } }

A) 4x5y154 x ^ { 5 } y ^ { 15 }
B) 4x2y44 x ^ { 2 } y ^ { 4 }
C) 1024x2y41024 x ^ { 2 } y ^ { 4 }
D) 1024x5y151024 x ^ { 5 } y ^ { 15 }
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Deck 8: Rational Exponents and Radicals
1
Use the properties of exponents to simplify the expression. Write with positive exponents.
4x2/5(x11/55x)4 x ^ { - 2 / 5 } ( x -^ { 11 / 5 } - 5 x )

A) 4x9/5+5x2/54 x ^ { 9 / 5 } + 5 x ^ { - 2 / 5 }
B) 4x9/520x2/5\frac { 4 } { x ^ { 9 / 5 } } - \frac { 20 } { x ^ { - 2 / 5 } }
C) 4x9/520x3/54 x ^ { 9 / 5 } - 20 x ^ { 3 / 5 }
D) 4x22/520x2/54 x ^ { - 22 / 5 } - 20 x ^ { - 2 / 5 }
C
2
Write with positive exponents.
x8/7x ^ { - 8 / 7 }

A) 1x7/8\frac { 1 } { x ^ { 7 / 8 } }
B) 1x8/7\frac { 1 } { x ^ { 8 / 7 } }
C) x8/7- x ^ { 8 / 7 }
D) 1x8/7\frac { - 1 } { x ^ { 8 / 7 } }
B
3
Use the properties of exponents to simplify the expression. Write with positive exponents.
64(a3b6a3b6)1/364 \left( \frac { a ^ { 3 } b ^ { - 6 } } { a ^ { - 3 } b ^ { 6 } } \right) ^ { 1 / 3 }

A) 16ab2\frac { 16 a } { b ^ { 2 } }
B) 16b6a\frac { 16 b ^ { 6 } } { a }
C) 4a2b64 a ^ { 2 } b ^ { 6 }
D) 4a2b4\frac { 4 a ^ { 2 } } { b ^ { 4 } }
D
4
Simplify.
y3/4y1/4\frac { y ^ { 3 / 4 } } { y ^ { 1 / 4 } }

A) yy
B) y3/4y ^ { 3 / 4 }
C) y1/2y ^ { 1 / 2 }
D) 1y\frac { 1 } { y }
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5
Simplify.
y7/6y5/6\frac { y ^ { 7 / 6 } } { y ^ { 5 / 6 } }

A) y7/5y ^ { 7 / 5 }
B) y1/3y ^ { 1 / 3 }
C) y5/7y ^ { 5 / 7 }
D) y6/3y ^ { 6 / 3 }
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6
Simplify.
(x4/3)15\left( x ^ { 4 / 3 } \right) ^ { 15 }

A) x4/45x ^ { 4 / 45 }
B) x20x ^ { 20 }
C) x49/5x ^ { 49 / 5 }
D) x4/5x ^ { 4 / 5 }
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7
Use the properties of exponents to simplify the expression. Write with positive exponents.
4a1/7b5/7)3\left. 4 a ^ { 1 / 7 } b ^ { 5 / 7 } \right) ^ { 3 }

A) 4a3/7b15/74 a ^ { 3 / 7 } b ^ { 15 / 7 }
В) 64a3/7b15/764 a ^ { 3 / 7 } b 15 / 7
C) 64(ab)15/764 ( \mathrm { ab } ) ^ { 15 / 7 }
D) 12a3/7 b5/712 \mathrm { a } ^ { 3 / 7 } \mathrm {~b} ^ { 5 / 7 }
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8
Use the properties of exponents to simplify the expression. Write with positive exponents.
x3/2x4/7x2/3\frac { x ^ { 3 / 2 } \cdot x ^ { - 4 / 7 } } { x ^ { - 2 / 3 } }

A) 1x11/42\frac { 1 } { x ^ { 11 / 42 } }
B) x67/42x ^ { 67 / 42 }
C) x11/42\mathrm { x } ^ { 11 / 42 }
D) 1x67/42\frac { 1 } { x ^ { 67 / 42 } }
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9
Write with positive exponents.
21/452/52 ^ { - 1 / 4 } \cdot 5 ^ { 2 / 5 }

A) 103/2010 ^ { 3 / 20 }
B) 121/452/5\frac { 1 } { 2 ^ { 1 / 4 \cdot 5 ^ { 2 / 5 } } }
C) 52/521/4\frac { 5 ^ { 2 / 5 } } { 2 ^ { 1 / 4 } }
D) 102/20- 10 ^ { 2 / 20 }
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10
Evaluate the numerical expression.
161/216^{1 / 2}

A) 16
B) 2
C) 4
D) 8
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11
Simplify.
(4a4b2b)2\left( \frac { 4 a ^ { - 4 } b ^ { 2 } } { b } \right) ^ { 2 }

A) 16b3a8\frac { 16 b ^ { 3 } } { a ^ { 8 } }
B) 16b2a8\frac { 16 b ^ { 2 } } { a ^ { 8 } }
C) 16b6a8\frac { 16 b ^ { 6 } } { a ^ { 8 } }
D) 16b4a8b2\frac { 16 b ^ { 4 } } { a ^ { 8 } b ^ { 2 } }
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12
Simplify.
y1/7y5/14y ^ { - 1 / 7 } \cdot y ^ { 5 / 14 }

A) y5/98\mathrm { y } ^ { - 5 / 98 }
B) y2/21y ^ { 2 / 21 }
C) y3/14y ^ { 3 / 14 }
D) y2/14y ^ { 2 / 14 }
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13
Write with positive exponents.
6a3/8b5/46 a ^ { - 3 / 8 } b ^ { 5 / 4 }

A) 6b5/4a3/8\frac { 6 b ^ { 5 / 4 } } { a ^ { 3 / 8 } }
B) 6ab15/2\frac { 6 } { a b ^ { 15 / 2 } }
C) b5/46a3/8\frac { b ^ { 5 / 4 } } { 6 a ^ { 3 / 8 } }
D) 16a3/8b5/4\frac { 1 } { 6 a ^ { 3 / 8 } b ^ { 5 / 4 } }
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14
Write with positive exponents.
51/45 ^ { - 1 / 4 }

A) 194\frac { 19 } { 4 }
B) 51/4- 5 ^ { 1 / 4 }
C) 54- \frac { 5 } { 4 }
D) 151/4\frac { 1 } { 51 / 4 }
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15
Use the properties of exponents to simplify the expression. Write with positive exponents.
(x1/3y3/5)(x1/3y3/2)\left( x ^ { 1 / 3 } y ^ { 3 / 5 } \right) \left( x ^ { - 1 / 3 } y ^ { 3 / 2 } \right)

A) y9/10x1/9\frac { y ^ { 9 / 10 } } { x ^ { 1 / 9 } }
B) y9/10x2/3\frac { y ^ { 9 / 10 } } { x ^ { 2 / 3 } }
C) xy21/10x y ^ { 21 / 10 }
D) y21/10y ^ { 21 / 10 }
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16
Use the properties of exponents to simplify the expression. Write with positive exponents.
(2x1/3y1/3)(8x1/4y1/6)\left( 2 x ^ { - 1 / 3 } y ^ { 1 / 3 } \right) \left( - 8 x ^ { 1 / 4 } y ^ { - 1 / 6 } \right)

A) 16x1/12y1/18\frac { - 16 } { x ^ { 1 / 12 } y ^ { 1 / 18 } }
B) 16x1/12y1/6\frac { 16 x ^ { 1 / 12 } } { y ^ { 1 / 6 } }
C) 16y1/6x1/12\frac { - 16 y ^ { 1 / 6 } } { x ^ { 1 / 12 } }
D) 6x1/12y1/18\frac { - 6 } { x ^ { 1 / 12 } y ^ { 1 / 18 } }
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17
Simplify.
(b7)2/7\left( \mathrm { b } ^ { 7 } \right) ^ { 2 / 7 }

A) b2b ^ { 2 }
B) b2/49b ^ { 2 / 49 }
C) b1/2b ^ { 1 / 2 }
D) b9/7b ^ { 9 / 7 }
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18
Evaluate the numerical expression.
811/481 ^ { 1 / 4 }

A) 12
B) 36
C) 3
D) 243
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19
Use the properties of exponents to simplify the expression. Write with positive exponents.
(5x5/3)3x3/5\frac { \left( - 5 x ^ { 5 / 3 } \right) ^ { 3 } } { x ^ { 3 / 5 } }

A) 125x22/5- 125 x ^ { 22 / 5 }
B) 5x22/5- 5 x ^ { 22 / 5 }
C) 125x28/5- 125 x ^ { 28 / 5 }
D) 5x28/5- 5 x ^ { 28 / 5 }
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20
Use the properties of exponents to simplify the expression. Write with positive exponents.
y5/9(y2/95y3/9)y ^ { 5 / 9 } \left( y ^ { 2 / 9 } - 5 y ^ { 3 / 9 } \right)

A) y7/95y8/9y ^ { 7 / 9 } - 5 y ^ { 8 / 9 }
B) y10/815y15/81\mathrm { y } ^ { 10 / 81 } - 5 \mathrm { y } ^ { 15 / 81 }
C) y5/25y5/3y ^ { 5 / 2 } - 5 y ^ { 5 / 3 }
D) y3/95y2/9y ^ { 3 / 9 } - 5 y ^ { 2 / 9 }
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21
Evaluate if possible.
181\sqrt { \frac { 1 } { 81 } }

A) 81
B) 16561\frac { 1 } { 6561 }
C) 19\frac { 1 } { 9 }
D) 9
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22
Evaluate if possible.
81\sqrt { 81 }

A) 9
B) 40
C) not a real number
D) 10
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23
Evaluate the numerical expression.
321/5- 32 ^ { 1 / 5 }

A) 8- 8
B) 2- 2
C) 16
D) 32
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24
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x+1f ( x ) = \sqrt { 2 x + 1 } , find the value of f(5)f ( 5 ) .

A) 10
B) 11
C) 4.54.5
D) 3.33.3
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25
Write the expression as one fraction with positive exponents.
31/5+x1/23 ^ { - 1 / 5 } + x ^ { - 1 / 2 }

A) x1/234/531/5+x1/2\frac { x ^ { 1 / 2 } 3 ^ { 4 / 5 } } { 3 ^ { 1 / 5 } + x ^ { 1 / 2 } }
B) x1/231/531/5+x1/2\frac { x ^ { 1 / 2 } 3 ^ { 1 / 5 } } { 3 ^ { 1 / 5 } + x ^ { 1 / 2 } }
C) ×1/2+34/531/5×1/2\frac { \times ^ { 1 / 2 } + 3 ^ { 4 / 5 } } { 3 ^ { 1 / 5 } \times 1 / 2 }
D) ×1/2+31/531/5x1/2\frac { \times ^ { 1 / 2 } + 3 ^ { 1 / 5 } } { 3 ^ { 1 / 5 } x ^ { 1 / 2 } }
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26
Write the expression as one fraction with positive exponents.
3y5/42y3/43 y ^ { 5 / 4 } - 2 y ^ { - 3 / 4 }

A) 3y22y3/4\frac { 3 y ^ { 2 } - 2 } { y ^ { 3 / 4 } }
B) 3y1/212y3/4\frac { 3 y ^ { 1 / 2 } - 1 } { 2 y ^ { 3 / 4 } }
C) 3y212y3/4\frac { 3 y ^ { 2 } - 1 } { 2 y ^ { 3 / 4 } }
D) 3y1/22y3/4\frac { 3 y ^ { 1 / 2 } - 2 } { y ^ { 3 / 4 } }
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27
Evaluate if possible.
121225\sqrt { \frac { 121 } { 225 } }

A) 1116\frac { 11 } { 16 }
B) 1528\frac { 15 } { 28 }
C) 45\frac { 4 } { 5 }
D) 1115\frac { 11 } { 15 }
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28
Evaluate the numerical expression.
84/38 ^ { 4 / 3 }

A) 32
B) 16
C) 128
D) 64
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29
Evaluate if possible.
225- \sqrt { 225 }

A) not a real number
B) 15
C) 15- 15
D) 112- 112
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30
Factor out the requested common factor.
The radius needed to create a sphere with a given volume V\mathrm { V } can be approximated by the equation r=0.62\mathrm { r } = 0.62 (V)1/3( V ) ^ { 1 / 3 } . Find the radius of a sphere with a volume of 125 cubic meters. Round the answer to the nearest hundredth.

A) 25.8325.83 meters
B) 6.936.93 meters
C) 4.264.26 meters
D) 3.13.1 meters
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31
Evaluate if possible.
0.0009\sqrt { 0.0009 }

A) 0.030.03
B) 0.00030.0003
C) 0.30.3
D) 0.0030.003
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32
Factor out the requested common factor.
The radius required for a cone to have a volume V\mathrm { V } and a height h\mathrm { h } is given by the equation
r=(3 Vπh)1/2\mathrm { r } = \left( \frac { 3 \mathrm {~V} } { \pi \mathrm { h } } \right) ^ { 1 / 2 }
Find the necessary radius to have a cone with the V=1256\mathrm { V } = 1256 cubic inches and h=3h = 3 inches. Use π3.14\pi \approx 3.14 and round the nearest whole number.

A) 25 inches
B) 20 inches
C) 195 inches
D) 200 inches
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33
Evaluate the numerical expression.
165/416 ^ { 5 / 4 }

A) 128
B) 32
C) 256
D) 512
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34
Evaluate if possible.
10081\sqrt { 100 } - \sqrt { 81 }

A) 19
B) 19\sqrt { 19 }
C) 1- 1
D) 1
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35
Evaluate the numerical expression.
93/2+84/39 ^ { 3 / 2 } + 8 ^ { 4 / 3 }

A) 241624 \frac { 1 } { 6 }
B) 82
C) 43
D) 481648 \frac { 1 } { 6 }
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36
Write the expression as one fraction with positive exponents.
3y3/4+3y1/43 y ^ { 3 / 4 } + 3 y ^ { - 1 / 4 }

A) 3y1/2+3y1/4\frac { 3 y ^ { 1 / 2 } + 3 } { y ^ { 1 / 4 } }
B) 3y1/2+13y1/4\frac { 3 y ^ { 1 / 2 } + 1 } { 3 y ^ { 1 / 4 } }
C) 3y+3y1/4\frac { 3 y + 3 } { y ^ { 1 / 4 } }
D) 3y+13y1/4\frac { 3 y + 1 } { 3 y ^ { 1 / 4 } }
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37
Evaluate if possible.
25+169\sqrt { 25 } + \sqrt { 169 }

A) 16
B) 194\sqrt { 194 }
C) 18
D) 194
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38
Evaluate the numerical expression.
2434/5243 ^ { 4 / 5 }

A) 81
B) 6561
C) 19,683
D) 2187
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39
Factor out the requested common factor.
Factor out 2x2 x from 10x7/56x8/510 x ^ { 7 / 5 } - 6 x ^ { 8 / 5 }

A) 2x(5x2/53x3/5)2 x \left( 5 x ^ { 2 / 5 } - 3 x ^ { 3 / 5 } \right)
B) 2×(5x6/53x7/5)2 \times \left( 5 x ^ { 6 / 5 } - 3 x ^ { 7 / 5 } \right)
C) 2×(57/538/5)2 \times \left( 5 ^ { 7 / 5 } - 3 ^ { 8 / 5 } \right)
D) 2×(56/537/5)2 \times \left( 5 ^ { 6 / 5 } - 3 ^ { 7 / 5 } \right)
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40
Write the expression as one fraction with positive exponents.
3y4/3+2y1/33 y ^ { 4 / 3 } + 2 y ^ { - 1 / 3 }

A) 3y+12y1/3\frac { 3 y + 1 } { 2 y 1 / 3 }
B) 3y5/3+12y1/3\frac { 3 y ^ { 5 / 3 } + 1 } { 2 y ^ { 1 / 3 } }
C) 3y5/3+2y1/3\frac { 3 y ^ { 5 / 3 } + 2 } { y ^ { 1 / 3 } }
D) 3y+2y1/3\frac { 3 y + 2 } { y ^ { 1 / 3 } }
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41
Find the domain of the given function.
f(x)=21x7f ( x ) = \sqrt { 21 x - 7 }

A) all real numbers xx where x>x >
B) all real numbers xx where x>17x > - \frac { 1 } { 7 }
C) all real numbers xx where x7x \geq - 7
D) all real numbers xx where xx \geq -
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42
Assume that variables represent positive real numbers. Replace the radical with rational exponents
3y7\sqrt [ 7 ] { 3 y }

A) (3y)7/2( 3 y ) ^ { 7 / 2 }
B) 3y1/73 y ^ { 1 / 7 }
C) (3y)1/7( 3 y ) ^ { 1 / 7 }
D) 37y1/7\frac { 3 } { 7 } y ^ { 1 / 7 }
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43
Assume that variables represent positive real numbers. Replace the radical with rational exponents
y5\sqrt [ 5 ] { \mathrm { y } }

A) y1/25\frac { y ^ { 1 / 2 } } { 5 }
B) y1/5y ^ { 1 / 5 }
C) y5\frac { y } { 5 }
D) y5/2y ^ { 5 / 2 }
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44
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x8f ( x ) = \sqrt { 2 x - 8 } , find the value of f(7)f ( 7 ) .

A) 14
B) 3.73.7
C) 2.42.4
D) 6
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45
Assume that variables represent positive real numbers. Replace the radical with rational exponents
y9\sqrt { \sqrt [ 9 ] { y } }

A) y9/2\mathrm { y } ^ { 9 / 2 }
B) y9\mathrm { y } ^ { 9 }
C) y2/9y ^ { 2 / 9 }
D) y1/18\mathrm { y } ^ { 1 / 18 }
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46
Find the domain of the given function.
f(x)=x1f(x)=\sqrt{x-1}
 Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D)  A) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D)
B) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D)
C) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D)
D) Find the domain of the given function.  f(x)=\sqrt{x-1}    A)  B)  C)  D)
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47
Assume that variables represent positive real numbers. Replace the radical with rational exponents
(x+y)35\sqrt [ 5 ] { ( x + y ) ^ { 3 } }

A) (x3+y3)1/5\left( x ^ { 3 } + y ^ { 3 } \right) ^ { 1 / 5 }
B) (x+y)3/5( x + y ) ^ { 3 / 5 }
C) (x5+y5)1/3\left( x ^ { 5 } + y ^ { 5 } \right) ^ { 1 / 3 }
D) (x+y)5/3( x + y ) ^ { 5 / 3 }
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48
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x2f ( x ) = \sqrt { 2 x - 2 } , find the value of f(3)f ( 3 ) .

A) 6
B) 4
C) 2
D) 2.42.4
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49
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2x9f ( x ) = \sqrt { 2 x - 9 } , find the value of f(29)f ( 29 ) .

A) 7
B) 7.67.6
C) 58
D) 49
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50
Assume that variables represent positive real numbers. Replace the radical with rational exponents
(2x4)3( \sqrt [ 4 ] { 2 x } ) ^ { 3 }

A) (6×)1/4( 6 \times ) ^ { 1 / 4 }
B) (2x3)1/4\left( 2 x ^ { 3 } \right) ^ { 1 / 4 }
C) (2x)1/12( 2 \mathrm { x } ) ^ { 1 / 12 }
D) (2x)3/4( 2 x ) ^ { 3 / 4 }
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51
Find the domain of the given function.
f(x)=5x+25f ( x ) = \sqrt { 5 x + 25 }

A) all real numbers xx where x5x \geq 5
B) all real numbers xx where x>5x > 5
C) all real numbers xx where x5x \geq - 5
D) all real numbers xx where x>15x > \frac { 1 } { 5 }
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52
Simplify. Assume that variables represent positive real numbers.
(3)66\sqrt [ 6 ] { ( - 3 ) ^ { 6 } }

A) 3
B) 18
C) 3- 3
D) 18- 18
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53
Simplify. Assume that variables represent positive real numbers.
3x5/73 x ^ { 5 / 7 }

A) 3x75\sqrt [ 5 ] { 3 x ^ { 7 } }
В) 243x57\sqrt [ 7 ] { 243 x ^ { 5 } }
C) 3x57\sqrt [ 7 ] { 3 x ^ { 5 } }
D) 3x573 \sqrt [ 7 ] { \mathrm { x } ^ { 5 } }
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54
Simplify. Assume that variables represent positive real numbers.
(7)33\sqrt [ 3 ] { ( - 7 ) ^ { 3 } }

A) 21
B) 7
C) 21- 21
D) 7- 7
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55
Find the domain of the given function.
f(x)=3.5x+3f ( x ) = \sqrt { 3.5 x + 3 }

A) all real numbers xx where x>x > -
B) all real numbers xx where x>335x > - \frac { 3 } { 35 }
C) all real numbers xx where xx \geq -
D) all real numbers xx where x67x \geq - \frac { 6 } { 7 }
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56
Simplify. Assume that variables represent positive real numbers.
81x8y124\sqrt [ 4 ] { - 81 x ^ { 8 } y ^ { 12 } }

A) 81x2y8- 81 x ^ { 2 } y ^ { 8 }
B) not a real number
C) 3x2y3- 3 x ^ { 2 } y ^ { 3 }
D) 3x4y8- 3 x ^ { 4 } y ^ { 8 }
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57
Simplify. Assume that variables represent positive real numbers.
x3y63\sqrt [ 3 ] { \mathrm { x } ^ { 3 } \mathrm { y } ^ { 6 } }

A) y3y ^ { 3 }
B) xy2x y ^ { 2 }
C) xy3x y ^ { 3 }
D) x3y2x ^ { 3 } y ^ { 2 }
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58
Find the domain of the given function.
f(x)=3x+6f(x)=\sqrt{3 x+6}
 Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D)  A) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D)
B) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D)
C) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D)
D) Find the domain of the given function.  f(x)=\sqrt{3 x+6}    A)  B)  C)  D)
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59
Simplify. Assume that variables represent positive real numbers.
(3x)4/9( 3 x ) ^ { 4 / 9 }

A) 3x94\sqrt [ 4 ] { 3 x ^ { 9 } }
B) 3x49\sqrt [ 9 ] { 3 x ^ { 4 } }
C) 81x49\sqrt [ 9 ] { 81 x ^ { 4 } }
D) 3x493 \sqrt [ 9 ] { x ^ { 4 } }
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60
Find the requested function value for the given function. Round the answer to the nearest tenth when necessary.
If f(x)=2.5x+4f ( x ) = \sqrt { 2.5 x + 4 } , find the value of f(10)f ( 10 )

A) 29
B) 31
C) 5.75.7
D) 5.45.4
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61
Simplify. Assume that variables represent positive real numbers.
9x6y18z12\sqrt { 9 x ^ { 6 } y ^ { 18 } z ^ { 12 } }

A) 9x3y16z109 x ^ { 3 } y ^ { 16 } z ^ { 10 }
B) 3x4y16z103 x ^ { 4 } y ^ { 16 } z ^ { 10 }
C) 9x4y9z109 x ^ { 4 } y ^ { 9 } z ^ { 10 }
D) 3x3y9z63 x ^ { 3 } y ^ { 9 } z ^ { 6 }
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62
Simplify. Assume that variables represent positive real numbers.
1024x10y205\sqrt [ 5 ] { 1024 x ^ { 10 } y ^ { 20 } }

A) 4x5y154 x ^ { 5 } y ^ { 15 }
B) 4x2y44 x ^ { 2 } y ^ { 4 }
C) 1024x2y41024 x ^ { 2 } y ^ { 4 }
D) 1024x5y151024 x ^ { 5 } y ^ { 15 }
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