Deck 8: Roots, Radicals, and Root Functions

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Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 64\sqrt{64}

A) 4096
B) 8
C) 164\frac{1}{64}
D) Not a real number
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Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 100\sqrt{-100}

A) 10100\frac{10}{100}
B) 10
C) 10,000
D) Not a real number
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 324\sqrt{-324}

A) 18
B) Not a real number
C) 104,976
D) 1324\frac{1}{324}
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 441\sqrt{441}

A) Not a real number
B) 194,481
C) 1441\frac{1}{441}
D) 21
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 8116\sqrt{\frac{81}{16}}

A) 94\frac{9}{4}

B) 52\frac{5}{2}

C) 5

D) 95\frac{9}{5}
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 441-\sqrt{441}

A) -21
B) Not a real number
C) -220
D) 21
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 0.0081\sqrt{0.0081}

A) 0.009
B) 0.09
C) 0.9
D) 0.1
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 12964\sqrt[4]{1296}

A) 6
B) 36
C) 7
D) 5
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 6254-\sqrt[4]{625}

A) -4
B) -25
C) -5
D) Not a real number
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 6254\sqrt[4]{-625}

A) -5
B) Not a real number
C) 5
D) -25
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 625814\sqrt[4]{\frac{625}{81}}

A) 62581\frac{625}{81}

B) 53\frac{5}{3}

C) 12527\frac{125}{27}

D) 259\frac{25}{9}
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 2435\sqrt[5]{-243}

A) 3
B) -3
C) 15
D) -15
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 646\sqrt[6]{64}

A) 323\frac{32}{3}
B) 12
C) -2
D) 2
Question
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 110245-\sqrt[5]{\frac{1}{1024}}

A) 14-\frac{1}{4}

B) 51024-\frac{5}{1024}

C) -4

D) \varnothing
Question
Graph the function and give its domain and its range.

- f(x)=x5f(x)=\sqrt{x-5}
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)     <div style=padding-top: 35px>

A) [5,);[0,) [-5, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)     <div style=padding-top: 35px>

B) [5,);[0,) [5, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)     <div style=padding-top: 35px>


C) [0,);[5,) [0, \infty) ;[5, \infty)
11eec209_bccb_efc3_8afd_c702d6ef0a5f_TB10232_00

D) [0,);[5,) [0, \infty) ;[-5, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)     <div style=padding-top: 35px>
Question
Graph the function and give its domain and its range.

- f(x)=x+1f(x)=\sqrt{x}+1
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)     <div style=padding-top: 35px>

A) [1,) [-1, \infty) ; [0,) [0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)     <div style=padding-top: 35px>


B) [0,) [0, \infty) ; [1,) [-1, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)     <div style=padding-top: 35px>

C) [1,);[0,) [1, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)     <div style=padding-top: 35px>

D) [0,);[1,) [0, \infty) ;[1, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)     <div style=padding-top: 35px>

Question
Graph the function and give its domain and its range.

- f(x)=x+33f(x)=\sqrt[3]{x+3}
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)     <div style=padding-top: 35px>

A) (,);[3,) (-\infty, \infty) ;[3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)     <div style=padding-top: 35px>

B) (,);(,) (-\infty, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)     <div style=padding-top: 35px>

C) (,);[3,) (-\infty, \infty) ;[-3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)     <div style=padding-top: 35px>

D) (,);(3,) (-\infty, \infty) ;(3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)     <div style=padding-top: 35px>
Question
Graph the function and give its domain and its range.

- f(x)=x33f(x)=\sqrt[3]{x}-3
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)    <div style=padding-top: 35px>

A) (,);(,)(-\infty, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)    <div style=padding-top: 35px>

B) (,);(3,)(-\infty, \infty) ;(-3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)    <div style=padding-top: 35px>

C) (,);[3,)(-\infty, \infty) ;[3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)    <div style=padding-top: 35px>

D) (0,);(,)(0, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)    <div style=padding-top: 35px>
Question
Simplify the root.

- x33\sqrt[3]{\mathrm{x}^{3}}

A) xx
B) x|-x|
C) x-x
D) x |x|
Question
Simplify the root.

- x12-\sqrt{x^{12}}

A) x6-\left|x^{6}\right|
B) x6x^{6}
C) x6-x^6
D) x6 \left|-x^{6}\right|
Question
Simplify the root.

- x213-\sqrt[3]{x^{21}}

A) x7\left|-x^{7}\right|
B) x7x^{7}
C) x7-x^{7}
D) x7-\left|x^{7}\right|
Question
Simplify the root.

- x284-\sqrt[4]{\mathrm{x}^{28}}

A) x7x^{7}
B) x7-\left|x^{7}\right|
C) x7-x^{7}
D) x7\left|-x^{7}\right|
Question
Simplify the root.

- (8)55\sqrt[5]{(-8)^{5}}

A) Not a real number
B) 8
C) 64
D) -8
Question
Simplify the root.

- (2)66\sqrt[6]{(-2)^{6}}

A) -2
B) 4
C) Not a real number
D) 2
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 313\sqrt{313}

A) 17.697
B) 313.000
C) 17.689
D) 17.692
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 6050\sqrt{6050}

A) 77.779
B) 6050.000
C) 77.787
D) 77.782
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 23-\sqrt{23}

A) -4.796
B) -23.000
C) -4.801
D) -4.793
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 1.09\sqrt{1.09}

A) 1.044
B) 1.031
C) 1.000
D) 1.059
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 673\sqrt[3]{67}

A) 66.996
B) 4.066
C) 67.009
D) 4.062
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 1134\sqrt[4]{113}

A) 3.282
B) 3.292
C) 3.274
D) 3.260
Question
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 835\sqrt[5]{-83}

A) -2.420
B) -2.432
C) -2.441
D) -2.450
Question
A manufacturer's cost is given by C=200n3+1100C=200 \sqrt[3]{n}+1100 , where CC is the cost and nn is the number of parts produced. Find the cost when 729 parts are produced.

A) $6500\$ 6500
B) $2900\$ 2900
C) $22\$ 22
D) $2000\$ 2000
Question
The cost of manufacturing clocks is given by c=49n+9c=49 \sqrt{n+9} , where cc is the total cost and nn is the number produced. What is the cost when no clocks are produced?

A) 441
B) 49
C) 147
D) 21
Question
The radius of a right circular cone is given by the formula r=3Vπhr=\sqrt{\frac{3 V}{\pi h}} , where VV is the volume and hh is the height. If the volume is 1302 cubic inches and the height is 14 inches, what is the radius? Use 3.14 for π\pi , and round your answer to the nearest tenth of an inch.

A) 0.1 inches
B) 5.4 inches
C) 9.9 inches
D) 9.4 inches
Question
The radius of a sphere is given by the formula r=S4πr=\sqrt{\frac{S}{4 \pi}} , where SS is the surface area. If the surface area is 8709 square inches, what is the radius? Use 3.14 for π\pi , and round your answer to the nearest tenth of an inch.

A) 46.7 inches
B) 82.7 inches
C) 0 inches
D) 26.3 inches
Question
The principal square root of 9 is 3.
Question
The negative square root of 25 is 5.
Question
The principal fifth root of -243 is 3 .
Question
The negative sixth root of 64 is -2 .
Question
Suppose a rectangle has length 85\sqrt{85} and width 99\sqrt{99} . Which of the following is the best estimate of its area?

A) 172
B) 28
C) 38
D) 90
Question
Suppose a rectangle has length 40\sqrt{40} and width 79\sqrt{79} . Which of the following is the best estimate of its perimeter?

A) 54
B) 30
C) 21
D) 81
Question
If a<0a<0 , which of the following correctly describes a-\sqrt{-a} ?

A) Zero
B) Positive
C) Negative
D) Not a real number
Question
Simplify the expression involving rational exponents.

- 14441/21444^{1 / 2}

A) 38
B) 152
C) 19
D) 76
Question
Simplify the expression involving rational exponents.

- 5121/3512^{1 / 3}

A) 12,288
B) 8
C) 24
D) 4096
Question
Simplify the expression involving rational exponents.

- 2561/4256^{1 / 4}

A) 4
B) 64
C) 1024
D) 16
Question
Simplify the expression involving rational exponents.

- 2164/3216^{4 / 3}

A) 1296
B) 7776
C) 279,936
D) 46,656
Question
Simplify the expression involving rational exponents.

- 815/481^{5 / 4}

A) 243
B) 2187
C) 6561
D) 19,683
Question
Simplify the expression involving rational exponents.

- 77764/577764 / 5

A) 1,679,616
B) 1296
C) 279,936
D) 10,077,696
Question
Simplify the expression involving rational exponents.

- (8)2/3(-8)^{2 / 3}

A) -2
B) -4
C) 4
D) Not a real number
Question
Simplify the expression involving rational exponents.

- (4)1/2(-4)^{1 / 2}

A) -1
B) -2
C) Not a real number
D) 2
Question
Simplify the expression involving rational exponents.

- (2549)1/2-\left(\frac{25}{49}\right)^{1 / 2}

A) Not a real number

B) 2598-\frac{25}{98}

C) 57-\frac{5}{7}

D) 75\frac{7}{5}
Question
Simplify the expression involving rational exponents.

- (1649)1/2\left(\frac{16}{49}\right)^{-1 / 2}

A) 849\frac{8}{49}

B) 47\frac{4}{7}

C) Not a real number

D) 74\frac{7}{4}
Question
Simplify the expression involving rational exponents.

- 93/29^{-3 / 2}

A) 127\frac{1}{27}

B) Not a real number

C) 272-\frac{27}{2}

D) -27
Question
Simplify the expression involving rational exponents.

- (64125)4/3\left(-\frac{64}{125}\right)^{-4 / 3}

A) 256625\frac{256}{625}

B) 256625-\frac{256}{625}

C) 625256\frac{625}{256}

D) Not a real number
Question
Simplify the expression involving rational exponents.

- (64729)2/3\left(\frac{64}{729}\right)^{-2 / 3}

A) 8116\frac{81}{16}

B) 72964\frac{729}{64}

C) 1681\frac{16}{81}

D) 64729\frac{64}{729}
Question
Simplify the expression involving rational exponents.

- 2161/3216^{-1 / 3}

A) -6

B) 16\frac{1}{6}

C) 17\frac{1}{7}

D) 16-\frac{1}{6}
Question
Write with radicals. Assume that all variables represent positive real numbers.

- (mn)1/6(\mathrm{mn})^{1 / 6}

A) 1mn6\frac{1}{\sqrt[6]{m n}}

B) (mn)6(\sqrt{m n})^{6}

C) mn6\sqrt[6]{m n}

D) (mn)6(\mathrm{mn})^{-6}
Question
Write with radicals. Assume that all variables represent positive real numbers

- (x8y8)1/3\left(x^{8} y^{8}\right)^{1 / 3}

A) (xy3)8(\sqrt[3]{x y})^{8}

B) x24y24x^{24} y^{24}

C) 1(xy3)8\frac{1}{(\sqrt[3]{x y})^{8}}

D) (xy8)3(\sqrt[8]{x y})^{3}
Question
Write with radicals. Assume that all variables represent positive real numbers

- (5py2)1/3\left(5 p y^{2}\right)^{1 / 3}

A) 5py5\sqrt[5]{5 p y}

B) 5py2\sqrt{5 p y^{2}}

C) 5py3\sqrt[3]{5 p y}

D) 5py23\sqrt[3]{5 p y^{2}}
Question
(7m4+3k2)4/3\left(7 m^{4}+3 k^{2}\right)^{-4 / 3}

A) 1(7m4+3k23)4\frac{1}{\left(\sqrt[3]{7 m^{4}+3 k^{2}}\right)^{4}}

B) (7m4+3k23)4\left(\sqrt[3]{7 m^{4}+3 k^{2}}\right)^{4}

C) 1(7m4+3k24)3\frac{1}{\left(\sqrt[4]{7 m^{4}+3 k^{2}}\right)^{3}}

D) (7m4+3k24)3\left(\sqrt[4]{7 m^{4}+3 k^{2}}\right)^{3}
Question
Write with radicals. Assume that all variables represent positive real numbers

- (4m+n)4/5(4 m+n)^{4 / 5}

A) 4m+n54\sqrt[4]{4 m+n^{5}}

B) 4m+n45\sqrt[5]{4 m+n^{4}}

C) (4m+n)45\sqrt[5]{(4 m+n)^{4}}

D) (4m+n)54\sqrt[4]{(4 m+n)^{5}}
Question
Write with radicals. Assume that all variables represent positive real numbers

- 91/29^{1 / 2}

A) 9\sqrt{9}
B) 4.5
C) 3\sqrt{3}
D) 3
Question
Write with radicals. Assume that all variables represent positive real numbers

- (5x)3/7+(4y)3/5(5 x)^{3 / 7}+(4 y)^{3 / 5}

A) (573+(45)3\left(\sqrt[7]{5}^{3}+(\sqrt[5]{4})^{3}\right.

B) (573x+(45)3y\left(\sqrt[7]{5}^{3} x+(\sqrt[5]{4})^{3} y\right.

C) (5x7)3+(4y53(\sqrt[7]{5 x})^{3}+\left(\sqrt[5]{4 y}^{3}\right.

D) (5x37+(4y35\left(\sqrt[3]{5 x}^{7}+\left(\sqrt[3]{4 y}^{5}\right.\right.
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- 5123\sqrt[3]{5^{12}}

A) 5123\sqrt[3]{5^{12}}

B) 625

C) 125

D) 3125
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- u32\sqrt{u^{32}}

A) u16\sqrt{\mathrm{u}^{16}}
B) u32\sqrt{\mathrm{u}^{32}}
C) u5.657u^{5.657}
D) u16\mathrm{u}^{16}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- z10\sqrt{z^{10}}

A) z5z^{5}
B) z2\frac{z}{2}
C) z20z^{20}
D) 2z2 \mathrm{z}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x213\sqrt[3]{x^{21}}

A) z3\frac{z}{3}
B) x63x^{63}
C) x7x^{7}
D) 3z3 z
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x7x\sqrt[7]{\mathrm{x}} \cdot \sqrt{\mathrm{x}}

A) x27\sqrt[7]{x^{2}}
B) x914\sqrt[14]{x^{9}}
C) 2x9\sqrt[9]{2 x}
D) x29\sqrt[9]{x^{2}}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- r3r37\sqrt[3]{\mathrm{r}} \cdot \sqrt[7]{\mathrm{r}^{3}}

A) r421\sqrt[21]{\mathrm{r}^{4}}
B) r1621\sqrt[21]{\mathrm{r}^{16}}
C) r310\sqrt[10]{\mathrm{r}^{3}}
D) r410\sqrt[10]{r^{4}}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- 9x64\sqrt[4]{9 x^{6}}

A) 3x2x\sqrt[x]{3 x^{2}}
B) 3x33 x^{3}
C) 9x64\sqrt[4]{9 x^{6}}
D) 3x3\sqrt{3 x^{3}}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x57x59\frac{\sqrt[7]{x^{5}}}{\sqrt[9]{x^{5}}}

A) x52\sqrt[2]{x^{5}}

B) x1063\sqrt[63]{x^{10}}

C) x516\sqrt[16]{x^{5}}

D) x57x59\frac{\sqrt[7]{x^{5}}}{\sqrt[9]{x^{5}}}
Question
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- r56r38\frac{\sqrt[6]{\mathrm{r}^{5}}}{\sqrt[8]{\mathrm{r}^{3}}}

A) r2248\sqrt[48]{r^{22}}

B) r56r38\frac{\sqrt[6]{r^{5}}}{\sqrt[8]{r^{3}}}

C) r\mathrm{r}

D) r1124\sqrt[24]{\mathrm{r}^{11}}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- x1/7x6/7x^{1 / 7} \cdot x^{6 / 7}

A) 1x\frac{1}{x}

B) x6/49x^{6 / 49}

C) xx

D) x6/7x^{6 / 7}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- y9/8y5/8\frac{y^{9 / 8}}{y^{5 / 8}}

A) y1/2y^{1 / 2}

B) 1y\frac{1}{y}

C) yy

D) y9/8y^{9 / 8}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (b4)5/4\left(b^{4}\right)^{5 / 4}

A) b5/16b^{5 / 16}

B) b9/4b^{9 / 4}

C) b5b^{5}

D) b1/4\mathrm{b}^{1 / 4}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- z2/7z3/7z^{-2 / 7} \cdot z^{3 / 7}

A) z1/7z^{1 / 7}

B) z6/7z^{6 / 7}

C) z1/7z^{-1 / 7}

D) z7/6z^{7 / 6}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (x4y8)1/4\left(\frac{x^{4}}{y^{-8}}\right)^{1 / 4}

A) xyx y

B) xy1/2x y^{1 / 2}

C) xy2\frac{x}{y^{2}}

D) xy2x y^{2}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (243k5 m10)1/5\left(243 \mathrm{k}^{5} \mathrm{~m}^{-10}\right)^{1 / 5}

A) 5km2\frac{5 \mathrm{k}}{\mathrm{m}^{2}}

B) 3 km23 \mathrm{~km}^{2}

C) 5 km25 \mathrm{~km}^{2}

D) 3km2\frac{3 \mathrm{k}}{\mathrm{m}^{2}}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (5a1/7 b5/7)3\left(5 \mathrm{a}^{1 / 7} \mathrm{~b}^{5 / 7}\right)^{3}

A) 125(ab)15/7125(a b)^{15 / 7}

B) 5a3/7b15/75 a^{3 / 7} b^{15 / 7}

C) 15a3/7 b5/715 \mathrm{a}^{3 / 7} \mathrm{~b}^{5 / 7}

D) 125a3/7b15/7125 a^{3 / 7} b^{15 / 7}
Question
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (16a3b4a1b4)1/4\left(16 \frac{a^{3} b^{-4}}{a^{-1} b^{4}}\right)^{1 / 4}

A) 2ab22 a b^{2}

B) 4ab2\frac{4 a}{b^{2}}

C) 2ab2\frac{2 \mathrm{a}}{\mathrm{b}^{2}}

D) 4b2a\frac{4 b^{2}}{a}
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Deck 8: Roots, Radicals, and Root Functions
1
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 64\sqrt{64}

A) 4096
B) 8
C) 164\frac{1}{64}
D) Not a real number
8
2
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 100\sqrt{-100}

A) 10100\frac{10}{100}
B) 10
C) 10,000
D) Not a real number
Not a real number
3
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 324\sqrt{-324}

A) 18
B) Not a real number
C) 104,976
D) 1324\frac{1}{324}
Not a real number
4
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 441\sqrt{441}

A) Not a real number
B) 194,481
C) 1441\frac{1}{441}
D) 21
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5
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 8116\sqrt{\frac{81}{16}}

A) 94\frac{9}{4}

B) 52\frac{5}{2}

C) 5

D) 95\frac{9}{5}
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6
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 441-\sqrt{441}

A) -21
B) Not a real number
C) -220
D) 21
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7
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 0.0081\sqrt{0.0081}

A) 0.009
B) 0.09
C) 0.9
D) 0.1
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8
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 12964\sqrt[4]{1296}

A) 6
B) 36
C) 7
D) 5
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9
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 6254-\sqrt[4]{625}

A) -4
B) -25
C) -5
D) Not a real number
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10
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 6254\sqrt[4]{-625}

A) -5
B) Not a real number
C) 5
D) -25
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11
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 625814\sqrt[4]{\frac{625}{81}}

A) 62581\frac{625}{81}

B) 53\frac{5}{3}

C) 12527\frac{125}{27}

D) 259\frac{25}{9}
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12
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 2435\sqrt[5]{-243}

A) 3
B) -3
C) 15
D) -15
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13
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 646\sqrt[6]{64}

A) 323\frac{32}{3}
B) 12
C) -2
D) 2
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14
Choose the one alternative that best completes the statement or answers the question.
Find the root if it is a real number.

- 110245-\sqrt[5]{\frac{1}{1024}}

A) 14-\frac{1}{4}

B) 51024-\frac{5}{1024}

C) -4

D) \varnothing
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15
Graph the function and give its domain and its range.

- f(x)=x5f(x)=\sqrt{x-5}
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)

A) [5,);[0,) [-5, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)

B) [5,);[0,) [5, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)


C) [0,);[5,) [0, \infty) ;[5, \infty)
11eec209_bccb_efc3_8afd_c702d6ef0a5f_TB10232_00

D) [0,);[5,) [0, \infty) ;[-5, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x-5}    </strong> A)  [-5, \infty) ;[0, \infty)      B)  [5, \infty) ;[0, \infty)       C)  [0, \infty) ;[5, \infty)      D)  [0, \infty) ;[-5, \infty)
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16
Graph the function and give its domain and its range.

- f(x)=x+1f(x)=\sqrt{x}+1
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)

A) [1,) [-1, \infty) ; [0,) [0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)


B) [0,) [0, \infty) ; [1,) [-1, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)

C) [1,);[0,) [1, \infty) ;[0, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)

D) [0,);[1,) [0, \infty) ;[1, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt{x}+1    </strong> A)   [-1, \infty)  ;   [0, \infty)       B)   [0, \infty)  ;   [-1, \infty)      C)   [1, \infty) ;[0, \infty)      D)   [0, \infty) ;[1, \infty)

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17
Graph the function and give its domain and its range.

- f(x)=x+33f(x)=\sqrt[3]{x+3}
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)

A) (,);[3,) (-\infty, \infty) ;[3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)

B) (,);(,) (-\infty, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)

C) (,);[3,) (-\infty, \infty) ;[-3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)

D) (,);(3,) (-\infty, \infty) ;(3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x+3}   </strong> A)   (-\infty, \infty) ;[3, \infty)      B)   (-\infty, \infty) ;(-\infty, \infty)      C)   (-\infty, \infty) ;[-3, \infty)      D)   (-\infty, \infty) ;(3, \infty)
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18
Graph the function and give its domain and its range.

- f(x)=x33f(x)=\sqrt[3]{x}-3
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)

A) (,);(,)(-\infty, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)

B) (,);(3,)(-\infty, \infty) ;(-3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)

C) (,);[3,)(-\infty, \infty) ;[3, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)

D) (0,);(,)(0, \infty) ;(-\infty, \infty)
 <strong>Graph the function and give its domain and its range.  - f(x)=\sqrt[3]{x}-3    </strong> A)  (-\infty, \infty) ;(-\infty, \infty)     B)  (-\infty, \infty) ;(-3, \infty)     C)  (-\infty, \infty) ;[3, \infty)     D)  (0, \infty) ;(-\infty, \infty)
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19
Simplify the root.

- x33\sqrt[3]{\mathrm{x}^{3}}

A) xx
B) x|-x|
C) x-x
D) x |x|
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20
Simplify the root.

- x12-\sqrt{x^{12}}

A) x6-\left|x^{6}\right|
B) x6x^{6}
C) x6-x^6
D) x6 \left|-x^{6}\right|
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21
Simplify the root.

- x213-\sqrt[3]{x^{21}}

A) x7\left|-x^{7}\right|
B) x7x^{7}
C) x7-x^{7}
D) x7-\left|x^{7}\right|
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22
Simplify the root.

- x284-\sqrt[4]{\mathrm{x}^{28}}

A) x7x^{7}
B) x7-\left|x^{7}\right|
C) x7-x^{7}
D) x7\left|-x^{7}\right|
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23
Simplify the root.

- (8)55\sqrt[5]{(-8)^{5}}

A) Not a real number
B) 8
C) 64
D) -8
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24
Simplify the root.

- (2)66\sqrt[6]{(-2)^{6}}

A) -2
B) 4
C) Not a real number
D) 2
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25
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 313\sqrt{313}

A) 17.697
B) 313.000
C) 17.689
D) 17.692
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26
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 6050\sqrt{6050}

A) 77.779
B) 6050.000
C) 77.787
D) 77.782
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27
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 23-\sqrt{23}

A) -4.796
B) -23.000
C) -4.801
D) -4.793
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28
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 1.09\sqrt{1.09}

A) 1.044
B) 1.031
C) 1.000
D) 1.059
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29
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 673\sqrt[3]{67}

A) 66.996
B) 4.066
C) 67.009
D) 4.062
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30
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 1134\sqrt[4]{113}

A) 3.282
B) 3.292
C) 3.274
D) 3.260
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31
Find the decimal approximation for the radical. Round the answer to three decimal places.

- 835\sqrt[5]{-83}

A) -2.420
B) -2.432
C) -2.441
D) -2.450
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32
A manufacturer's cost is given by C=200n3+1100C=200 \sqrt[3]{n}+1100 , where CC is the cost and nn is the number of parts produced. Find the cost when 729 parts are produced.

A) $6500\$ 6500
B) $2900\$ 2900
C) $22\$ 22
D) $2000\$ 2000
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33
The cost of manufacturing clocks is given by c=49n+9c=49 \sqrt{n+9} , where cc is the total cost and nn is the number produced. What is the cost when no clocks are produced?

A) 441
B) 49
C) 147
D) 21
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34
The radius of a right circular cone is given by the formula r=3Vπhr=\sqrt{\frac{3 V}{\pi h}} , where VV is the volume and hh is the height. If the volume is 1302 cubic inches and the height is 14 inches, what is the radius? Use 3.14 for π\pi , and round your answer to the nearest tenth of an inch.

A) 0.1 inches
B) 5.4 inches
C) 9.9 inches
D) 9.4 inches
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35
The radius of a sphere is given by the formula r=S4πr=\sqrt{\frac{S}{4 \pi}} , where SS is the surface area. If the surface area is 8709 square inches, what is the radius? Use 3.14 for π\pi , and round your answer to the nearest tenth of an inch.

A) 46.7 inches
B) 82.7 inches
C) 0 inches
D) 26.3 inches
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36
The principal square root of 9 is 3.
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37
The negative square root of 25 is 5.
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38
The principal fifth root of -243 is 3 .
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39
The negative sixth root of 64 is -2 .
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40
Suppose a rectangle has length 85\sqrt{85} and width 99\sqrt{99} . Which of the following is the best estimate of its area?

A) 172
B) 28
C) 38
D) 90
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41
Suppose a rectangle has length 40\sqrt{40} and width 79\sqrt{79} . Which of the following is the best estimate of its perimeter?

A) 54
B) 30
C) 21
D) 81
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42
If a<0a<0 , which of the following correctly describes a-\sqrt{-a} ?

A) Zero
B) Positive
C) Negative
D) Not a real number
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43
Simplify the expression involving rational exponents.

- 14441/21444^{1 / 2}

A) 38
B) 152
C) 19
D) 76
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44
Simplify the expression involving rational exponents.

- 5121/3512^{1 / 3}

A) 12,288
B) 8
C) 24
D) 4096
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45
Simplify the expression involving rational exponents.

- 2561/4256^{1 / 4}

A) 4
B) 64
C) 1024
D) 16
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46
Simplify the expression involving rational exponents.

- 2164/3216^{4 / 3}

A) 1296
B) 7776
C) 279,936
D) 46,656
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47
Simplify the expression involving rational exponents.

- 815/481^{5 / 4}

A) 243
B) 2187
C) 6561
D) 19,683
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48
Simplify the expression involving rational exponents.

- 77764/577764 / 5

A) 1,679,616
B) 1296
C) 279,936
D) 10,077,696
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49
Simplify the expression involving rational exponents.

- (8)2/3(-8)^{2 / 3}

A) -2
B) -4
C) 4
D) Not a real number
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50
Simplify the expression involving rational exponents.

- (4)1/2(-4)^{1 / 2}

A) -1
B) -2
C) Not a real number
D) 2
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51
Simplify the expression involving rational exponents.

- (2549)1/2-\left(\frac{25}{49}\right)^{1 / 2}

A) Not a real number

B) 2598-\frac{25}{98}

C) 57-\frac{5}{7}

D) 75\frac{7}{5}
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52
Simplify the expression involving rational exponents.

- (1649)1/2\left(\frac{16}{49}\right)^{-1 / 2}

A) 849\frac{8}{49}

B) 47\frac{4}{7}

C) Not a real number

D) 74\frac{7}{4}
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53
Simplify the expression involving rational exponents.

- 93/29^{-3 / 2}

A) 127\frac{1}{27}

B) Not a real number

C) 272-\frac{27}{2}

D) -27
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54
Simplify the expression involving rational exponents.

- (64125)4/3\left(-\frac{64}{125}\right)^{-4 / 3}

A) 256625\frac{256}{625}

B) 256625-\frac{256}{625}

C) 625256\frac{625}{256}

D) Not a real number
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55
Simplify the expression involving rational exponents.

- (64729)2/3\left(\frac{64}{729}\right)^{-2 / 3}

A) 8116\frac{81}{16}

B) 72964\frac{729}{64}

C) 1681\frac{16}{81}

D) 64729\frac{64}{729}
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56
Simplify the expression involving rational exponents.

- 2161/3216^{-1 / 3}

A) -6

B) 16\frac{1}{6}

C) 17\frac{1}{7}

D) 16-\frac{1}{6}
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57
Write with radicals. Assume that all variables represent positive real numbers.

- (mn)1/6(\mathrm{mn})^{1 / 6}

A) 1mn6\frac{1}{\sqrt[6]{m n}}

B) (mn)6(\sqrt{m n})^{6}

C) mn6\sqrt[6]{m n}

D) (mn)6(\mathrm{mn})^{-6}
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58
Write with radicals. Assume that all variables represent positive real numbers

- (x8y8)1/3\left(x^{8} y^{8}\right)^{1 / 3}

A) (xy3)8(\sqrt[3]{x y})^{8}

B) x24y24x^{24} y^{24}

C) 1(xy3)8\frac{1}{(\sqrt[3]{x y})^{8}}

D) (xy8)3(\sqrt[8]{x y})^{3}
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59
Write with radicals. Assume that all variables represent positive real numbers

- (5py2)1/3\left(5 p y^{2}\right)^{1 / 3}

A) 5py5\sqrt[5]{5 p y}

B) 5py2\sqrt{5 p y^{2}}

C) 5py3\sqrt[3]{5 p y}

D) 5py23\sqrt[3]{5 p y^{2}}
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60
(7m4+3k2)4/3\left(7 m^{4}+3 k^{2}\right)^{-4 / 3}

A) 1(7m4+3k23)4\frac{1}{\left(\sqrt[3]{7 m^{4}+3 k^{2}}\right)^{4}}

B) (7m4+3k23)4\left(\sqrt[3]{7 m^{4}+3 k^{2}}\right)^{4}

C) 1(7m4+3k24)3\frac{1}{\left(\sqrt[4]{7 m^{4}+3 k^{2}}\right)^{3}}

D) (7m4+3k24)3\left(\sqrt[4]{7 m^{4}+3 k^{2}}\right)^{3}
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61
Write with radicals. Assume that all variables represent positive real numbers

- (4m+n)4/5(4 m+n)^{4 / 5}

A) 4m+n54\sqrt[4]{4 m+n^{5}}

B) 4m+n45\sqrt[5]{4 m+n^{4}}

C) (4m+n)45\sqrt[5]{(4 m+n)^{4}}

D) (4m+n)54\sqrt[4]{(4 m+n)^{5}}
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62
Write with radicals. Assume that all variables represent positive real numbers

- 91/29^{1 / 2}

A) 9\sqrt{9}
B) 4.5
C) 3\sqrt{3}
D) 3
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63
Write with radicals. Assume that all variables represent positive real numbers

- (5x)3/7+(4y)3/5(5 x)^{3 / 7}+(4 y)^{3 / 5}

A) (573+(45)3\left(\sqrt[7]{5}^{3}+(\sqrt[5]{4})^{3}\right.

B) (573x+(45)3y\left(\sqrt[7]{5}^{3} x+(\sqrt[5]{4})^{3} y\right.

C) (5x7)3+(4y53(\sqrt[7]{5 x})^{3}+\left(\sqrt[5]{4 y}^{3}\right.

D) (5x37+(4y35\left(\sqrt[3]{5 x}^{7}+\left(\sqrt[3]{4 y}^{5}\right.\right.
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64
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- 5123\sqrt[3]{5^{12}}

A) 5123\sqrt[3]{5^{12}}

B) 625

C) 125

D) 3125
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65
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- u32\sqrt{u^{32}}

A) u16\sqrt{\mathrm{u}^{16}}
B) u32\sqrt{\mathrm{u}^{32}}
C) u5.657u^{5.657}
D) u16\mathrm{u}^{16}
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66
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- z10\sqrt{z^{10}}

A) z5z^{5}
B) z2\frac{z}{2}
C) z20z^{20}
D) 2z2 \mathrm{z}
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67
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x213\sqrt[3]{x^{21}}

A) z3\frac{z}{3}
B) x63x^{63}
C) x7x^{7}
D) 3z3 z
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68
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x7x\sqrt[7]{\mathrm{x}} \cdot \sqrt{\mathrm{x}}

A) x27\sqrt[7]{x^{2}}
B) x914\sqrt[14]{x^{9}}
C) 2x9\sqrt[9]{2 x}
D) x29\sqrt[9]{x^{2}}
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69
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- r3r37\sqrt[3]{\mathrm{r}} \cdot \sqrt[7]{\mathrm{r}^{3}}

A) r421\sqrt[21]{\mathrm{r}^{4}}
B) r1621\sqrt[21]{\mathrm{r}^{16}}
C) r310\sqrt[10]{\mathrm{r}^{3}}
D) r410\sqrt[10]{r^{4}}
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70
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- 9x64\sqrt[4]{9 x^{6}}

A) 3x2x\sqrt[x]{3 x^{2}}
B) 3x33 x^{3}
C) 9x64\sqrt[4]{9 x^{6}}
D) 3x3\sqrt{3 x^{3}}
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71
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- x57x59\frac{\sqrt[7]{x^{5}}}{\sqrt[9]{x^{5}}}

A) x52\sqrt[2]{x^{5}}

B) x1063\sqrt[63]{x^{10}}

C) x516\sqrt[16]{x^{5}}

D) x57x59\frac{\sqrt[7]{x^{5}}}{\sqrt[9]{x^{5}}}
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72
Simplify by first converting to rational exponents. Assume that all variables represent positive real numbers.

- r56r38\frac{\sqrt[6]{\mathrm{r}^{5}}}{\sqrt[8]{\mathrm{r}^{3}}}

A) r2248\sqrt[48]{r^{22}}

B) r56r38\frac{\sqrt[6]{r^{5}}}{\sqrt[8]{r^{3}}}

C) r\mathrm{r}

D) r1124\sqrt[24]{\mathrm{r}^{11}}
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73
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- x1/7x6/7x^{1 / 7} \cdot x^{6 / 7}

A) 1x\frac{1}{x}

B) x6/49x^{6 / 49}

C) xx

D) x6/7x^{6 / 7}
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74
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- y9/8y5/8\frac{y^{9 / 8}}{y^{5 / 8}}

A) y1/2y^{1 / 2}

B) 1y\frac{1}{y}

C) yy

D) y9/8y^{9 / 8}
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75
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (b4)5/4\left(b^{4}\right)^{5 / 4}

A) b5/16b^{5 / 16}

B) b9/4b^{9 / 4}

C) b5b^{5}

D) b1/4\mathrm{b}^{1 / 4}
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76
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- z2/7z3/7z^{-2 / 7} \cdot z^{3 / 7}

A) z1/7z^{1 / 7}

B) z6/7z^{6 / 7}

C) z1/7z^{-1 / 7}

D) z7/6z^{7 / 6}
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77
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (x4y8)1/4\left(\frac{x^{4}}{y^{-8}}\right)^{1 / 4}

A) xyx y

B) xy1/2x y^{1 / 2}

C) xy2\frac{x}{y^{2}}

D) xy2x y^{2}
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78
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (243k5 m10)1/5\left(243 \mathrm{k}^{5} \mathrm{~m}^{-10}\right)^{1 / 5}

A) 5km2\frac{5 \mathrm{k}}{\mathrm{m}^{2}}

B) 3 km23 \mathrm{~km}^{2}

C) 5 km25 \mathrm{~km}^{2}

D) 3km2\frac{3 \mathrm{k}}{\mathrm{m}^{2}}
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79
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (5a1/7 b5/7)3\left(5 \mathrm{a}^{1 / 7} \mathrm{~b}^{5 / 7}\right)^{3}

A) 125(ab)15/7125(a b)^{15 / 7}

B) 5a3/7b15/75 a^{3 / 7} b^{15 / 7}

C) 15a3/7 b5/715 \mathrm{a}^{3 / 7} \mathrm{~b}^{5 / 7}

D) 125a3/7b15/7125 a^{3 / 7} b^{15 / 7}
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80
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.

- (16a3b4a1b4)1/4\left(16 \frac{a^{3} b^{-4}}{a^{-1} b^{4}}\right)^{1 / 4}

A) 2ab22 a b^{2}

B) 4ab2\frac{4 a}{b^{2}}

C) 2ab2\frac{2 \mathrm{a}}{\mathrm{b}^{2}}

D) 4b2a\frac{4 b^{2}}{a}
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Unlock Deck
Unlock for access to all 358 flashcards in this deck.